Igdcc4 cDNA ORF clone, Nannospalax galili(Upper Galilee mountains blind mole rat)

The following Igdcc4 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Igdcc4 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
ONa130923 XM_029564996.1
Latest version!
Nannospalax galili immunoglobulin superfamily DCC subclass member 4 (Igdcc4), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ONa19714 XM_008836530.2
Latest version!
Nannospalax galili immunoglobulin superfamily DCC subclass member 4 (Igdcc4), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00

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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 ONa130923
    Clone ID Related Accession (Same CDS sequence) XM_029564996.1
    Accession Version XM_029564996.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3765bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product LOW QUALITY PROTEIN: immunoglobulin superfamily DCC subclass member 4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008341028.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## frameshifts :: corrected 1 indel ##RefSeq-Attributes-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
    ATGGCGCGGG GGGACGCGGG CCGCCGGCTT CTGGCGCTGA GCTTCTGCCT GCTGGCCACG 
    CGCGGGGAGC TACCATTACC CCAGAAGACA ACTGTTGAGC TGAGCTGTGA CATAGGGCCA
    CTTCAAGTGA TCCTGGGCCC CAAGCAGGCT GTGGTGCTGG ACTGTAGTCT GGGGGCTGCT
    GCCACGGGAC CACCGAGCAG GGTGACATGG AACAAAGATG GGGATGTCAT GCTGGAGCAT
    GATCACCTAC ACTTGCTCCC CAATGGCTCC CTGTGGCTGT CCTCACGTCT GGAACCTGAA
    GACAGGAATG ATGAGGAAGC CCCTAGGTCC CAGAAGGTTA TTGAGGGCAG TTATTCCTGT
    CTGGCCCATG GCCCTCTGGG AGTAGTGGCC AGCCAAGTTG CTGTGGTCAA GCTTGCCACA
    CTTGCACACT TCTCTCTGCA CCCGGAGCCT CAGACAGTGG AGGAGAATGG GACAGCTCGC
    TTTGAGTGCC ACATCGAGGG TCTGCCAGCC CCCATCATTA CTTGGGAAAA GGACCAGGTG
    ACATTGCCTG AGGAGCCTCG GCTCATCACT CTTCCCAATG GCGTTCTCCA GATCCTAGAT
    GTTCAGGATG GTGACACAGG CTCCTACCGC TGTGTGGCCA CCAACTCAGC CCACCGGCGC
    TTCAGCAGCG AGGCCCCACT CAGGGTGGCC CTCAGAGGGT CCCTGGTGGC CACCAGGGGT
    CAGGACGTGG TCATTGTAGC AGCCCCAGAG AACACCACGG TGGTGTCAGG ACAGAGTGTA
    GTGATGGAGT GTGTAGCCTC CGCTGACCCC ACACCTTTTG TGTCCTGGGT CCGACAGGAC
    GGGAAGCCCA TCTCCACCGA TGTCATAGTC CTGGGCCGTA CCAATCTACT CATCGCCAGC
    GCGCAGCCGT GGCACTCCGG CATCTACGTC TGCCGGGCCA ACAAGCCCCG CACGCGGGAC
    TTCGCCACCG CTGCTGCAGA GCTCCGGGTC CTGGCGGCTC CTGCCATCTC GCAGGCGCCC
    GAGGCGCTCT CGCGGACCCG GGCCAGCACC GCACGCTTCG TGTGTCGTGC GTCAGGGGAG
    CCACGGCCCG CGCTGCGCTG GCTGCACAAC GGGGCACCGC TGCGGCCCAA CGGGCGCGTC
    AAGGTCCAGG GCGGCGGCGG CAGCTTGGTC ATCACGCAGA TCGGCCTGCA GGACGCCGGC
    TTCTACCAGT GTGTGGCGGA GAACAGCGCA GGCACCGCGT GTGCAGCTGC GCCGCTGTCG
    GTAGTGGTGC GCGAGGGGCT GCCCAGCGCC CCAACTCGGG TCACCGCCAC ACCTCTGAGC
    AGCTCGGCTG TTTTGGTGGC CTGGGAGCGG CCTGAGCTGC ACAGCGAACA AATCATTGGC
