GRM5 cDNA ORF clone, Alligator mississippiensis(American alligator)

The following GRM5 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the GRM5 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
OAl67365 XM_019496386.1
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl67365 XM_019496385.1
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl67365 XM_014605882.2
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl67365 XM_019496387.1
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl67365 XM_019496384.1
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl67366 XM_014605883.2
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl67367 XM_014605884.2
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X7, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAl67368 XM_019496388.1
Latest version!
Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X8, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OAl67365
    Clone ID Related Accession (Same CDS sequence) XM_019496384.1 , XM_019496387.1 , XM_014605882.2 , XM_019496385.1 , XM_019496386.1
    Accession Version XM_019496384.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3732bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_019351929.1
    CDS391..4122
    Translation

    Target ORF information:

    RefSeq Version XM_019496384.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496384.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67365
    Clone ID Related Accession (Same CDS sequence) XM_019496384.1 , XM_019496387.1 , XM_014605882.2 , XM_019496385.1 , XM_019496386.1
    Accession Version XM_019496387.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3732bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_019351932.1
    CDS269..4000
    Translation

    Target ORF information:

    RefSeq Version XM_019496387.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496387.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67365
    Clone ID Related Accession (Same CDS sequence) XM_019496384.1 , XM_019496387.1 , XM_014605882.2 , XM_019496385.1 , XM_019496386.1
    Accession Version XM_014605882.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3732bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 9, 2016 this sequence version replaced XM_014605882.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_014461368.1
    CDS292..4023
    Translation

    Target ORF information:

    RefSeq Version XM_014605882.2
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014605882.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67365
    Clone ID Related Accession (Same CDS sequence) XM_019496384.1 , XM_019496387.1 , XM_014605882.2 , XM_019496385.1 , XM_019496386.1
    Accession Version XM_019496385.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3732bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_019351930.1
    CDS324..4055
    Translation

    Target ORF information:

    RefSeq Version XM_019496385.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496385.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67365
    Clone ID Related Accession (Same CDS sequence) XM_019496384.1 , XM_019496387.1 , XM_014605882.2 , XM_019496385.1 , XM_019496386.1
    Accession Version XM_019496386.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3732bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_019351931.1
    CDS229..3960
    Translation

    Target ORF information:

    RefSeq Version XM_019496386.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496386.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGTA
    AGCCACAGAA CTGCCTCTGT TAGCCGAACA GATGACGATG TCCCTACTTC CCAGACGGAG
    AATGCCCAGA GAAGCAGCTC CTCTCAAGGT TCCCTGATGG AGCAGATCAG CAGTGTGGTC
    ACACGCTTCA CAGCCAACAT CAGCGAGTTA AACTCTATGA TGCTTTCCAC CACCACACCA
    GGGGCCATGG TGGCCACTCC TCTCTGTTCT TCATACTTGA TTCCAAGGGA AATCCAGCTT
    CCTACCACAA TGACCACATT TGCAGAGATC CAACCACTCC CTGCCATTGA AGTCAATGGT
    GCATCCCAGT CAGCTAGGAA ACCTTCAAAT GGCAGCATCA AGGAAGGTAC TTCAGAGGCC
    CCACCACCGG CAAAGCAAGA TCTTGAGGAA TTGGTAGCTT TAACTCCTCC TTCCCCTTTT
    AGAGATTCCA TTGATTCAGG GAGCGCATCT CCCAGCTCTC CAGTGTCTGA ATCAGCTCTC
    TGTATCCCTT CCTCCCCGAA GTATGACACG CTTATCATCA GAGATTACAC TCAAAGTTCT
    TCTTCGCTGT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67366
    Clone ID Related Accession (Same CDS sequence) XM_014605883.2
    Accession Version XM_014605883.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3570bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 9, 2016 this sequence version replaced XM_014605883.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGCTCTAA CGGGAAATCA
    GTCTCGTGGG CCCAGAACGA GAAGAGCAGT AGAGGAGCAC ACCTTTGGCA AAGGCTATCG
    ATCCACATCA ACAAAAAGGA GAATCCCAAC CAAACTGCAG TGATCAAGCC CTTTTCTAAA
    AGCACAGATA GTAGCCGACA TAGCAGCAGC ACCACTATTC CCGAGACCAG TGCCAAAATG
    CTGTATGACG TCTCAGAAGC AGAGGAGCAT TACCCAGCTC AGTACCGGCC ACAAACCCCC
    TCACCTGTCA GTACGGTAAG CCACAGAACT GCCTCTGTTA GCCGAACAGA TGACGATGTC
    CCTACTTCCC AGACGGAGAA TGCCCAGAGA AGCAGCTCCT CTCAAGGTTC CCTGATGGAG
    CAGATCAGCA GTGTGGTCAC ACGCTTCACA GCCAACATCA GCGAGTTAAA CTCTATGATG
    CTTTCCACCA CCACACCAGG GGCCATGGTG GCCACTCCTC TCTGTTCTTC ATACTTGATT
    CCAAGGGAAA TCCAGCTTCC TACCACAATG ACCACATTTG CAGAGATCCA ACCACTCCCT
    GCCATTGAAG TCAATGGTGC ATCCCAGTCA GCTAGGAAAC CTTCAAATGG CAGCATCAAG
    GAAGGTACTT CAGAGGCCCC ACCACCGGCA AAGCAAGATC TTGAGGAATT GGTAGCTTTA
    ACTCCTCCTT CCCCTTTTAG AGATTCCATT GATTCAGGGA GCGCATCTCC CAGCTCTCCA
    GTGTCTGAAT CAGCTCTCTG TATCCCTTCC TCCCCGAAGT ATGACACGCT TATCATCAGA
    GATTACACTC AAAGTTCTTC TTCGCTGTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_014461369.1
    CDS292..3861
    Translation

