Prdm11 cDNA ORF clone, Rattus norvegicus(Norway rat)

The following Prdm11 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Prdm11 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
ORa60549 XM_017592050.1
Latest version!
Rattus norvegicus PR domain 11 (Prdm11), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
ORa11282 NM_001271530.1
Latest version!
Rattus norvegicus PR/SET domain 11 (Prdm11), mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $643.30
$919.00
ORa11282 XM_017592048.1
Latest version!
Rattus norvegicus PR domain 11 (Prdm11), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $643.30
$919.00
ORa11282 XM_017592049.1
Latest version!
Rattus norvegicus PR domain 11 (Prdm11), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $643.30
$919.00

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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 ORa60549
    Clone ID Related Accession (Same CDS sequence) XM_017592050.1
    Accession Version XM_017592050.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2907bp)
    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 2016-07-25
    Organism Rattus norvegicus(Norway rat)
    Product PR domain-containing protein 11 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_005102.4) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Rattus norvegicus Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGCTTCAGAG AGTATGGTCT CCTGCCCAGC CATCATGGAG
    GACGACGACC AGGAAGTGGA TTCTGCAGAC GAATCTGTCT CCAATGACGT GATGACGGCA
    ACCGACGAAC CCTCCAAGTT GTCCTCTGCC ACGGGACGCC GCATCCGGCG CTTCAAGCAG
    GAGTGGCTGA AGAAGTTCTG GTTCCTAAGG TACTCCCCGA CCCTCAACGA GATGTGGTGC
    CATGTGTGCC GCCAGTACAC GGTGCAGTCC TCACGCACGT CCGCCTTCAT CATCGGCTCC
    AAGCAGTTCA AGATCCACAC CATCAAACTG CACAGTCAGA GTAACCTGCA CAAGAAGTGC
    CTGCAGCTGT ACAAGCTGCG CATGCACCCG GAGAAGACAG AGGAGATGTG CCGCAACATG
    ACCCTGCTCT TCAACACTGC CTACCACCTG GCACTGGAGG GAAGGCCCTA CCTCGACTTC
    CGGCCACTGG CAGAGCTGCT GCGTAAGTGC GAGCTCAAGG TGGTGGACCA GTATATGAAT
    GAGGGGGACT GCCAGATCCT CATCCACCAC ATCGCCCGGG CACTGCGAGA GGACCTGGTG
    GAGCGCATCC GTCAGTCACC CTGCCTCAGC ATCATCCTGG ATGGGCAGAG TGACGACCTC
    CTGGCTGACA CGGTGGCCGT CTATGTGCAG TATACCAGCA GCGATGGGCC CCCGGCCACA
    GAATTCCTAT CCTTGCAGGA GCTAGGCTTC TCCAGCACAG AAAGCTATCT CCAGGCTCTT
    GACCGGGCCT TTGCTGCTCT GGGCATCCGC TTACAGGATG AGAAGCCAAC TGTGGGCCTG
    GGAGTCGATG GGGCCAACAT CACCGCCAGC TTGCGTGCCA GCATGTTCAT GACCATCCGC
    AAGACGCTGC CATGGCTGCT GTGCTTGCCC TTCATGGTGC ACCGGCCACA CCTGGAGATC
    CTGGATGCCA TCAGTGGGAA GGAACTGCCC TGTCTAGAGG AGCTGGAGAA CAACCTGAAG
    CAGCTCCTCA GCTTCTACCG CTACTCACCA CGCCTCATGT GTGAGCTGCG CTCCACGGCC
    TCTACCCTGT GCGAGGAGAC TGAATTCCTG GGAGACATCC GTGCCGTGAG GTGGATCATC
    GGTGAGCAGA ATGTCTTGAA TGCCCTTATC AAGGATTACC TGGAAGTGGT GGCCCACCTG
    AAGGATGTCA GCAGCCAGAC ACAGCGGGCA GACGCTTCCG CCATAGCCCT GGCCCTGTTG
    CAGTTCCTCA TGGACTACCA GTCCATCAAG CTCATCTACT TCCTGCTGGA TGTGATTGCC
    GTGCTGTCAC GCCTGGCCTA CATCTTCCAG GGAGAGTACC TACTGGTGTC ACAGGTGGAT
    GACAAGATCG AGGAGGCAAT CCAGGAGATC AGTCGGCTTG CAGACTCCCC GGGAGAGTAC
    CTGCAGGAAT TTGAGGAGAA TTTCCGAGAG AGCTTCAATG GGATCGCTGT GAAGAACCTC
    AGGGTGGCAG AGGCCAAGTT TCAGTCTATC AGGGAGAAGA TCTGCCAGAA GACACAGGTC
    ATTCTGGCTC AGAGGTTCGA CTCCCGAAGC CGGGTCTTTG TGAAGGCCTG CCAAGTGTTC
    GACTTAGCCG CCTGGCCCAG GAACAATGAG GAGCTTCTGA GCTTCGGCAA GGAAGATATG
    GTTCAGATCT TTGACCACTT GGAAGCCATT CCTGCCTTCT CCCGGGATGT GTGCCGTGAA
    GGGATGGACC CCCGGGGGAG CCTGCTGATG GAGTGGAGAG ACCTCAAGGC TGATTACTAC
    ACCAAAAATG GCTTCAAAGA CCTCATAAGC CACATCTGCA AGTACAAGCA GAGGTTTCCG
    CTCTTGAACA AGATCATTCA GGTCCTTAAA GTTCTCCCCA CCTCCACTGC CTGCTGTGAG
    AAAGGCCGAA GTGCCCTCCA GCGGGTCCGC AAAAACCACC GCTCACGCCT GACCCTGGAG
    CAGCTCAGTG ACCTGTTGAC GATTGCTGTG AACGGACCAC CCATCGCCAG CTTTGATGCC
    AAGCGAGCCC TGGACAGCTG GTTTGAGGAG AAGTCTGGCA ACAGCTACAC ACTTTCAGCC
    GAGGTCCTCA GTAGGATGTC TGCCTTGGAG CAGAAGCCCA TGCTGCAGGC TGTGGACCAT
    GGCTCTGAAT TCTACCCAGA CATGTAG

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

    RefSeq XP_017447539.1
    CDS580..3486
    Translation

    Target ORF information:

    RefSeq Version XM_017592050.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus PR domain 11 (Prdm11), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017592050.1