    TTCTCCCTCC ACTACCAAAA GGCACGGGGT GTGGACAATG TGGAGTACCA GTTTGCAGTG
    AACAATGACA CCACAGAGCT GCAAGTTCGG GACCTGGAAC CCAACACAGA CTATGAGTTC
    TACGTGGTGG CCTACTCCCA ACTGGGGGCT AGCCGCACCT CCAGCCCAGC CCTGGTGCAT
    ACTTTGGATG ATGTCCCCAG TGCAGCACCC CAGCTTGCCC TGTCCAGCCC TAACCCTTCG
    GACATCAGGG TGGCATGGCT GCCCCTGCCC CCCAGCCTGA GCAACGGACA GGTGGTGAAG
    TACAAGATAG AGTTCAGTTT GGGAAGGGAA GAAGACCAGG TTTTCTCCAC TGAAGTACCA
    GGAAATGAGA CCCAGCTTAC GTTAAATTTG CTTCAACCGA ACAAGGTTTA CCAAGTCCGA
    ATTTCGGCTG GCACTGGCGC CGGCTATGGG ACCCCCTCCC AGTGGATGCA GCACAGGACA
    CCTGGTGCGC ACAACCAGAG CCATGTCCCC TTTGCCCCTG CAGAGTTGAA GGTGCGGGCA
    AAGACGGAGT CCCTGGTGGT GTCATGGCAA CCGCCCCCTC ACCCCACCCA GATCTCTGGC
    TACAAATTGT ACTGGCGTGA AGTGGGGGCA GAGGAGGAGG CTGATATTGA CCGTCCTCCT
    GGCGGCCGCG GAGACCAGGC TTGGGATGTA GGGCCGGTCC GGCTCAAGAA GAAAGTGAAG
    CAGTATGAGC TGACCCAGCT AGTTCCTGGA CGATTGTACG AGGTAAAGCT TGTGGCATTC
    AACAAACACG AGGATGGCTA CGCGGCAGTG TGGAAGGGCA AGACAGAGAA GGCACCCACG
    CCAGACCTGC CTATCCAGAG AGGGCCACCT CTACCTCCTG CTCACGTCCA TGCTGAGTCA
    AACAGCTCCA CCTCCATTTG GCTTCGGTGG AAGAAGCCAG ACTTCACCAC CGTCAAGATT
    GTCAACTACA CTGTACGTTT CGGACCCTGG GGGCTCAGGA ATGCCTCCCT GGTCACATAC
    TACACCAGCT CTGGAGAAGA TATCCTCATT GGCGGGCTGA AGCCATTCAC CAAGTACGAG
    TTTGCCGTGC AGTCCCATGG CGTGGACATG GATGGGCCTT TTGGCTCTGT GGTGGAACGT
    TCCACCTTGC CTGACCGGCC CTCCACTCCT CCTTCTGACC TGCGTCTGAG CCCCCTGACA
    CCATCCACTG TCCGGCTGCA CTGGTGTCCC CCCACAGAAC CTAATGGCGA GATTGTGGAA
    TATCTGATCC TCTATAGTGA CAACCACACT CAACCGGAGC ACCAGTGGAC GCTGCTCACC
    ACAGAGGGAA ACATCTTCAG CGCAGAGGTA CATGGCCTGG AGAGTGACAC TCGGTACTTC
    TTTAAGATGG GGGCTCGCAC AGAGGTGGGA CCTGGGCCCT TCTCCCACCT GCAGGATGTG
    ATCACTCTCC AGGAGACACT CTCAGACTCC TTGGATGTGC ACTCCGTCAC GGGCATCATC
    GTGGGTGTCT GCCTGGGCCT TCTCTGCCTT CTGGCCTGCA TGTGTGCTGG ACTTCGACGA
    AGCCCCCACA GGGAATCCCT CCCAGGTCTG TCCTCCACAG CCACCTCTGG GAACCCAGCA
    CTGTACTCCA GAGCCCGGTT GGGCCCCCCG AGTCTCCCTG CTGCCCATGA GCTGGAGTCC
    CTCGTGCATC CCCACCCTCA GGACTGGTCC CTGTCACCCT CAGATGTGGA GGACAAGGCT
    GAGGTGCACA GCCTTATGGG TGGCAGTGTT TCAGACTGCC GAGGCCACTC CAAGAGAAAG
    ATCTCCTGGG CTCAGCCAAG TGGACCGAGC TGGGCAGGCT CCTGGGCAAG CTGTGAGCTG
    CCCCAGGGAT GTTCCAGGCC TGCTCTGACC CATGCCCTGC TGCCTCCAGC TGGAACTGGG
    CAGACATTAT TGCTCCAGGC GCTGGTGTAT GATGCTATAA AGGAAAATGG GAGGAAGAAG
    CCTCCCCCAG CCTGTAGGAA CCAGGTGGAG GCCGAGGTCA TTGTCCACTC CAATTTCGGT
    GCATCCAAAG GGAGCCCTGA CCTCCATCTC CAAGGCCTGG AACCTGAGCC TGAAGAGCCC
    TTGCCTGCAG AGACTCTGGC TCCCACCTCT GGGGTTGTGG ATATGTCACA AGGGGGAGAC
    TGGCTGGGCA GGGAGCTGGA AGGGTGTGAG CAGGAATCCC CTGGGCCAGA TAGGCTCACC
    TGCCTACCAG AGGCAGCCAG TGCTTCCTGC CCTTGCCCAA ACCTCCAGCC CAGCAAGGCT
    CTTGAGGAGG CCCCTGGGAA CAGCCAACCC AAAGCCCTGT GCCCTCAAAG CGTTAGCCCA
    AGCCTGCCCA GGGCCCCTGT CTCCTCCTCT CCTCCACTCT CCTGA