    Target ORF information:

    RefSeq Version XM_014605883.2
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014605883.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGCTCTAA CGGGAAATCA
    GTCTCGTGGG CCCAGAACGA GAAGAGCAGT AGAGGAGCAC ACCTTTGGCA AAGGCTATCG
    ATCCACATCA ACAAAAAGGA GAATCCCAAC CAAACTGCAG TGATCAAGCC CTTTTCTAAA
    AGCACAGATA GTAGCCGACA TAGCAGCAGC ACCACTATTC CCGAGACCAG TGCCAAAATG
    CTGTATGACG TCTCAGAAGC AGAGGAGCAT TACCCAGCTC AGTACCGGCC ACAAACCCCC
    TCACCTGTCA GTACGGTAAG CCACAGAACT GCCTCTGTTA GCCGAACAGA TGACGATGTC
    CCTACTTCCC AGACGGAGAA TGCCCAGAGA AGCAGCTCCT CTCAAGGTTC CCTGATGGAG
    CAGATCAGCA GTGTGGTCAC ACGCTTCACA GCCAACATCA GCGAGTTAAA CTCTATGATG
    CTTTCCACCA CCACACCAGG GGCCATGGTG GCCACTCCTC TCTGTTCTTC ATACTTGATT
    CCAAGGGAAA TCCAGCTTCC TACCACAATG ACCACATTTG CAGAGATCCA ACCACTCCCT
    GCCATTGAAG TCAATGGTGC ATCCCAGTCA GCTAGGAAAC CTTCAAATGG CAGCATCAAG
    GAAGGTACTT CAGAGGCCCC ACCACCGGCA AAGCAAGATC TTGAGGAATT GGTAGCTTTA
    ACTCCTCCTT CCCCTTTTAG AGATTCCATT GATTCAGGGA GCGCATCTCC CAGCTCTCCA
    GTGTCTGAAT CAGCTCTCTG TATCCCTTCC TCCCCGAAGT ATGACACGCT TATCATCAGA
    GATTACACTC AAAGTTCTTC TTCGCTGTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67367
    Clone ID Related Accession (Same CDS sequence) XM_014605884.2
    Accession Version XM_014605884.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3474bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 9, 2016 this sequence version replaced XM_014605884.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGCT CTAACGGGAA ATCAGTCTCG TGGGCCCAGA ACGAGAAGAG CAGTAGAGGA
    GCACACCTTT GGCAAAGGCT ATCGATCCAC ATCAACAAAA AGGAGAATCC CAACCAAACT
    GCAGTGATCA AGCCCTTTTC TAAAAGCACA GATAGTAGCC GACATAGCAG CAGCACCACT
    ATTCCCGAGA CCAGTGCCAA AATGCTGTAT GACGTCTCAG AAGCAGAGGA GCATTACCCA
    GCTCAGTACC GGCCACAAAC CCCCTCACCT GTCAGTACGG TAAGCCACAG AACTGCCTCT
    GTTAGCCGAA CAGATGACGA TGTCCCTACT TCCCAGACGG AGAATGCCCA GAGAAGCAGC
    TCCTCTCAAG GTTCCCTGAT GGAGCAGATC AGCAGTGTGG TCACACGCTT CACAGCCAAC
    ATCAGCGAGT TAAACTCTAT GATGCTTTCC ACCACCACAC CAGGGGCCAT GGTGGCCACT
    CCTCTCTGTT CTTCATACTT GATTCCAAGG GAAATCCAGC TTCCTACCAC AATGACCACA
    TTTGCAGAGA TCCAACCACT CCCTGCCATT GAAGTCAATG GTGCATCCCA GTCAGCTAGG
    AAACCTTCAA ATGGCAGCAT CAAGGAAGGT ACTTCAGAGG CCCCACCACC GGCAAAGCAA
    GATCTTGAGG AATTGGTAGC TTTAACTCCT CCTTCCCCTT TTAGAGATTC CATTGATTCA
    GGGAGCGCAT CTCCCAGCTC TCCAGTGTCT GAATCAGCTC TCTGTATCCC TTCCTCCCCG
    AAGTATGACA CGCTTATCAT CAGAGATTAC ACTCAAAGTT CTTCTTCGCT GTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_014461370.1
    CDS292..3765
    Translation