    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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGCTTCAGAG AGTATGGTCT CCTGCCCAGC CATCATGGAG
    GACGACGACC AGGAAGTGGA TTCTGCAGAC GAATCTGTCT CCAATGACGT GATGACGGCA
    ACCGACGAAC CCTCCAAGTT GTCCTCTGCC ACGGGACGCC GCATCCGGCG CTTCAAGCAG
    GAGTGGCTGA AGAAGTTCTG GTTCCTAAGG TACTCCCCGA CCCTCAACGA GATGTGGTGC
    CATGTGTGCC GCCAGTACAC GGTGCAGTCC TCACGCACGT CCGCCTTCAT CATCGGCTCC
    AAGCAGTTCA AGATCCACAC CATCAAACTG CACAGTCAGA GTAACCTGCA CAAGAAGTGC
    CTGCAGCTGT ACAAGCTGCG CATGCACCCG GAGAAGACAG AGGAGATGTG CCGCAACATG
    ACCCTGCTCT TCAACACTGC CTACCACCTG GCACTGGAGG GAAGGCCCTA CCTCGACTTC
    CGGCCACTGG CAGAGCTGCT GCGTAAGTGC GAGCTCAAGG TGGTGGACCA GTATATGAAT
    GAGGGGGACT GCCAGATCCT CATCCACCAC ATCGCCCGGG CACTGCGAGA GGACCTGGTG
    GAGCGCATCC GTCAGTCACC CTGCCTCAGC ATCATCCTGG ATGGGCAGAG TGACGACCTC
    CTGGCTGACA CGGTGGCCGT CTATGTGCAG TATACCAGCA GCGATGGGCC CCCGGCCACA
    GAATTCCTAT CCTTGCAGGA GCTAGGCTTC TCCAGCACAG AAAGCTATCT CCAGGCTCTT
    GACCGGGCCT TTGCTGCTCT GGGCATCCGC TTACAGGATG AGAAGCCAAC TGTGGGCCTG
    GGAGTCGATG GGGCCAACAT CACCGCCAGC TTGCGTGCCA GCATGTTCAT GACCATCCGC
    AAGACGCTGC CATGGCTGCT GTGCTTGCCC TTCATGGTGC ACCGGCCACA CCTGGAGATC
    CTGGATGCCA TCAGTGGGAA GGAACTGCCC TGTCTAGAGG AGCTGGAGAA CAACCTGAAG
    CAGCTCCTCA GCTTCTACCG CTACTCACCA CGCCTCATGT GTGAGCTGCG CTCCACGGCC
    TCTACCCTGT GCGAGGAGAC TGAATTCCTG GGAGACATCC GTGCCGTGAG GTGGATCATC
    GGTGAGCAGA ATGTCTTGAA TGCCCTTATC AAGGATTACC TGGAAGTGGT GGCCCACCTG
    AAGGATGTCA GCAGCCAGAC ACAGCGGGCA GACGCTTCCG CCATAGCCCT GGCCCTGTTG
    CAGTTCCTCA TGGACTACCA GTCCATCAAG CTCATCTACT TCCTGCTGGA TGTGATTGCC
    GTGCTGTCAC GCCTGGCCTA CATCTTCCAG GGAGAGTACC TACTGGTGTC ACAGGTGGAT
    GACAAGATCG AGGAGGCAAT CCAGGAGATC AGTCGGCTTG CAGACTCCCC GGGAGAGTAC
    CTGCAGGAAT TTGAGGAGAA TTTCCGAGAG AGCTTCAATG GGATCGCTGT GAAGAACCTC
    AGGGTGGCAG AGGCCAAGTT TCAGTCTATC AGGGAGAAGA TCTGCCAGAA GACACAGGTC
    ATTCTGGCTC AGAGGTTCGA CTCCCGAAGC CGGGTCTTTG TGAAGGCCTG CCAAGTGTTC
    GACTTAGCCG CCTGGCCCAG GAACAATGAG GAGCTTCTGA GCTTCGGCAA GGAAGATATG
    GTTCAGATCT TTGACCACTT GGAAGCCATT CCTGCCTTCT CCCGGGATGT GTGCCGTGAA
    GGGATGGACC CCCGGGGGAG CCTGCTGATG GAGTGGAGAG ACCTCAAGGC TGATTACTAC
    ACCAAAAATG GCTTCAAAGA CCTCATAAGC CACATCTGCA AGTACAAGCA GAGGTTTCCG
    CTCTTGAACA AGATCATTCA GGTCCTTAAA GTTCTCCCCA CCTCCACTGC CTGCTGTGAG
    AAAGGCCGAA GTGCCCTCCA GCGGGTCCGC AAAAACCACC GCTCACGCCT GACCCTGGAG
    CAGCTCAGTG ACCTGTTGAC GATTGCTGTG AACGGACCAC CCATCGCCAG CTTTGATGCC
    AAGCGAGCCC TGGACAGCTG GTTTGAGGAG AAGTCTGGCA ACAGCTACAC ACTTTCAGCC
    GAGGTCCTCA GTAGGATGTC TGCCTTGGAG CAGAAGCCCA TGCTGCAGGC TGTGGACCAT
    GGCTCTGAAT TCTACCCAGA CATGTAG