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

    RefSeq XP_029420856.1
    CDS14..3778
    Translation

    Target ORF information:

    RefSeq Version XM_029564996.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili immunoglobulin superfamily DCC subclass member 4 (Igdcc4), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029564996.1

    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
    ATGGCGCGGG GGGACGCGGG CCGCCGGCTT CTGGCGCTGA GCTTCTGCCT GCTGGCCACG 
    CGCGGGGAGC TACCATTACC CCAGAAGACA ACTGTTGAGC TGAGCTGTGA CATAGGGCCA
    CTTCAAGTGA TCCTGGGCCC CAAGCAGGCT GTGGTGCTGG ACTGTAGTCT GGGGGCTGCT
    GCCACGGGAC CACCGAGCAG GGTGACATGG AACAAAGATG GGGATGTCAT GCTGGAGCAT
    GATCACCTAC ACTTGCTCCC CAATGGCTCC CTGTGGCTGT CCTCACGTCT GGAACCTGAA
    GACAGGAATG ATGAGGAAGC CCCTAGGTCC CAGAAGGTTA TTGAGGGCAG TTATTCCTGT
    CTGGCCCATG GCCCTCTGGG AGTAGTGGCC AGCCAAGTTG CTGTGGTCAA GCTTGCCACA
    CTTGCACACT TCTCTCTGCA CCCGGAGCCT CAGACAGTGG AGGAGAATGG GACAGCTCGC
    TTTGAGTGCC ACATCGAGGG TCTGCCAGCC CCCATCATTA CTTGGGAAAA GGACCAGGTG
    ACATTGCCTG AGGAGCCTCG GCTCATCACT CTTCCCAATG GCGTTCTCCA GATCCTAGAT
    GTTCAGGATG GTGACACAGG CTCCTACCGC TGTGTGGCCA CCAACTCAGC CCACCGGCGC
    TTCAGCAGCG AGGCCCCACT CAGGGTGGCC CTCAGAGGGT CCCTGGTGGC CACCAGGGGT
    CAGGACGTGG TCATTGTAGC AGCCCCAGAG AACACCACGG TGGTGTCAGG ACAGAGTGTA
    GTGATGGAGT GTGTAGCCTC CGCTGACCCC ACACCTTTTG TGTCCTGGGT CCGACAGGAC
    GGGAAGCCCA TCTCCACCGA TGTCATAGTC CTGGGCCGTA CCAATCTACT CATCGCCAGC
    GCGCAGCCGT GGCACTCCGG CATCTACGTC TGCCGGGCCA ACAAGCCCCG CACGCGGGAC
    TTCGCCACCG CTGCTGCAGA GCTCCGGGTC CTGGCGGCTC CTGCCATCTC GCAGGCGCCC
    GAGGCGCTCT CGCGGACCCG GGCCAGCACC GCACGCTTCG TGTGTCGTGC GTCAGGGGAG
    CCACGGCCCG CGCTGCGCTG GCTGCACAAC GGGGCACCGC TGCGGCCCAA CGGGCGCGTC
    AAGGTCCAGG GCGGCGGCGG CAGCTTGGTC ATCACGCAGA TCGGCCTGCA GGACGCCGGC
    TTCTACCAGT GTGTGGCGGA GAACAGCGCA GGCACCGCGT GTGCAGCTGC GCCGCTGTCG
    GTAGTGGTGC GCGAGGGGCT GCCCAGCGCC CCAACTCGGG TCACCGCCAC ACCTCTGAGC
    AGCTCGGCTG TTTTGGTGGC CTGGGAGCGG CCTGAGCTGC ACAGCGAACA AATCATTGGC
    TTCTCCCTCC ACTACCAAAA GGCACGGGGT GTGGACAATG TGGAGTACCA GTTTGCAGTG
    AACAATGACA CCACAGAGCT GCAAGTTCGG GACCTGGAAC CCAACACAGA CTATGAGTTC
    TACGTGGTGG CCTACTCCCA ACTGGGGGCT AGCCGCACCT CCAGCCCAGC CCTGGTGCAT
    ACTTTGGATG ATGTCCCCAG TGCAGCACCC CAGCTTGCCC TGTCCAGCCC TAACCCTTCG
    GACATCAGGG TGGCATGGCT GCCCCTGCCC CCCAGCCTGA GCAACGGACA GGTGGTGAAG