    Target ORF information:

    RefSeq Version XM_014605884.2
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014605884.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGCT CTAACGGGAA ATCAGTCTCG TGGGCCCAGA ACGAGAAGAG CAGTAGAGGA
    GCACACCTTT GGCAAAGGCT ATCGATCCAC ATCAACAAAA AGGAGAATCC CAACCAAACT
    GCAGTGATCA AGCCCTTTTC TAAAAGCACA GATAGTAGCC GACATAGCAG CAGCACCACT
    ATTCCCGAGA CCAGTGCCAA AATGCTGTAT GACGTCTCAG AAGCAGAGGA GCATTACCCA
    GCTCAGTACC GGCCACAAAC CCCCTCACCT GTCAGTACGG TAAGCCACAG AACTGCCTCT
    GTTAGCCGAA CAGATGACGA TGTCCCTACT TCCCAGACGG AGAATGCCCA GAGAAGCAGC
    TCCTCTCAAG GTTCCCTGAT GGAGCAGATC AGCAGTGTGG TCACACGCTT CACAGCCAAC
    ATCAGCGAGT TAAACTCTAT GATGCTTTCC ACCACCACAC CAGGGGCCAT GGTGGCCACT
    CCTCTCTGTT CTTCATACTT GATTCCAAGG GAAATCCAGC TTCCTACCAC AATGACCACA
    TTTGCAGAGA TCCAACCACT CCCTGCCATT GAAGTCAATG GTGCATCCCA GTCAGCTAGG
    AAACCTTCAA ATGGCAGCAT CAAGGAAGGT ACTTCAGAGG CCCCACCACC GGCAAAGCAA
    GATCTTGAGG AATTGGTAGC TTTAACTCCT CCTTCCCCTT TTAGAGATTC CATTGATTCA
    GGGAGCGCAT CTCCCAGCTC TCCAGTGTCT GAATCAGCTC TCTGTATCCC TTCCTCCCCG
    AAGTATGACA CGCTTATCAT CAGAGATTAC ACTCAAAGTT CTTCTTCGCT GTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAl67368
    Clone ID Related Accession (Same CDS sequence) XM_019496388.1
    Accession Version XM_019496388.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3228bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product metabotropic glutamate receptor 5 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712303.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGGC
    AGAATTCTGC ATCTCTTGTA CATCCATCAG CAAAAGTGGG AGTTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_019351933.1
    CDS292..3519
    Translation