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

    CloneID ORa11282
    Clone ID Related Accession (Same CDS sequence) XM_017592048.1 , NM_001271530.1 , XM_017592049.1
    Accession Version NM_001271530.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3519bp)
    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 2018-05-30
    Organism Rattus norvegicus(Norway rat)
    Product PR domain-containing protein 11
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from AABR07052894.1. On Oct 10, 2012 this sequence version replaced XM_001074223.3. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. ##Evidence-Data-START## RNAseq introns :: mixed/partial sample support SAMD00052296, SAMD00052297 [ECO:0000350] ##Evidence-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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGGAGAGAAG AGATTGCAGA GAGAGAAGGC TGAGCAAGCC
    CTGGATAACC CAGAAGACCT AAGGGGTCCC TCCCATTTCC CTGTGTTGAA GCAGGGCAGA
    AGTCCTTACA AGCGCAGCTT TGATGAGGGG GACCTCCACC CTCAGGCCAA GAAGAAGAAA
    ATAGACCTCA TCTTCAAGGA CGTCCTGGAA GCCTCACTGG AGTCTGCTAA CGCGGAAGGC
    CGCCAGCTGG CCCTGAGCAC CTCCCTGGTC ATCCGGAAAG TCCCCAAGTA CCAGGACGAT
    GACTATGGTA GAGCTGCCCT GACACAAGGC ATCTGCAGGA CCCCAGGGGA AGGGGACTGG
    AAGGTCCCTC AAAAGGTGGC CAAGGAGCTA GGCCCACTGG AAGATGAAGA GGAGGAGCAT
    ACGTCGTTCA AGGCCGACAG CCCCGCTGAG GCCTCTCTGG CATCTGACCC CCACGAGCTG
    CCCACCACCT CCTTTTGCCC TAACTGCATC CGACTGAAAA AGAAAGTGCG GGAATTGCAG
    GCGGAGCTAG ATATGCTTAA GTCTGGAAAG GTGCCTGAGC CTCCCATTCT GCCACAGCAG
    GTACTGGAGC TCCCAGAGTT CTCAGATCCT GCAGCTTCAG AGAGTATGGT CTCCTGCCCA
    GCCATCATGG AGGACGACGA CCAGGAAGTG GATTCTGCAG ACGAATCTGT CTCCAATGAC
    GTGATGACGG CAACCGACGA ACCCTCCAAG TTGTCCTCTG CCACGGGACG CCGCATCCGG
    CGCTTCAAGC AGGAGTGGCT GAAGAAGTTC TGGTTCCTAA GGTACTCCCC GACCCTCAAC
    GAGATGTGGT GCCATGTGTG CCGCCAGTAC ACGGTGCAGT CCTCACGCAC GTCCGCCTTC
    ATCATCGGCT CCAAGCAGTT CAAGATCCAC ACCATCAAAC TGCACAGTCA GAGTAACCTG
    CACAAGAAGT GCCTGCAGCT GTACAAGCTG CGCATGCACC CGGAGAAGAC AGAGGAGATG
    TGCCGCAACA TGACCCTGCT CTTCAACACT GCCTACCACC TGGCACTGGA GGGAAGGCCC
    TACCTCGACT TCCGGCCACT GGCAGAGCTG CTGCGTAAGT GCGAGCTCAA GGTGGTGGAC
    CAGTATATGA ATGAGGGGGA CTGCCAGATC CTCATCCACC ACATCGCCCG GGCACTGCGA
    GAGGACCTGG TGGAGCGCAT CCGTCAGTCA CCCTGCCTCA GCATCATCCT GGATGGGCAG
    AGTGACGACC TCCTGGCTGA CACGGTGGCC GTCTATGTGC AGTATACCAG CAGCGATGGG
    CCCCCGGCCA CAGAATTCCT ATCCTTGCAG GAGCTAGGCT TCTCCAGCAC AGAAAGCTAT
    CTCCAGGCTC TTGACCGGGC CTTTGCTGCT CTGGGCATCC GCTTACAGGA TGAGAAGCCA
    ACTGTGGGCC TGGGAGTCGA TGGGGCCAAC ATCACCGCCA GCTTGCGTGC CAGCATGTTC
    ATGACCATCC GCAAGACGCT GCCATGGCTG CTGTGCTTGC CCTTCATGGT GCACCGGCCA
    CACCTGGAGA TCCTGGATGC CATCAGTGGG AAGGAACTGC CCTGTCTAGA GGAGCTGGAG
    AACAACCTGA AGCAGCTCCT CAGCTTCTAC CGCTACTCAC CACGCCTCAT GTGTGAGCTG
    CGCTCCACGG CCTCTACCCT GTGCGAGGAG ACTGAATTCC TGGGAGACAT CCGTGCCGTG
    AGGTGGATCA TCGGTGAGCA GAATGTCTTG AATGCCCTTA TCAAGGATTA CCTGGAAGTG
    GTGGCCCACC TGAAGGATGT CAGCAGCCAG ACACAGCGGG CAGACGCTTC CGCCATAGCC
    CTGGCCCTGT TGCAGTTCCT CATGGACTAC CAGTCCATCA AGCTCATCTA CTTCCTGCTG
    GATGTGATTG CCGTGCTGTC ACGCCTGGCC TACATCTTCC AGGGAGAGTA CCTACTGGTG
    TCACAGGTGG ATGACAAGAT CGAGGAGGCA ATCCAGGAGA TCAGTCGGCT TGCAGACTCC
    CCGGGAGAGT ACCTGCAGGA ATTTGAGGAG AATTTCCGAG AGAGCTTCAA TGGGATCGCT
    GTGAAGAACC TCAGGGTGGC AGAGGCCAAG TTTCAGTCTA TCAGGGAGAA GATCTGCCAG
    AAGACACAGG TCATTCTGGC TCAGAGGTTC GACTCCCGAA GCCGGGTCTT TGTGAAGGCC
    TGCCAAGTGT TCGACTTAGC CGCCTGGCCC AGGAACAATG AGGAGCTTCT GAGCTTCGGC
    AAGGAAGATA TGGTTCAGAT CTTTGACCAC TTGGAAGCCA TTCCTGCCTT CTCCCGGGAT
    GTGTGCCGTG AAGGGATGGA CCCCCGGGGG AGCCTGCTGA TGGAGTGGAG AGACCTCAAG
    GCTGATTACT ACACCAAAAA TGGCTTCAAA GACCTCATAA GCCACATCTG CAAGTACAAG
    CAGAGGTTTC CGCTCTTGAA CAAGATCATT CAGGTCCTTA AAGTTCTCCC CACCTCCACT
    GCCTGCTGTG AGAAAGGCCG AAGTGCCCTC CAGCGGGTCC GCAAAAACCA CCGCTCACGC
    CTGACCCTGG AGCAGCTCAG TGACCTGTTG ACGATTGCTG TGAACGGACC ACCCATCGCC
    AGCTTTGATG CCAAGCGAGC CCTGGACAGC TGGTTTGAGG AGAAGTCTGG CAACAGCTAC
    ACACTTTCAG CCGAGGTCCT CAGTAGGATG TCTGCCTTGG AGCAGAAGCC CATGCTGCAG
    GCTGTGGACC ATGGCTCTGA ATTCTACCCA GACATGTAG

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

    RefSeq NP_001258459.1
    CDS82..3600
    Translation

    Target ORF information:

    RefSeq Version NM_001271530.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus PR/SET domain 11 (Prdm11), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001271530.1