    TACAAGATAG AGTTCAGTTT GGGAAGGGAA GAAGACCAGG TTTTCTCCAC TGAAGTACCA
    GGAAATGAGA CCCAGCTTAC GTTAAATTTG CTTCAACCGA ACAAGGTTTA CCAAGTCCGA
    ATTTCGGCTG GCACTGGCGC CGGCTATGGG ACCCCCTCCC AGTGGATGCA GCACAGGACA
    CCTGGTGCGC ACAACCAGAG CCATGTCCCC TTTGCCCCTG CAGAGTTGAA GGTGCGGGCA
    AAGACGGAGT CCCTGGTGGT GTCATGGCAA CCGCCCCCTC ACCCCACCCA GATCTCTGGC
    TACAAATTGT ACTGGCGTGA AGTGGGGGCA GAGGAGGAGG CTGATATTGA CCGTCCTCCT
    GGCGGCCGCG GAGACCAGGC TTGGGATGTA GGGCCGGTCC GGCTCAAGAA GAAAGTGAAG
    CAGTATGAGC TGACCCAGCT AGTTCCTGGA CGATTGTACG AGGTAAAGCT TGTGGCATTC
    AACAAACACG AGGATGGCTA CGCGGCAGTG TGGAAGGGCA AGACAGAGAA GGCACCCACG
    CCAGACCTGC CTATCCAGAG AGGGCCACCT CTACCTCCTG CTCACGTCCA TGCTGAGTCA
    AACAGCTCCA CCTCCATTTG GCTTCGGTGG AAGAAGCCAG ACTTCACCAC CGTCAAGATT
    GTCAACTACA CTGTACGTTT CGGACCCTGG GGGCTCAGGA ATGCCTCCCT GGTCACATAC
    TACACCAGCT CTGGAGAAGA TATCCTCATT GGCGGGCTGA AGCCATTCAC CAAGTACGAG
    TTTGCCGTGC AGTCCCATGG CGTGGACATG GATGGGCCTT TTGGCTCTGT GGTGGAACGT
    TCCACCTTGC CTGACCGGCC CTCCACTCCT CCTTCTGACC TGCGTCTGAG CCCCCTGACA
    CCATCCACTG TCCGGCTGCA CTGGTGTCCC CCCACAGAAC CTAATGGCGA GATTGTGGAA
    TATCTGATCC TCTATAGTGA CAACCACACT CAACCGGAGC ACCAGTGGAC GCTGCTCACC
    ACAGAGGGAA ACATCTTCAG CGCAGAGGTA CATGGCCTGG AGAGTGACAC TCGGTACTTC
    TTTAAGATGG GGGCTCGCAC AGAGGTGGGA CCTGGGCCCT TCTCCCACCT GCAGGATGTG
    ATCACTCTCC AGGAGACACT CTCAGACTCC TTGGATGTGC ACTCCGTCAC GGGCATCATC
    GTGGGTGTCT GCCTGGGCCT TCTCTGCCTT CTGGCCTGCA TGTGTGCTGG ACTTCGACGA
    AGCCCCCACA GGGAATCCCT CCCAGGTCTG TCCTCCACAG CCACCTCTGG GAACCCAGCA
    CTGTACTCCA GAGCCCGGTT GGGCCCCCCG AGTCTCCCTG CTGCCCATGA GCTGGAGTCC
    CTCGTGCATC CCCACCCTCA GGACTGGTCC CTGTCACCCT CAGATGTGGA GGACAAGGCT
    GAGGTGCACA GCCTTATGGG TGGCAGTGTT TCAGACTGCC GAGGCCACTC CAAGAGAAAG
    ATCTCCTGGG CTCAGCCAAG TGGACCGAGC TGGGCAGGCT CCTGGGCAAG CTGTGAGCTG
    CCCCAGGGAT GTTCCAGGCC TGCTCTGACC CATGCCCTGC TGCCTCCAGC TGGAACTGGG
    CAGACATTAT TGCTCCAGGC GCTGGTGTAT GATGCTATAA AGGAAAATGG GAGGAAGAAG
    CCTCCCCCAG CCTGTAGGAA CCAGGTGGAG GCCGAGGTCA TTGTCCACTC CAATTTCGGT
    GCATCCAAAG GGAGCCCTGA CCTCCATCTC CAAGGCCTGG AACCTGAGCC TGAAGAGCCC
    TTGCCTGCAG AGACTCTGGC TCCCACCTCT GGGGTTGTGG ATATGTCACA AGGGGGAGAC
    TGGCTGGGCA GGGAGCTGGA AGGGTGTGAG CAGGAATCCC CTGGGCCAGA TAGGCTCACC
    TGCCTACCAG AGGCAGCCAG TGCTTCCTGC CCTTGCCCAA ACCTCCAGCC CAGCAAGGCT
    CTTGAGGAGG CCCCTGGGAA CAGCCAACCC AAAGCCCTGT GCCCTCAAAG CGTTAGCCCA
    AGCCTGCCCA GGGCCCCTGT CTCCTCCTCT CCTCCACTCT CCTGA

