Kcp cDNA ORF clone, Mus caroli(Ryukyu mouse)

The following Kcp gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Kcp 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
OMv02852 XM_021164751.1
Latest version!
Mus caroli kielin/chordin-like protein (Kcp), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $881.30
$1259.00
OMv74067 XM_029478167.1
Latest version!
Mus caroli kielin cysteine rich BMP regulator (Kcp), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
$1159.00

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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 OMv02852
    Clone ID Related Accession (Same CDS sequence) XM_021164751.1
    Accession Version XM_021164751.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4674bp)
    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 2017-05-20
    Organism Mus caroli(Ryukyu mouse)
    Product kielin/chordin-like protein
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034575.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus caroli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 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
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGCGGGGG CTCGGGCGGC GCTGCTACTG CTGCTCCTGC ACCTCGGGAG CCTGGCGCTG 
    GCCGTGCGGG GTGGAGAGGT CTCCAGAGAG CAGCCTAGGC TTGCTGATGT AATCTCTCAG
    CAGCAGGCAC CCTCCCACTC TTTGGTCCCT GGTGAGACCC ATCAACAGCA GTGGTGCCCC
    CTGGAGGAGA GGCTGGAACG TCTGGAGGCA GAGGTGACTG ACCTCAGAAA GCAGAACAGG
    GAGCTGCAAG CCAGGGTGGT GCAGCTGGAG TCCTGTGAGT GCTGCCCCGT CTCCCCCCAG
    TGCTGGGGGC CAGGTCGCAC CTGTCCCGAA GGAGCTCGCT GGGAGCCTGA TGCCTGCACG
    GCCTGCGTGT GCCGTGATGG AACCGTGCAC TGTGGCCCCC AGCCCAACCT GCCCCACTGC
    CGTGGCTGCA GCCACAATGG GCAGTCTTAT GGTCATGGGG AGACCTTCTC CCCAGATGCC
    TGTACCACCT GCCGCTGTCT GGCAGGAACC GTGCAGTGCC AGGGGCCTTC GTGCTCTGAG
    CTTAACTGTC TGGAGAGCTT CATCCCTCCT GGAGAATGTT GCCCCATCTG CCGGCCAGGC
    TGTGAATACG AAGGGCAGCT TCACCAGGAA GGGTCTAGCT TCTTGTCCAG TTCCAACCCA
    TGCCTCCAGT GCTCTTGCCT GAGGAGCCTG GTTCGATGTG TGCCTGTGAA GTGCCAGCCA
    AGCCCCTGCC TCAATCCAGT CCCGAGGCTT GGACACTGCT GCCCAGTCTG CCAAGCCTCA
    GGCTGCATAG AAGGGAACTC TCATAGGGAC CATGGCCAAG AGTGGACCAC TCCTGGAGAC
    CCCTGCCGCA TCTGCCAGTG CCTGGAGGGC CGCATCCAGT GCCGCCAGCG GGAGTGTGCC
    AGCCTGTGTC CATACCCTGC CAGGCCCCTT CCGGGCACCT GTTGCCCTGT GTGTGACGGC
    TGTTTCCTAA ATGGGCGGGA GCACAGCAGT GGGGAGCCCG TGGGCTCCCA GGACCCCTGC