    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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGGAGAGAAG AGATTGCAGA GAGAGAAGGC TGAGCAAGCC
    CTGGATAACC CAGAAGACCT AAGGGGTCCC TCCCATTTCC CTGTGTTGAA GCAGGGCAGA
    AGTCCTTACA AGCGCAGCTT TGATGAGGGG GACCTCCACC CTCAGGCCAA GAAGAAGAAA
    ATAGACCTCA TCTTCAAGGA CGTCCTGGAA GCCTCACTGG AGTCTGCTAA CGCGGAAGGC
    CGCCAGCTGG CCCTGAGCAC CTCCCTGGTC ATCCGGAAAG TCCCCAAGTA CCAGGACGAT
    GACTATGGTA GAGCTGCCCT GACACAAGGC ATCTGCAGGA CCCCAGGGGA AGGGGACTGG
    AAGGTCCCTC AAAAGGTGGC CAAGGAGCTA GGCCCACTGG AAGATGAAGA GGAGGAGCAT
    ACGTCGTTCA AGGCCGACAG CCCCGCTGAG GCCTCTCTGG CATCTGACCC CCACGAGCTG
    CCCACCACCT CCTTTTGCCC TAACTGCATC CGACTGAAAA AGAAAGTGCG GGAATTGCAG
    GCGGAGCTAG ATATGCTTAA GTCTGGAAAG GTGCCTGAGC CTCCCATTCT GCCACAGCAG
    GTACTGGAGC TCCCAGAGTT CTCAGATCCT GCAGCTTCAG AGAGTATGGT CTCCTGCCCA
    GCCATCATGG AGGACGACGA CCAGGAAGTG GATTCTGCAG ACGAATCTGT CTCCAATGAC
    GTGATGACGG CAACCGACGA ACCCTCCAAG TTGTCCTCTG CCACGGGACG CCGCATCCGG
    CGCTTCAAGC AGGAGTGGCT GAAGAAGTTC TGGTTCCTAA GGTACTCCCC GACCCTCAAC
    GAGATGTGGT GCCATGTGTG CCGCCAGTAC ACGGTGCAGT CCTCACGCAC GTCCGCCTTC
    ATCATCGGCT CCAAGCAGTT CAAGATCCAC ACCATCAAAC TGCACAGTCA GAGTAACCTG
    CACAAGAAGT GCCTGCAGCT GTACAAGCTG CGCATGCACC CGGAGAAGAC AGAGGAGATG
    TGCCGCAACA TGACCCTGCT CTTCAACACT GCCTACCACC TGGCACTGGA GGGAAGGCCC
    TACCTCGACT TCCGGCCACT GGCAGAGCTG CTGCGTAAGT GCGAGCTCAA GGTGGTGGAC
    CAGTATATGA ATGAGGGGGA CTGCCAGATC CTCATCCACC ACATCGCCCG GGCACTGCGA
    GAGGACCTGG TGGAGCGCAT CCGTCAGTCA CCCTGCCTCA GCATCATCCT GGATGGGCAG
    AGTGACGACC TCCTGGCTGA CACGGTGGCC GTCTATGTGC AGTATACCAG CAGCGATGGG
    CCCCCGGCCA CAGAATTCCT ATCCTTGCAG GAGCTAGGCT TCTCCAGCAC AGAAAGCTAT
    CTCCAGGCTC TTGACCGGGC CTTTGCTGCT CTGGGCATCC GCTTACAGGA TGAGAAGCCA
    ACTGTGGGCC TGGGAGTCGA TGGGGCCAAC ATCACCGCCA GCTTGCGTGC CAGCATGTTC
    ATGACCATCC GCAAGACGCT GCCATGGCTG CTGTGCTTGC CCTTCATGGT GCACCGGCCA
    CACCTGGAGA TCCTGGATGC CATCAGTGGG AAGGAACTGC CCTGTCTAGA GGAGCTGGAG
    AACAACCTGA AGCAGCTCCT CAGCTTCTAC CGCTACTCAC CACGCCTCAT GTGTGAGCTG
    CGCTCCACGG CCTCTACCCT GTGCGAGGAG ACTGAATTCC TGGGAGACAT CCGTGCCGTG
    AGGTGGATCA TCGGTGAGCA GAATGTCTTG AATGCCCTTA TCAAGGATTA CCTGGAAGTG
    GTGGCCCACC TGAAGGATGT CAGCAGCCAG ACACAGCGGG CAGACGCTTC CGCCATAGCC
    CTGGCCCTGT TGCAGTTCCT CATGGACTAC CAGTCCATCA AGCTCATCTA CTTCCTGCTG
    GATGTGATTG CCGTGCTGTC ACGCCTGGCC TACATCTTCC AGGGAGAGTA CCTACTGGTG
    TCACAGGTGG ATGACAAGAT CGAGGAGGCA ATCCAGGAGA TCAGTCGGCT TGCAGACTCC
    CCGGGAGAGT ACCTGCAGGA ATTTGAGGAG AATTTCCGAG AGAGCTTCAA TGGGATCGCT
    GTGAAGAACC TCAGGGTGGC AGAGGCCAAG TTTCAGTCTA TCAGGGAGAA GATCTGCCAG
    AAGACACAGG TCATTCTGGC TCAGAGGTTC GACTCCCGAA GCCGGGTCTT TGTGAAGGCC
    TGCCAAGTGT TCGACTTAGC CGCCTGGCCC AGGAACAATG AGGAGCTTCT GAGCTTCGGC
    AAGGAAGATA TGGTTCAGAT CTTTGACCAC TTGGAAGCCA TTCCTGCCTT CTCCCGGGAT
    GTGTGCCGTG AAGGGATGGA CCCCCGGGGG AGCCTGCTGA TGGAGTGGAG AGACCTCAAG
    GCTGATTACT ACACCAAAAA TGGCTTCAAA GACCTCATAA GCCACATCTG CAAGTACAAG
    CAGAGGTTTC CGCTCTTGAA CAAGATCATT CAGGTCCTTA AAGTTCTCCC CACCTCCACT
    GCCTGCTGTG AGAAAGGCCG AAGTGCCCTC CAGCGGGTCC GCAAAAACCA CCGCTCACGC
    CTGACCCTGG AGCAGCTCAG TGACCTGTTG ACGATTGCTG TGAACGGACC ACCCATCGCC
    AGCTTTGATG CCAAGCGAGC CCTGGACAGC TGGTTTGAGG AGAAGTCTGG CAACAGCTAC
    ACACTTTCAG CCGAGGTCCT CAGTAGGATG TCTGCCTTGG AGCAGAAGCC CATGCTGCAG
    GCTGTGGACC ATGGCTCTGA ATTCTACCCA GACATGTAG