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

    CloneID ONa19714
    Clone ID Related Accession (Same CDS sequence) XM_008836530.2
    Accession Version XM_008836530.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3708bp)
    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 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product LOW QUALITY PROTEIN: immunoglobulin superfamily DCC subclass member 4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008341028.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008836530.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 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## ##RefSeq-Attributes-START## ab initio :: 1% of CDS bases frameshifts :: corrected 1 indel ##RefSeq-Attributes-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
    ATGGAAGGGG AGCTACCATT ACCCCAGAAG ACAACTGTTG AGCTGAGCTG TGACATAGGG 
    CCACTTCAAG TGATCCTGGG CCCCAAGCAG GCTGTGGTGC TGGACTGTAG TCTGGGGGCT
    GCTGCCACGG GACCACCGAG CAGGGTGACA TGGAACAAAG ATGGGGATGT CATGCTGGAG
    CATGATCACC TACACTTGCT CCCCAATGGC TCCCTGTGGC TGTCCTCACG TCTGGAACCT
    GAAGACAGGA ATGATGAGGA AGCCCCTAGG TCCCAGAAGG TTATTGAGGG CAGTTATTCC
    TGTCTGGCCC ATGGCCCTCT GGGAGTAGTG GCCAGCCAAG TTGCTGTGGT CAAGCTTGCC
    ACACTTGCAC ACTTCTCTCT GCACCCGGAG CCTCAGACAG TGGAGGAGAA TGGGACAGCT
    CGCTTTGAGT GCCACATCGA GGGTCTGCCA GCCCCCATCA TTACTTGGGA AAAGGACCAG
    GTGACATTGC CTGAGGAGCC TCGGCTCATC ACTCTTCCCA ATGGCGTTCT CCAGATCCTA
    GATGTTCAGG ATGGTGACAC AGGCTCCTAC CGCTGTGTGG CCACCAACTC AGCCCACCGG
    CGCTTCAGCA GCGAGGCCCC ACTCAGGGTG GCCCTCAGAG GGTCCCTGGT GGCCACCAGG
    GGTCAGGACG TGGTCATTGT AGCAGCCCCA GAGAACACCA CGGTGGTGTC AGGACAGAGT
    GTAGTGATGG AGTGTGTAGC CTCCGCTGAC CCCACACCTT TTGTGTCCTG GGTCCGACAG
    GACGGGAAGC CCATCTCCAC CGATGTCATA GTCCTGGGCC GTACCAATCT ACTCATCGCC
    AGCGCGCAGC CGTGGCACTC CGGCATCTAC GTCTGCCGGG CCAACAAGCC CCGCACGCGG
    GACTTCGCCA CCGCTGCTGC AGAGCTCCGG GTCCTGGCGG CTCCTGCCAT CTCGCAGGCG
    CCCGAGGCGC TCTCGCGGAC CCGGGCCAGC ACCGCACGCT TCGTGTGTCG TGCGTCAGGG
    GAGCCACGGC CCGCGCTGCG CTGGCTGCAC AACGGGGCAC CGCTGCGGCC CAACGGGCGC
    GTCAAGGTCC AGGGCGGCGG CGGCAGCTTG GTCATCACGC AGATCGGCCT GCAGGACGCC
    GGCTTCTACC AGTGTGTGGC GGAGAACAGC GCAGGCACCG CGTGTGCAGC TGCGCCGCTG
    TCGGTAGTGG TGCGCGAGGG GCTGCCCAGC GCCCCAACTC GGGTCACCGC CACACCTCTG
    AGCAGCTCGG CTGTTTTGGT GGCCTGGGAG CGGCCTGAGC TGCACAGCGA ACAAATCATT
    GGCTTCTCCC TCCACTACCA AAAGGCACGG GGTGTGGACA ATGTGGAGTA CCAGTTTGCA
    GTGAACAATG ACACCACAGA GCTGCAAGTT CGGGACCTGG AACCCAACAC AGACTATGAG
    TTCTACGTGG TGGCCTACTC CCAACTGGGG GCTAGCCGCA CCTCCAGCCC AGCCCTGGTG