    Target ORF information:

    RefSeq Version XM_019496388.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis glutamate metabotropic receptor 5 (GRM5), transcript variant X8, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496388.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    ATGGTCCTTT TGCTGATCCT TGCAATCCTG TTATTGAAGG AGGATGTCAA CGGGAACTTT 
    GGACTTTTGG TTTCTGCACA GACCAATGAA AGAAGGGTGG TTGCATATGT GCCTGGTGAT
    ATTATTATCG GAGCTCTGTT TTCAGTCCAT CATCAGCCAA CTGTTGACAA GGTCCATGAG
    AGGAAATGTG GAGAGGTAAG GGAGCAATAT GGCATACAGA GAGTGGAGGC AATGCTTCAT
    ACCCTTGACA GAATTAATTT GGACCCAACA CTGTTGCCAA ATATAACATT AGGCTGTGAA
    ATAAGAGACT CATGTTGGCA TTCTGCTGTG GCTTTGGAGC AAAGCATTGA GTTTATAAGG
    GACTCTCTTA TTTCGTCAGA AGAAGAGGAA GGGCTGGTAC GCTGTGTTGA TGGATCTTCA
    TCATCTTTCC GCTCCAAAAA GCCGATTGTT GGTGTCATTG GACCTGGTTC TAGTTCAGTA
    GCTATCCAAG TCCAGAACTT GTTGCAGCTT TTCAATATAC CTCAGATAGC TTATTCTGCC
    ACAAGCATGG ACTTAAGTGA CAAAACTCTG TTCAAATACT TCATGAGAGT CGTTCCATCT
    GATGCACAAC AAGCTCGGGC CATGGTGGAC ATAGTCAAAC GGTATAACTG GACCTATGTT
    TCTGCTGTGC ATACTGAAGG TAACTACGGT GAAAGTGGAA TGGAAGCTTT TAAAGATATG
    TCGGCCAAGG AGGGGATCTG CATTGCACAT TCCTACAAGA TCTACAGTAA CGCTGGTGAA
    CAGAGTTTTG ACAAACTGCT GGGAAAGCTA AGGAGCCATC TGCCCAAGGC AAGAGTGGTT
    GCCTGCTTCT GTGAGGGCAT GACTGTGAGA GGGCTGCTTA TGGCCATGAG GCGTCTGGGG
    CTTGCCGGAG AGTTTTTGCT GCTAGGCAGT GATGGCTGGG CAGACAGGTA CGATGTGACA
    GACGGATACC AGCGTGAAGC TGTTGGGGGA ATAACGATCA AGCTTCAGTC TCCTGATGTG
    AAATGGTTTG ATGATTATTA CCTGCAGCTT CGGCCAGAAA CCAATCACCG AAACCCATGG
    TTTCAGGAAT TCTGGCAGCA CAGGTTCCAG TGTCAATTGG AGGGGTCTCC TCAACAGAAC
    TATAAATACA ACAAGACTTG CACCAGTGAG ATGACTCTTA AAACGCAACA CGTTCAGGAT
    TCTAAAATGG GATTTGTAAT CAATGCAATA TATTCCATGG CCTATGGTCT CCACAACATG
    CAGACAGCAT TATGTCCAGG CTATGTGGGC CTCTGTGATG CTATGAAGCC AATAGATGGT
    CAAAAACTTC TAGACTCTCT CATGAAGACG AATTTCACCG GAGTTTCTGG GGACATGATC
    TTGTTTGATG AGAATGGAGA CTCACCAGGA AGGTATGAGA TCATGAATTT TAAGAAGATG
    GGGAAGGATT ACTTTGACTA TATCAATGTT GGAAGCTGGG ACAATGGGGA ACTGAAAATG