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

    CloneID ORa11282
    Clone ID Related Accession (Same CDS sequence) XM_017592048.1 , NM_001271530.1 , XM_017592049.1
    Accession Version XM_017592048.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3519bp)
    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 2016-07-25
    Organism Rattus norvegicus(Norway rat)
    Product PR domain-containing protein 11 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_005102.4) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Rattus norvegicus Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGGAGAGAAG AGATTGCAGA GAGAGAAGGC TGAGCAAGCC
    CTGGATAACC CAGAAGACCT AAGGGGTCCC TCCCATTTCC CTGTGTTGAA GCAGGGCAGA
    AGTCCTTACA AGCGCAGCTT TGATGAGGGG GACCTCCACC CTCAGGCCAA GAAGAAGAAA
    ATAGACCTCA TCTTCAAGGA CGTCCTGGAA GCCTCACTGG AGTCTGCTAA CGCGGAAGGC
    CGCCAGCTGG CCCTGAGCAC CTCCCTGGTC ATCCGGAAAG TCCCCAAGTA CCAGGACGAT
    GACTATGGTA GAGCTGCCCT GACACAAGGC ATCTGCAGGA CCCCAGGGGA AGGGGACTGG
    AAGGTCCCTC AAAAGGTGGC CAAGGAGCTA GGCCCACTGG AAGATGAAGA GGAGGAGCAT
    ACGTCGTTCA AGGCCGACAG CCCCGCTGAG GCCTCTCTGG CATCTGACCC CCACGAGCTG
    CCCACCACCT CCTTTTGCCC TAACTGCATC CGACTGAAAA AGAAAGTGCG GGAATTGCAG
    GCGGAGCTAG ATATGCTTAA GTCTGGAAAG GTGCCTGAGC CTCCCATTCT GCCACAGCAG
    GTACTGGAGC TCCCAGAGTT CTCAGATCCT GCAGCTTCAG AGAGTATGGT CTCCTGCCCA
    GCCATCATGG AGGACGACGA CCAGGAAGTG GATTCTGCAG ACGAATCTGT CTCCAATGAC
    GTGATGACGG CAACCGACGA ACCCTCCAAG TTGTCCTCTG CCACGGGACG CCGCATCCGG
    CGCTTCAAGC AGGAGTGGCT GAAGAAGTTC TGGTTCCTAA GGTACTCCCC GACCCTCAAC
    GAGATGTGGT GCCATGTGTG CCGCCAGTAC ACGGTGCAGT CCTCACGCAC GTCCGCCTTC
    ATCATCGGCT CCAAGCAGTT CAAGATCCAC ACCATCAAAC TGCACAGTCA GAGTAACCTG
    CACAAGAAGT GCCTGCAGCT GTACAAGCTG CGCATGCACC CGGAGAAGAC AGAGGAGATG
    TGCCGCAACA TGACCCTGCT CTTCAACACT GCCTACCACC TGGCACTGGA GGGAAGGCCC
    TACCTCGACT TCCGGCCACT GGCAGAGCTG CTGCGTAAGT GCGAGCTCAA GGTGGTGGAC
    CAGTATATGA ATGAGGGGGA CTGCCAGATC CTCATCCACC ACATCGCCCG GGCACTGCGA
    GAGGACCTGG TGGAGCGCAT CCGTCAGTCA CCCTGCCTCA GCATCATCCT GGATGGGCAG
    AGTGACGACC TCCTGGCTGA CACGGTGGCC GTCTATGTGC AGTATACCAG CAGCGATGGG
    CCCCCGGCCA CAGAATTCCT ATCCTTGCAG GAGCTAGGCT TCTCCAGCAC AGAAAGCTAT
    CTCCAGGCTC TTGACCGGGC CTTTGCTGCT CTGGGCATCC GCTTACAGGA TGAGAAGCCA
    ACTGTGGGCC TGGGAGTCGA TGGGGCCAAC ATCACCGCCA GCTTGCGTGC CAGCATGTTC
    ATGACCATCC GCAAGACGCT GCCATGGCTG CTGTGCTTGC CCTTCATGGT GCACCGGCCA
    CACCTGGAGA TCCTGGATGC CATCAGTGGG AAGGAACTGC CCTGTCTAGA GGAGCTGGAG
    AACAACCTGA AGCAGCTCCT CAGCTTCTAC CGCTACTCAC CACGCCTCAT GTGTGAGCTG
    CGCTCCACGG CCTCTACCCT GTGCGAGGAG ACTGAATTCC TGGGAGACAT CCGTGCCGTG
    AGGTGGATCA TCGGTGAGCA GAATGTCTTG AATGCCCTTA TCAAGGATTA CCTGGAAGTG
    GTGGCCCACC TGAAGGATGT CAGCAGCCAG ACACAGCGGG CAGACGCTTC CGCCATAGCC
    CTGGCCCTGT TGCAGTTCCT CATGGACTAC CAGTCCATCA AGCTCATCTA CTTCCTGCTG
    GATGTGATTG CCGTGCTGTC ACGCCTGGCC TACATCTTCC AGGGAGAGTA CCTACTGGTG
    TCACAGGTGG ATGACAAGAT CGAGGAGGCA ATCCAGGAGA TCAGTCGGCT TGCAGACTCC
    CCGGGAGAGT ACCTGCAGGA ATTTGAGGAG AATTTCCGAG AGAGCTTCAA TGGGATCGCT
    GTGAAGAACC TCAGGGTGGC AGAGGCCAAG TTTCAGTCTA TCAGGGAGAA GATCTGCCAG
    AAGACACAGG TCATTCTGGC TCAGAGGTTC GACTCCCGAA GCCGGGTCTT TGTGAAGGCC
    TGCCAAGTGT TCGACTTAGC CGCCTGGCCC AGGAACAATG AGGAGCTTCT GAGCTTCGGC
    AAGGAAGATA TGGTTCAGAT CTTTGACCAC TTGGAAGCCA TTCCTGCCTT CTCCCGGGAT
    GTGTGCCGTG AAGGGATGGA CCCCCGGGGG AGCCTGCTGA TGGAGTGGAG AGACCTCAAG
    GCTGATTACT ACACCAAAAA TGGCTTCAAA GACCTCATAA GCCACATCTG CAAGTACAAG
    CAGAGGTTTC CGCTCTTGAA CAAGATCATT CAGGTCCTTA AAGTTCTCCC CACCTCCACT
    GCCTGCTGTG AGAAAGGCCG AAGTGCCCTC CAGCGGGTCC GCAAAAACCA CCGCTCACGC
    CTGACCCTGG AGCAGCTCAG TGACCTGTTG ACGATTGCTG TGAACGGACC ACCCATCGCC
    AGCTTTGATG CCAAGCGAGC CCTGGACAGC TGGTTTGAGG AGAAGTCTGG CAACAGCTAC
    ACACTTTCAG CCGAGGTCCT CAGTAGGATG TCTGCCTTGG AGCAGAAGCC CATGCTGCAG
    GCTGTGGACC ATGGCTCTGA ATTCTACCCA GACATGTAG

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

    RefSeq XP_017447537.1
    CDS275..3793
    Translation

    Target ORF information:

    RefSeq Version XM_017592048.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus PR domain 11 (Prdm11), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017592048.1