    TCCAGTTGCC GCTGTACTAA TGGGAGTGTC CAGTGTGAGC CTCTGCCCTG CCCGCCTGCA
    CCCTGCAGAT ACCCGGGCAG GATCCCTGGG CAATGCTGCC CTGTCTGTGA TGGCTGTAAA
    TACCAGGGAC ATGAATATCG GAGCCAGGAG ACCTTCACCC TCCAAGAGAA TGGCCGCTGC
    CTTCGGTGCG TCTGCCAGGC TGGTGAAGTA TCCTGTGAAG AACAGGACTG CCCAGTCACT
    CCCTGTGTCC ACTCTGCCTC CGGCCCCCAG CTCTGCTCCG CCTGTGTGCT CAATGGTGAG
    GAGTTTGCTG AGGGGATCCA GTGGGAGCCA GATGACCAAC CCTGTACTTC CTGTTCCTGC
    CAAGATGGAG TGCCTGTGTG CAGGGCTGTG CTTTGCTCTC CAGTACCCTG CCAACATCCT
    ACCCAACCAC CTGGTGCCTG CTGCCCCAGC TGTGATAGCT GCACCTACCA CAGCCTGGTG
    TATGCTAATG GGCAGAACTT CACAGATGTG GACAGCCCTT GTCAGACTTG CTACTGCGAG
    GATGGGACTG TGAGGTGTTC ATTGATCAAC TGTCCTTTCA CAACCTGCGC CAAGCCCCAG
    AATGGACCAG GCCAGTGCTG CCCTAAGTGC CCAGACTGCA TCTTGGAGGC ACAGGTGTTT
    ATAGATGGGG AGCGCTTTCC TCATCCAAGA GACCCCTGCC AGGAGTGCTG GTGTCAGGAA
    GGCCAAGCTC ACTGCCAGCT CCGTGCCTGC CCCAGCGCCC CCTGTGGTCA CCCTCTGCCA
    GGCACCTGCT GCAAGAATGA CTGCACAGGC TGTGCTTTTG GCGGGAAAGA GTACCCCAAT
    GGAGCAGACT TCCCACATCC CACTGATCCG TGTCGCCTGT GTCACTGTCT GAACGGCAAC
    GTACAGTGCC TGGCGCGACG CTGTCCGCCA CTGTCCTGTC CGCAGCCAGT CCTCACTCCG
    GGGAACTGCT GCCCGCAATG CCCAGATGCC TCTGCTGACT GCCCACAGTC AGGGAATATG
    GTCCCTGTCC GCCACCAGGA GCACTTTTTC CAACCGGGAG ACCCCTGCAG CCGCTGCCTC
    TGCCTGGATG GCTCAGTGTC CTGCCAGCGG CTGACCTGCC CTCCTGCGCC CTGCGCCCAC
    CCACGCCGGG ATGCCTGTTG CCCCTCTTGC GACGGCTGCC TGTATCAGGG GAAGGAGTTT
    GCCAGTGGGG AGCGTTTTCC ATCACCAAGC ATTGCGTGCC ACGTGTGCCT CTGCTGGGAG
    GGCAGCGTCA AGTGCGAGCC CAGGACTTGT GCCCCTGCAC AGTGCCCCTT TCCTACCAGG
    GAAGACTGCT GCCCTGCCTG CGATAGCTGT GAGTATCTTG GGGTCTCCTA TCTGAGCAGC
    CAGGAGTTCC CAGATCCCCG GGATGCCTGC AACCTATGCA CCTGCCTTGG AGGCTTCGTG
    ACTTGCACCC GCCGGCCCTG TGAGCCTCCA GCCTGCAGCC ATCCACTCAT CATACCCGAG
    CACTGCTGTC CAACCTGCCA GGGATGCCTG TACAACGGGA TCACCGCTGC CCTCGGAGAG
    ACCCTTCCTG ACCCCCTTGA CCCCACCTGC TCCCTCTGCA CCTGTGAGGA AGGTTCTATG
    CGCTGCCAAA AGAAGCCATG CCCTCCGGCT CCCTGCGCAC ACCCGTCTCC AGGCCCCTGC
    TTCTGCCCTG TTTGTCGTAG CTGCCTCTCT CAGGGCCGGG AGCACCGAGA TGGGGAAGAG
    TTTGAGGGAC CCCAGGGCAG CTGTGAGCGC TGCCGCTGTC TGGCCGGCCA GGTCAGCTGC
    ACGAGGCTTC AGTGCCCGTC CCTGCCCTGC TTGCATCAGG TCACAGAACC AGGGACCTGT
    TGTCCTCGAT GCACAGGCTG CCTCGCTCGC GGGGAGGAGC ATCCTGAAGG GAGTAGCTGG
    GTGCCAGCGG ACAGCCCCTG TTCCTCCTGC ATGTGTCACA AGGGCGTCAT CACTTGTGCC
    CAAGTCCAGT GTGTCAGCAC CTGCATCTGG CCCCAGGAGG GGCCCAGCGA CTGCTGTCCT