    GACGATGACG AAATATGGTC TGAGAAAAAT ATTATCATCA GATCGGTCTG CAGTGAACCT
    TGTGAAAAAG GCCAGATAAA GGTGATCCGT AAAGGAGAAG TAAGTTGCTG TTGGACTTGT
    ACCCCTTGTA AAGAGAACGA GTATGTCTCT GATGAATACA CCTGCAATGC ATGCCAACTA
    GGCTCCTGGC CCAATGATGA ACTTACAGGT TGTATCCTCA TCCCAGTCCA GTATCTCAGA
    TGGGGTGATC CTGAACCAAT TGCAGCAGTT GTTTTTGCCT GTCTGGGTCT GCTGGCCACG
    CTGTTTGTTA CAGCTGTATT CATCATGTAC CGTGATACAC CAGTGGTCAA GTCATCCAGC
    CGAGAACTCT GCTACATTAT TCTAGCTGGC ATATGCCTGG GTTACTTGTG CACCTTCTGT
    CTCATTGCAA AGCCTCAGCA GATTTATTGT TACCTTCAAA GGATTGGCAT TGGTCTCTCC
    CCGGCTATGA GTTATTCTGC CCTAGTGACT AAAACCAATC GCATTGCAAG AATCCTGGCT
    GGCAGCAAGA AGAAAATCTG TACTAAGAAA CCTAGGTTCA TGAGTGCCTG TGCCCAGCTG
    GTGATTGCAT TTATCTTAAT TTGTATACAG CTAAGCATAA TTGTTGCCCT TTTCATAATG
    GAACCTCCAG ATATAATGCA CGATTACCCA AGCATCCGAG AGGTTTATTT GATTTGTAAC
    ACCACCAATC TAGGTGTTGT AACTCCCCTT GGATACAATG GATTGTTAAT TTTAAGTTGC
    ACCTTTTACG CATTTAAGAC AAGAAATGTC CCAGCTAATT TCAATGAAGC AAAATATATT
    GCCTTTACAA TGTATACCAC CTGCATCATT TGGCTGGCTT TTGTGCCAAT ATATTTTGGG
    AGCAACTACA AGATAATCAC CATGTGTTTC TCAGTCAGCT TGAGCGCCAC CGTGGCCTTG
    GGCTGCATGT TTGTGCCCAA GGTGTACATC ATCCTTGCTA AGCCTGAAAG AAACGTACGC
    AGCGCATTCA CCACATCCAC CGTGGTTCGC ATGCACGTTG GTGATGGAAA GTCATCTTCT
    GCTGCAAGCC GCTCCAGTAG CCTAGTGAAC CTGTGGAAAA GAAGGGGATC ATCTGGTGAA
    ACACTTAGGT ACAAAGGCAG GAGACTGGCC CAGCACAAGT CGGAAATAGA GTGTTTCACC
    CCAAAAGGGA GTATGGGCAA TGGTGGGAGA GCTACAATGA GCAGTGAAGA ATCTGTTCGC
    ATTCCAGAGT GTAATCGATC TGAGTCAAGT AGAGATGGGA AAGAGATTCC TGGTAAAGAT
    GATGCCCTAA TAGTCAAAAA GACTGGAAAC TTTATCAATG TAATAGTCCC ACAGAAAGAC
    TGTCAGCTTC AAGACCTGCT CAAACACTCT AACGGGAAAT CAGTCTCGTG GGCCCAGAAC
    GAGAAGAGCA GTAGAGGAGC ACACCTTTGG CAAAGGCTAT CGATCCACAT CAACAAAAAG
    GAGAATCCCA ACCAAACTGC AGTGATCAAG CCCTTTTCTA AAAGCACAGA TAGTAGCCGA
    CATAGCAGCA GCACCACTAT TCCCGAGACC AGTGCCAAAA TGCTGTATGA CGTCTCAGAA
    GCAGAGGAGC ATTACCCAGC TCAGTACCGG CCACAAACCC CCTCACCTGT CAGTACGGGC
    AGAATTCTGC ATCTCTTGTA CATCCATCAG CAAAAGTGGG AGTTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.