    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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGGAGAGAAG AGATTGCAGA GAGAGAAGGC TGAGCAAGCC
    CTGGATAACC CAGAAGACCT AAGGGGTCCC TCCCATTTCC CTGTGTTGAA GCAGGGCAGA
    AGTCCTTACA AGCGCAGCTT TGATGAGGGG GACCTCCACC CTCAGGCCAA GAAGAAGAAA
    ATAGACCTCA TCTTCAAGGA CGTCCTGGAA GCCTCACTGG AGTCTGCTAA CGCGGAAGGC
    CGCCAGCTGG CCCTGAGCAC CTCCCTGGTC ATCCGGAAAG TCCCCAAGTA CCAGGACGAT
    GACTATGGTA GAGCTGCCCT GACACAAGGC ATCTGCAGGA CCCCAGGGGA AGGGGACTGG
    AAGGTCCCTC AAAAGGTGGC CAAGGAGCTA GGCCCACTGG AAGATGAAGA GGAGGAGCAT
    ACGTCGTTCA AGGCCGACAG CCCCGCTGAG GCCTCTCTGG CATCTGACCC CCACGAGCTG
    CCCACCACCT CCTTTTGCCC TAACTGCATC CGACTGAAAA AGAAAGTGCG GGAATTGCAG
    GCGGAGCTAG ATATGCTTAA GTCTGGAAAG GTGCCTGAGC CTCCCATTCT GCCACAGCAG
    GTACTGGAGC TCCCAGAGTT CTCAGATCCT GCAGCTTCAG AGAGTATGGT CTCCTGCCCA
    GCCATCATGG AGGACGACGA CCAGGAAGTG GATTCTGCAG ACGAATCTGT CTCCAATGAC
    GTGATGACGG CAACCGACGA ACCCTCCAAG TTGTCCTCTG CCACGGGACG CCGCATCCGG
    CGCTTCAAGC AGGAGTGGCT GAAGAAGTTC TGGTTCCTAA GGTACTCCCC GACCCTCAAC
    GAGATGTGGT GCCATGTGTG CCGCCAGTAC ACGGTGCAGT CCTCACGCAC GTCCGCCTTC
    ATCATCGGCT CCAAGCAGTT CAAGATCCAC ACCATCAAAC TGCACAGTCA GAGTAACCTG
    CACAAGAAGT GCCTGCAGCT GTACAAGCTG CGCATGCACC CGGAGAAGAC AGAGGAGATG
    TGCCGCAACA TGACCCTGCT CTTCAACACT GCCTACCACC TGGCACTGGA GGGAAGGCCC
    TACCTCGACT TCCGGCCACT GGCAGAGCTG CTGCGTAAGT GCGAGCTCAA GGTGGTGGAC
    CAGTATATGA ATGAGGGGGA CTGCCAGATC CTCATCCACC ACATCGCCCG GGCACTGCGA
    GAGGACCTGG TGGAGCGCAT CCGTCAGTCA CCCTGCCTCA GCATCATCCT GGATGGGCAG
    AGTGACGACC TCCTGGCTGA CACGGTGGCC GTCTATGTGC AGTATACCAG CAGCGATGGG
    CCCCCGGCCA CAGAATTCCT ATCCTTGCAG GAGCTAGGCT TCTCCAGCAC AGAAAGCTAT
    CTCCAGGCTC TTGACCGGGC CTTTGCTGCT CTGGGCATCC GCTTACAGGA TGAGAAGCCA
    ACTGTGGGCC TGGGAGTCGA TGGGGCCAAC ATCACCGCCA GCTTGCGTGC CAGCATGTTC
    ATGACCATCC GCAAGACGCT GCCATGGCTG CTGTGCTTGC CCTTCATGGT GCACCGGCCA
    CACCTGGAGA TCCTGGATGC CATCAGTGGG AAGGAACTGC CCTGTCTAGA GGAGCTGGAG
    AACAACCTGA AGCAGCTCCT CAGCTTCTAC CGCTACTCAC CACGCCTCAT GTGTGAGCTG
    CGCTCCACGG CCTCTACCCT GTGCGAGGAG ACTGAATTCC TGGGAGACAT CCGTGCCGTG
    AGGTGGATCA TCGGTGAGCA GAATGTCTTG AATGCCCTTA TCAAGGATTA CCTGGAAGTG
    GTGGCCCACC TGAAGGATGT CAGCAGCCAG ACACAGCGGG CAGACGCTTC CGCCATAGCC
    CTGGCCCTGT TGCAGTTCCT CATGGACTAC CAGTCCATCA AGCTCATCTA CTTCCTGCTG
    GATGTGATTG CCGTGCTGTC ACGCCTGGCC TACATCTTCC AGGGAGAGTA CCTACTGGTG
    TCACAGGTGG ATGACAAGAT CGAGGAGGCA ATCCAGGAGA TCAGTCGGCT TGCAGACTCC
    CCGGGAGAGT ACCTGCAGGA ATTTGAGGAG AATTTCCGAG AGAGCTTCAA TGGGATCGCT
    GTGAAGAACC TCAGGGTGGC AGAGGCCAAG TTTCAGTCTA TCAGGGAGAA GATCTGCCAG
    AAGACACAGG TCATTCTGGC TCAGAGGTTC GACTCCCGAA GCCGGGTCTT TGTGAAGGCC
    TGCCAAGTGT TCGACTTAGC CGCCTGGCCC AGGAACAATG AGGAGCTTCT GAGCTTCGGC
    AAGGAAGATA TGGTTCAGAT CTTTGACCAC TTGGAAGCCA TTCCTGCCTT CTCCCGGGAT
    GTGTGCCGTG AAGGGATGGA CCCCCGGGGG AGCCTGCTGA TGGAGTGGAG AGACCTCAAG
    GCTGATTACT ACACCAAAAA TGGCTTCAAA GACCTCATAA GCCACATCTG CAAGTACAAG
    CAGAGGTTTC CGCTCTTGAA CAAGATCATT CAGGTCCTTA AAGTTCTCCC CACCTCCACT
    GCCTGCTGTG AGAAAGGCCG AAGTGCCCTC CAGCGGGTCC GCAAAAACCA CCGCTCACGC
    CTGACCCTGG AGCAGCTCAG TGACCTGTTG ACGATTGCTG TGAACGGACC ACCCATCGCC
    AGCTTTGATG CCAAGCGAGC CCTGGACAGC TGGTTTGAGG AGAAGTCTGG CAACAGCTAC
    ACACTTTCAG CCGAGGTCCT CAGTAGGATG TCTGCCTTGG AGCAGAAGCC CATGCTGCAG
    GCTGTGGACC ATGGCTCTGA ATTCTACCCA GACATGTAG