    CATACTTTGG ATGATGTCCC CAGTGCAGCA CCCCAGCTTG CCCTGTCCAG CCCTAACCCT
    TCGGACATCA GGGTGGCATG GCTGCCCCTG CCCCCCAGCC TGAGCAACGG ACAGGTGGTG
    AAGTACAAGA TAGAGTTCAG TTTGGGAAGG GAAGAAGACC AGGTTTTCTC CACTGAAGTA
    CCAGGAAATG AGACCCAGCT TACGTTAAAT TTGCTTCAAC CGAACAAGGT TTACCAAGTC
    CGAATTTCGG CTGGCACTGG CGCCGGCTAT GGGACCCCCT CCCAGTGGAT GCAGCACAGG
    ACACCTGGTG CGCACAACCA GAGCCATGTC CCCTTTGCCC CTGCAGAGTT GAAGGTGCGG
    GCAAAGACGG AGTCCCTGGT GGTGTCATGG CAACCGCCCC CTCACCCCAC CCAGATCTCT
    GGCTACAAAT TGTACTGGCG TGAAGTGGGG GCAGAGGAGG AGGCTGATAT TGACCGTCCT
    CCTGGCGGCC GCGGAGACCA GGCTTGGGAT GTAGGGCCGG TCCGGCTCAA GAAGAAAGTG
    AAGCAGTATG AGCTGACCCA GCTAGTTCCT GGACGATTGT ACGAGGTAAA GCTTGTGGCA
    TTCAACAAAC ACGAGGATGG CTACGCGGCA GTGTGGAAGG GCAAGACAGA GAAGGCACCC
    ACGCCAGACC TGCCTATCCA GAGAGGGCCA CCTCTACCTC CTGCTCACGT CCATGCTGAG
    TCAAACAGCT CCACCTCCAT TTGGCTTCGG TGGAAGAAGC CAGACTTCAC CACCGTCAAG
    ATTGTCAACT ACACTGTACG TTTCGGACCC TGGGGGCTCA GGAATGCCTC CCTGGTCACA
    TACTACACCA GCTCTGGAGA AGATATCCTC ATTGGCGGGC TGAAGCCATT CACCAAGTAC
    GAGTTTGCCG TGCAGTCCCA TGGCGTGGAC ATGGATGGGC CTTTTGGCTC TGTGGTGGAA
    CGTTCCACCT TGCCTGACCG GCCCTCCACT CCTCCTTCTG ACCTGCGTCT GAGCCCCCTG
    ACACCATCCA CTGTCCGGCT GCACTGGTGT CCCCCCACAG AACCTAATGG CGAGATTGTG
    GAATATCTGA TCCTCTATAG TGACAACCAC ACTCAACCGG AGCACCAGTG GACGCTGCTC
    ACCACAGAGG GAAACATCTT CAGCGCAGAG GTACATGGCC TGGAGAGTGA CACTCGGTAC
    TTCTTTAAGA TGGGGGCTCG CACAGAGGTG GGACCTGGGC CCTTCTCCCA CCTGCAGGAT
    GTGATCACTC TCCAGGAGAC ACTCTCAGAC TCCTTGGATG TGCACTCCGT CACGGGCATC
    ATCGTGGGTG TCTGCCTGGG CCTTCTCTGC CTTCTGGCCT GCATGTGTGC TGGACTTCGA
    CGAAGCCCCC ACAGGGAATC CCTCCCAGGT CTGTCCTCCA CAGCCACCTC TGGGAACCCA
    GCACTGTACT CCAGAGCCCG GTTGGGCCCC CCGAGTCTCC CTGCTGCCCA TGAGCTGGAG
    TCCCTCGTGC ATCCCCACCC TCAGGACTGG TCCCTGTCAC CCTCAGATGT GGAGGACAAG
    GCTGAGGTGC ACAGCCTTAT GGGTGGCAGT GTTTCAGACT GCCGAGGCCA CTCCAAGAGA
    AAGATCTCCT GGGCTCAGCC AAGTGGACCG AGCTGGGCAG GCTCCTGGGC AAGCTGTGAG
    CTGCCCCAGG GATGTTCCAG GCCTGCTCTG ACCCATGCCC TGCTGCCTCC AGCTGGAACT
    GGGCAGACAT TATTGCTCCA GGCGCTGGTG TATGATGCTA TAAAGGAAAA TGGGAGGAAG
    AAGCCTCCCC CAGCCTGTAG GAACCAGGTG GAGGCCGAGG TCATTGTCCA CTCCAATTTC
    GGTGCATCCA AAGGGAGCCC TGACCTCCAT CTCCAAGGCC TGGAACCTGA GCCTGAAGAG
    CCCTTGCCTG CAGAGACTCT GGCTCCCACC TCTGGGGTTG TGGATATGTC ACAAGGGGGA
    GACTGGCTGG GCAGGGAGCT GGAAGGGTGT GAGCAGGAAT CCCCTGGGCC AGATAGGCTC
    ACCTGCCTAC CAGAGGCAGC CAGTGCTTCC TGCCCTTGCC CAAACCTCCA GCCCAGCAAG
    GCTCTTGAGG AGGCCCCTGG GAACAGCCAA CCCAAAGCCC TGTGCCCTCA AAGCGTTAGC
    CCAAGCCTGC CCAGGGCCCC TGTCTCCTCC TCTCCTCCAC TCTCCTGA