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

    CloneID ORa11282
    Clone ID Related Accession (Same CDS sequence) XM_017592048.1 , NM_001271530.1 , XM_017592049.1
    Accession Version XM_017592049.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3519bp)
    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 2016-07-25
    Organism Rattus norvegicus(Norway rat)
    Product PR domain-containing protein 11 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_005102.4) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Rattus norvegicus Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGGAGAGAAG AGATTGCAGA GAGAGAAGGC TGAGCAAGCC
    CTGGATAACC CAGAAGACCT AAGGGGTCCC TCCCATTTCC CTGTGTTGAA GCAGGGCAGA
    AGTCCTTACA AGCGCAGCTT TGATGAGGGG GACCTCCACC CTCAGGCCAA GAAGAAGAAA
    ATAGACCTCA TCTTCAAGGA CGTCCTGGAA GCCTCACTGG AGTCTGCTAA CGCGGAAGGC
    CGCCAGCTGG CCCTGAGCAC CTCCCTGGTC ATCCGGAAAG TCCCCAAGTA CCAGGACGAT
    GACTATGGTA GAGCTGCCCT GACACAAGGC ATCTGCAGGA CCCCAGGGGA AGGGGACTGG
    AAGGTCCCTC AAAAGGTGGC CAAGGAGCTA GGCCCACTGG AAGATGAAGA GGAGGAGCAT
    ACGTCGTTCA AGGCCGACAG CCCCGCTGAG GCCTCTCTGG CATCTGACCC CCACGAGCTG
    CCCACCACCT CCTTTTGCCC TAACTGCATC CGACTGAAAA AGAAAGTGCG GGAATTGCAG
    GCGGAGCTAG ATATGCTTAA GTCTGGAAAG GTGCCTGAGC CTCCCATTCT GCCACAGCAG
    GTACTGGAGC TCCCAGAGTT CTCAGATCCT GCAGCTTCAG AGAGTATGGT CTCCTGCCCA
    GCCATCATGG AGGACGACGA CCAGGAAGTG GATTCTGCAG ACGAATCTGT CTCCAATGAC
    GTGATGACGG CAACCGACGA ACCCTCCAAG TTGTCCTCTG CCACGGGACG CCGCATCCGG
    CGCTTCAAGC AGGAGTGGCT GAAGAAGTTC TGGTTCCTAA GGTACTCCCC GACCCTCAAC
    GAGATGTGGT GCCATGTGTG CCGCCAGTAC ACGGTGCAGT CCTCACGCAC GTCCGCCTTC
    ATCATCGGCT CCAAGCAGTT CAAGATCCAC ACCATCAAAC TGCACAGTCA GAGTAACCTG
    CACAAGAAGT GCCTGCAGCT GTACAAGCTG CGCATGCACC CGGAGAAGAC AGAGGAGATG
    TGCCGCAACA TGACCCTGCT CTTCAACACT GCCTACCACC TGGCACTGGA GGGAAGGCCC
    TACCTCGACT TCCGGCCACT GGCAGAGCTG CTGCGTAAGT GCGAGCTCAA GGTGGTGGAC
    CAGTATATGA ATGAGGGGGA CTGCCAGATC CTCATCCACC ACATCGCCCG GGCACTGCGA
    GAGGACCTGG TGGAGCGCAT CCGTCAGTCA CCCTGCCTCA GCATCATCCT GGATGGGCAG
    AGTGACGACC TCCTGGCTGA CACGGTGGCC GTCTATGTGC AGTATACCAG CAGCGATGGG
    CCCCCGGCCA CAGAATTCCT ATCCTTGCAG GAGCTAGGCT TCTCCAGCAC AGAAAGCTAT
    CTCCAGGCTC TTGACCGGGC CTTTGCTGCT CTGGGCATCC GCTTACAGGA TGAGAAGCCA
    ACTGTGGGCC TGGGAGTCGA TGGGGCCAAC ATCACCGCCA GCTTGCGTGC CAGCATGTTC
    ATGACCATCC GCAAGACGCT GCCATGGCTG CTGTGCTTGC CCTTCATGGT GCACCGGCCA
    CACCTGGAGA TCCTGGATGC CATCAGTGGG AAGGAACTGC CCTGTCTAGA GGAGCTGGAG
    AACAACCTGA AGCAGCTCCT CAGCTTCTAC CGCTACTCAC CACGCCTCAT GTGTGAGCTG
    CGCTCCACGG CCTCTACCCT GTGCGAGGAG ACTGAATTCC TGGGAGACAT CCGTGCCGTG
    AGGTGGATCA TCGGTGAGCA GAATGTCTTG AATGCCCTTA TCAAGGATTA CCTGGAAGTG
    GTGGCCCACC TGAAGGATGT CAGCAGCCAG ACACAGCGGG CAGACGCTTC CGCCATAGCC
    CTGGCCCTGT TGCAGTTCCT CATGGACTAC CAGTCCATCA AGCTCATCTA CTTCCTGCTG
    GATGTGATTG CCGTGCTGTC ACGCCTGGCC TACATCTTCC AGGGAGAGTA CCTACTGGTG
    TCACAGGTGG ATGACAAGAT CGAGGAGGCA ATCCAGGAGA TCAGTCGGCT TGCAGACTCC
    CCGGGAGAGT ACCTGCAGGA ATTTGAGGAG AATTTCCGAG AGAGCTTCAA TGGGATCGCT
    GTGAAGAACC TCAGGGTGGC AGAGGCCAAG TTTCAGTCTA TCAGGGAGAA GATCTGCCAG
    AAGACACAGG TCATTCTGGC TCAGAGGTTC GACTCCCGAA GCCGGGTCTT TGTGAAGGCC
    TGCCAAGTGT TCGACTTAGC CGCCTGGCCC AGGAACAATG AGGAGCTTCT GAGCTTCGGC
    AAGGAAGATA TGGTTCAGAT CTTTGACCAC TTGGAAGCCA TTCCTGCCTT CTCCCGGGAT
    GTGTGCCGTG AAGGGATGGA CCCCCGGGGG AGCCTGCTGA TGGAGTGGAG AGACCTCAAG
    GCTGATTACT ACACCAAAAA TGGCTTCAAA GACCTCATAA GCCACATCTG CAAGTACAAG
    CAGAGGTTTC CGCTCTTGAA CAAGATCATT CAGGTCCTTA AAGTTCTCCC CACCTCCACT
    GCCTGCTGTG AGAAAGGCCG AAGTGCCCTC CAGCGGGTCC GCAAAAACCA CCGCTCACGC
    CTGACCCTGG AGCAGCTCAG TGACCTGTTG ACGATTGCTG TGAACGGACC ACCCATCGCC
    AGCTTTGATG CCAAGCGAGC CCTGGACAGC TGGTTTGAGG AGAAGTCTGG CAACAGCTAC
    ACACTTTCAG CCGAGGTCCT CAGTAGGATG TCTGCCTTGG AGCAGAAGCC CATGCTGCAG
    GCTGTGGACC ATGGCTCTGA ATTCTACCCA GACATGTAG

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

    RefSeq XP_017447538.1
    CDS35..3553
    Translation

    Target ORF information:

    RefSeq Version XM_017592049.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus PR domain 11 (Prdm11), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017592049.1