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

    RefSeq XP_008834752.2
    CDS1..3708
    Translation

    Target ORF information:

    RefSeq Version XM_008836530.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili immunoglobulin superfamily DCC subclass member 4 (Igdcc4), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008836530.2

    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
    ATGGAAGGGG AGCTACCATT ACCCCAGAAG ACAACTGTTG AGCTGAGCTG TGACATAGGG 
    CCACTTCAAG TGATCCTGGG CCCCAAGCAG GCTGTGGTGC TGGACTGTAG TCTGGGGGCT
    GCTGCCACGG GACCACCGAG CAGGGTGACA TGGAACAAAG ATGGGGATGT CATGCTGGAG
    CATGATCACC TACACTTGCT CCCCAATGGC TCCCTGTGGC TGTCCTCACG TCTGGAACCT
    GAAGACAGGA ATGATGAGGA AGCCCCTAGG TCCCAGAAGG TTATTGAGGG CAGTTATTCC
    TGTCTGGCCC ATGGCCCTCT GGGAGTAGTG GCCAGCCAAG TTGCTGTGGT CAAGCTTGCC
    ACACTTGCAC ACTTCTCTCT GCACCCGGAG CCTCAGACAG TGGAGGAGAA TGGGACAGCT
    CGCTTTGAGT GCCACATCGA GGGTCTGCCA GCCCCCATCA TTACTTGGGA AAAGGACCAG
    GTGACATTGC CTGAGGAGCC TCGGCTCATC ACTCTTCCCA ATGGCGTTCT CCAGATCCTA
    GATGTTCAGG ATGGTGACAC AGGCTCCTAC CGCTGTGTGG CCACCAACTC AGCCCACCGG
    CGCTTCAGCA GCGAGGCCCC ACTCAGGGTG GCCCTCAGAG GGTCCCTGGT GGCCACCAGG
    GGTCAGGACG TGGTCATTGT AGCAGCCCCA GAGAACACCA CGGTGGTGTC AGGACAGAGT
    GTAGTGATGG AGTGTGTAGC CTCCGCTGAC CCCACACCTT TTGTGTCCTG GGTCCGACAG
    GACGGGAAGC CCATCTCCAC CGATGTCATA GTCCTGGGCC GTACCAATCT ACTCATCGCC
    AGCGCGCAGC CGTGGCACTC CGGCATCTAC GTCTGCCGGG CCAACAAGCC CCGCACGCGG
    GACTTCGCCA CCGCTGCTGC AGAGCTCCGG GTCCTGGCGG CTCCTGCCAT CTCGCAGGCG
    CCCGAGGCGC TCTCGCGGAC CCGGGCCAGC ACCGCACGCT TCGTGTGTCG TGCGTCAGGG
    GAGCCACGGC CCGCGCTGCG CTGGCTGCAC AACGGGGCAC CGCTGCGGCC CAACGGGCGC
    GTCAAGGTCC AGGGCGGCGG CGGCAGCTTG GTCATCACGC AGATCGGCCT GCAGGACGCC
    GGCTTCTACC AGTGTGTGGC GGAGAACAGC GCAGGCACCG CGTGTGCAGC TGCGCCGCTG
    TCGGTAGTGG TGCGCGAGGG GCTGCCCAGC GCCCCAACTC GGGTCACCGC CACACCTCTG
    AGCAGCTCGG CTGTTTTGGT GGCCTGGGAG CGGCCTGAGC TGCACAGCGA ACAAATCATT
    GGCTTCTCCC TCCACTACCA AAAGGCACGG GGTGTGGACA ATGTGGAGTA CCAGTTTGCA
    GTGAACAATG ACACCACAGA GCTGCAAGTT CGGGACCTGG AACCCAACAC AGACTATGAG
    TTCTACGTGG TGGCCTACTC CCAACTGGGG GCTAGCCGCA CCTCCAGCCC AGCCCTGGTG
    CATACTTTGG ATGATGTCCC CAGTGCAGCA CCCCAGCTTG CCCTGTCCAG CCCTAACCCT
    TCGGACATCA GGGTGGCATG GCTGCCCCTG CCCCCCAGCC TGAGCAACGG ACAGGTGGTG
    AAGTACAAGA TAGAGTTCAG TTTGGGAAGG GAAGAAGACC AGGTTTTCTC CACTGAAGTA