    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
    ATGACTGAGA ACATGAAGGA GTGCTTGGCC CACACCAAGG CGGCTGTAGG GGACATGGTG 
    ACAGTAGTGA AGACAGAGGT CTGCTCACCA CTCCGGGACC AGGAGTATGG CCAGCCCTGC
    TCTCGGAGAC TGGAGCCATC TTCCATGGAA GTTGAACCTA AGAAACTAAA GGGAAAACGT
    GACCTCATCG TGACCAAAAG CTTCCAGCAA GTGGACTTCT GGTTCTGCGA GTCCTGCCAA
    GAGTACTTTG TGGATGAATG TCCGACCCAT GGTCCCCCCG TGTTTGTGTC TGACACACCA
    GTGCCTGTGG GCATCCCAGA TCGGGCGGCC CTCACCATTC CACAGGGCAT GGAGGTGGTA
    AAGGAAGTTG GTGGAGAGAG CGATGTGCGG TGTATAAATG AAGTCGTCCC CAAGGGTCAC
    ATCTTTGGCC CCTATGAGGG GCAGATCTCT ACCCAGGACA AGTCAGCTGG CTTCTTCTCA
    TGGCTGATTG TGGACAAGAA CAACCGCTAC AAGTCCATAG ATGGGTCAGA TGAGACCAAG
    GCCAACTGGA TGAGGTACGT GGTCATTTCC CGGGAGGAGA GGGAGCAGAA CCTCCTGGCC
    TTCCAGCACA GCGAGCGCAT CTACTTCCGG GCATGCCGAG ACATCCGGCC AGGAGAGCGG
    CTGCGGGTCT GGTACAGCGA GGACTACATG AAGCGTCTGC ACAGCATGTC CCAGGAAACC
    ATCCACCGCA ACCTGGCCCG GGGAGAGAAG AGATTGCAGA GAGAGAAGGC TGAGCAAGCC
    CTGGATAACC CAGAAGACCT AAGGGGTCCC TCCCATTTCC CTGTGTTGAA GCAGGGCAGA
    AGTCCTTACA AGCGCAGCTT TGATGAGGGG GACCTCCACC CTCAGGCCAA GAAGAAGAAA
    ATAGACCTCA TCTTCAAGGA CGTCCTGGAA GCCTCACTGG AGTCTGCTAA CGCGGAAGGC
    CGCCAGCTGG CCCTGAGCAC CTCCCTGGTC ATCCGGAAAG TCCCCAAGTA CCAGGACGAT
    GACTATGGTA GAGCTGCCCT GACACAAGGC ATCTGCAGGA CCCCAGGGGA AGGGGACTGG
    AAGGTCCCTC AAAAGGTGGC CAAGGAGCTA GGCCCACTGG AAGATGAAGA GGAGGAGCAT
    ACGTCGTTCA AGGCCGACAG CCCCGCTGAG GCCTCTCTGG CATCTGACCC CCACGAGCTG
    CCCACCACCT CCTTTTGCCC TAACTGCATC CGACTGAAAA AGAAAGTGCG GGAATTGCAG
    GCGGAGCTAG ATATGCTTAA GTCTGGAAAG GTGCCTGAGC CTCCCATTCT GCCACAGCAG
    GTACTGGAGC TCCCAGAGTT CTCAGATCCT GCAGCTTCAG AGAGTATGGT CTCCTGCCCA
    GCCATCATGG AGGACGACGA CCAGGAAGTG GATTCTGCAG ACGAATCTGT CTCCAATGAC
    GTGATGACGG CAACCGACGA ACCCTCCAAG TTGTCCTCTG CCACGGGACG CCGCATCCGG
    CGCTTCAAGC AGGAGTGGCT GAAGAAGTTC TGGTTCCTAA GGTACTCCCC GACCCTCAAC
    GAGATGTGGT GCCATGTGTG CCGCCAGTAC ACGGTGCAGT CCTCACGCAC GTCCGCCTTC
    ATCATCGGCT CCAAGCAGTT CAAGATCCAC ACCATCAAAC TGCACAGTCA GAGTAACCTG
    CACAAGAAGT GCCTGCAGCT GTACAAGCTG CGCATGCACC CGGAGAAGAC AGAGGAGATG
    TGCCGCAACA TGACCCTGCT CTTCAACACT GCCTACCACC TGGCACTGGA GGGAAGGCCC
    TACCTCGACT TCCGGCCACT GGCAGAGCTG CTGCGTAAGT GCGAGCTCAA GGTGGTGGAC
    CAGTATATGA ATGAGGGGGA CTGCCAGATC CTCATCCACC ACATCGCCCG GGCACTGCGA
    GAGGACCTGG TGGAGCGCAT CCGTCAGTCA CCCTGCCTCA GCATCATCCT GGATGGGCAG
    AGTGACGACC TCCTGGCTGA CACGGTGGCC GTCTATGTGC AGTATACCAG CAGCGATGGG
    CCCCCGGCCA CAGAATTCCT ATCCTTGCAG GAGCTAGGCT TCTCCAGCAC AGAAAGCTAT
    CTCCAGGCTC TTGACCGGGC CTTTGCTGCT CTGGGCATCC GCTTACAGGA TGAGAAGCCA
    ACTGTGGGCC TGGGAGTCGA TGGGGCCAAC ATCACCGCCA GCTTGCGTGC CAGCATGTTC
    ATGACCATCC GCAAGACGCT GCCATGGCTG CTGTGCTTGC CCTTCATGGT GCACCGGCCA
    CACCTGGAGA TCCTGGATGC CATCAGTGGG AAGGAACTGC CCTGTCTAGA GGAGCTGGAG
    AACAACCTGA AGCAGCTCCT CAGCTTCTAC CGCTACTCAC CACGCCTCAT GTGTGAGCTG
    CGCTCCACGG CCTCTACCCT GTGCGAGGAG ACTGAATTCC TGGGAGACAT CCGTGCCGTG
    AGGTGGATCA TCGGTGAGCA GAATGTCTTG AATGCCCTTA TCAAGGATTA CCTGGAAGTG
    GTGGCCCACC TGAAGGATGT CAGCAGCCAG ACACAGCGGG CAGACGCTTC CGCCATAGCC
    CTGGCCCTGT TGCAGTTCCT CATGGACTAC CAGTCCATCA AGCTCATCTA CTTCCTGCTG
    GATGTGATTG CCGTGCTGTC ACGCCTGGCC TACATCTTCC AGGGAGAGTA CCTACTGGTG
    TCACAGGTGG ATGACAAGAT CGAGGAGGCA ATCCAGGAGA TCAGTCGGCT TGCAGACTCC
    CCGGGAGAGT ACCTGCAGGA ATTTGAGGAG AATTTCCGAG AGAGCTTCAA TGGGATCGCT
    GTGAAGAACC TCAGGGTGGC AGAGGCCAAG TTTCAGTCTA TCAGGGAGAA GATCTGCCAG
    AAGACACAGG TCATTCTGGC TCAGAGGTTC GACTCCCGAA GCCGGGTCTT TGTGAAGGCC
    TGCCAAGTGT TCGACTTAGC CGCCTGGCCC AGGAACAATG AGGAGCTTCT GAGCTTCGGC
    AAGGAAGATA TGGTTCAGAT CTTTGACCAC TTGGAAGCCA TTCCTGCCTT CTCCCGGGAT
    GTGTGCCGTG AAGGGATGGA CCCCCGGGGG AGCCTGCTGA TGGAGTGGAG AGACCTCAAG
    GCTGATTACT ACACCAAAAA TGGCTTCAAA GACCTCATAA GCCACATCTG CAAGTACAAG
    CAGAGGTTTC CGCTCTTGAA CAAGATCATT CAGGTCCTTA AAGTTCTCCC CACCTCCACT
    GCCTGCTGTG AGAAAGGCCG AAGTGCCCTC CAGCGGGTCC GCAAAAACCA CCGCTCACGC
    CTGACCCTGG AGCAGCTCAG TGACCTGTTG ACGATTGCTG TGAACGGACC ACCCATCGCC
    AGCTTTGATG CCAAGCGAGC CCTGGACAGC TGGTTTGAGG AGAAGTCTGG CAACAGCTAC
    ACACTTTCAG CCGAGGTCCT CAGTAGGATG TCTGCCTTGG AGCAGAAGCC CATGCTGCAG
    GCTGTGGACC ATGGCTCTGA ATTCTACCCA GACATGTAG

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