    CCAGGAAATG AGACCCAGCT TACGTTAAAT TTGCTTCAAC CGAACAAGGT TTACCAAGTC
    CGAATTTCGG CTGGCACTGG CGCCGGCTAT GGGACCCCCT CCCAGTGGAT GCAGCACAGG
    ACACCTGGTG CGCACAACCA GAGCCATGTC CCCTTTGCCC CTGCAGAGTT GAAGGTGCGG
    GCAAAGACGG AGTCCCTGGT GGTGTCATGG CAACCGCCCC CTCACCCCAC CCAGATCTCT
    GGCTACAAAT TGTACTGGCG TGAAGTGGGG GCAGAGGAGG AGGCTGATAT TGACCGTCCT
    CCTGGCGGCC GCGGAGACCA GGCTTGGGAT GTAGGGCCGG TCCGGCTCAA GAAGAAAGTG
    AAGCAGTATG AGCTGACCCA GCTAGTTCCT GGACGATTGT ACGAGGTAAA GCTTGTGGCA
    TTCAACAAAC ACGAGGATGG CTACGCGGCA GTGTGGAAGG GCAAGACAGA GAAGGCACCC
    ACGCCAGACC TGCCTATCCA GAGAGGGCCA CCTCTACCTC CTGCTCACGT CCATGCTGAG
    TCAAACAGCT CCACCTCCAT TTGGCTTCGG TGGAAGAAGC CAGACTTCAC CACCGTCAAG
    ATTGTCAACT ACACTGTACG TTTCGGACCC TGGGGGCTCA GGAATGCCTC CCTGGTCACA
    TACTACACCA GCTCTGGAGA AGATATCCTC ATTGGCGGGC TGAAGCCATT CACCAAGTAC
    GAGTTTGCCG TGCAGTCCCA TGGCGTGGAC ATGGATGGGC CTTTTGGCTC TGTGGTGGAA
    CGTTCCACCT TGCCTGACCG GCCCTCCACT CCTCCTTCTG ACCTGCGTCT GAGCCCCCTG
    ACACCATCCA CTGTCCGGCT GCACTGGTGT CCCCCCACAG AACCTAATGG CGAGATTGTG
    GAATATCTGA TCCTCTATAG TGACAACCAC ACTCAACCGG AGCACCAGTG GACGCTGCTC
    ACCACAGAGG GAAACATCTT CAGCGCAGAG GTACATGGCC TGGAGAGTGA CACTCGGTAC
    TTCTTTAAGA TGGGGGCTCG CACAGAGGTG GGACCTGGGC CCTTCTCCCA CCTGCAGGAT
    GTGATCACTC TCCAGGAGAC ACTCTCAGAC TCCTTGGATG TGCACTCCGT CACGGGCATC
    ATCGTGGGTG TCTGCCTGGG CCTTCTCTGC CTTCTGGCCT GCATGTGTGC TGGACTTCGA
    CGAAGCCCCC ACAGGGAATC CCTCCCAGGT CTGTCCTCCA CAGCCACCTC TGGGAACCCA
    GCACTGTACT CCAGAGCCCG GTTGGGCCCC CCGAGTCTCC CTGCTGCCCA TGAGCTGGAG
    TCCCTCGTGC ATCCCCACCC TCAGGACTGG TCCCTGTCAC CCTCAGATGT GGAGGACAAG
    GCTGAGGTGC ACAGCCTTAT GGGTGGCAGT GTTTCAGACT GCCGAGGCCA CTCCAAGAGA
    AAGATCTCCT GGGCTCAGCC AAGTGGACCG AGCTGGGCAG GCTCCTGGGC AAGCTGTGAG
    CTGCCCCAGG GATGTTCCAG GCCTGCTCTG ACCCATGCCC TGCTGCCTCC AGCTGGAACT
    GGGCAGACAT TATTGCTCCA GGCGCTGGTG TATGATGCTA TAAAGGAAAA TGGGAGGAAG
    AAGCCTCCCC CAGCCTGTAG GAACCAGGTG GAGGCCGAGG TCATTGTCCA CTCCAATTTC
    GGTGCATCCA AAGGGAGCCC TGACCTCCAT CTCCAAGGCC TGGAACCTGA GCCTGAAGAG
    CCCTTGCCTG CAGAGACTCT GGCTCCCACC TCTGGGGTTG TGGATATGTC ACAAGGGGGA
    GACTGGCTGG GCAGGGAGCT GGAAGGGTGT GAGCAGGAAT CCCCTGGGCC AGATAGGCTC
    ACCTGCCTAC CAGAGGCAGC CAGTGCTTCC TGCCCTTGCC CAAACCTCCA GCCCAGCAAG
    GCTCTTGAGG AGGCCCCTGG GAACAGCCAA CCCAAAGCCC TGTGCCCTCA AAGCGTTAGC
    CCAAGCCTGC CCAGGGCCCC TGTCTCCTCC TCTCCTCCAC TCTCCTGA

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