    CGATGCTCTG GCTGTGAGCA TGGGGGCAGG ACGTATGAGC CTGGGGAGAG CTTCCAGCCC
    GGGGCAGACC CGTGTGAAGT GTGCATCTGC GAGCAGAAGC GTGAGGGGAC TCCCAGCCTT
    CACTGTAGTC GGCGGCAGTG CCCCAGCCTG GTGGGCTGCC CACCAAGCCA GCTTCTTCCT
    CCTGGCCCCC AGCACTGCTG TCCCACATGT GCCCAGGCAC TGAGTAACTG CACAGAGGAC
    CTGGTGGGGT CTCAGCTGGT GCCACCAGAC CCCTGCTACA CCTGCCAGTG TCAGGATCTG
    ACGTGGCTCT GTACTCACCG GGCCTGTCCT GAGCTCAGCT GTCCCCTGTG GGAGCGTCAC
    ACAACCCCTG GCAGCTGCTG CCCCGTGTGT AAAGACCCTA CCCAGTCATG CACACATCAG
    GGTCGCTGGG TGGCCTCTGG AGAACAGTGG GCAGTGGATG CCTGCACCAG CTGCTCTTGT
    GTGGCTGGTA CTGTGCACTG CCAGACCCAG CGCTGCAAGA AGCTCGCATG TAGCCGGGAT
    GAGGTCCCTG CCCTGAGTCC CGGCAGCTGC TGTCTCCGCT GTTTGCCCCG GCCGGCTTCC
    TGCATGGCCT TCGGAGACCC CCATTACCGC ACCTTCGATG GCCGCCTGTT GCACTTCCAA
    GGCAGCTGCA GCTACGTGCT GGCCAAGGAC TGCCACGGCG AGGACTTCAG TGTGCACGTG
    ACTAATGATG ACCGGGGCCG GAGGGGTGTG GCCTGGACCC AAGAGGTAGC AGTGCTGTTG
    GGAACCGTGG CTGTGAGGCT GCTGCAGGGC AGGACAGTCA TGGTGGACCA GCACACAGTG
    ACCTTGCCCT TCCTCCGGGA GCCACTGCTG TACATTGAGC TTCGTGGTCA AACTGTGATC
    TTGCATGCCC AGCCTGGGCT TCAGGTGCTG TGGGACGGGC AATCCCAGGT GGAGGTGAGA
    GTTCCCAGCT CCTACCGGGG CCAGACTTGT GGTCTCTGTG GGAACTTCAA TGGCTTTGCC
    CAGGATGATC TGCAGGGTCC GGATGGGAGG CTCCTGCCCA CAGAGGCTTC GTTTGGGAAC
    AGCTGGAAGG TCCCCAAGGG GCTGGGGCCT GGCCGGCCGT GTTCTGCAGG CCGAGAGGTG
    GACCCGTGCC GGGCAGCAGG CTACCGTGCC AGGCGTGAGG CCAATGCCCG GTGCCGGATC
    CTGAAGACTT CACCGTTCAG TCATTGCCAT GCTGTGGTGC CCCCGGAACC CTTCTTTGCT
    GCCTGTGTGT ACGACTTGTG TGCTTGTGGT CCAGGCTCCT CCTCTGACAC CTGTCTCTGT
    GATGCCCTTG AAGCCTACGC TAGCCACTGT CGCCAGGCAG GGGTGACTCC TGTCTGGAGG
    GGTCCTACAC TCTGTGTGGT GGGCTGCCCT GTGGACCGTG GCTTTGTGTT TGATGAGTGT
    GGACCACCTT GTCCCCGTAC CTGTTTCAAC CGGCACATAC CCCTAGGGGA ACTGGCAGCC
    CACTGTGTGA GACCCTGTGT TCCAGGCTGC CAGTGTCCTG CAGGCCTGGT GGAACATGAA
    GGCCATTGCA TCTCACCTGA GGCCTGCCCA CCAGTCCTGC TTACTGGCGA CTAG

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

    RefSeq XP_021020410.1
    CDS5..4678
    Translation

    Target ORF information:

    RefSeq Version XM_021164751.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli kielin/chordin-like protein (Kcp), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021164751.1

    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
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGCGGGGG CTCGGGCGGC GCTGCTACTG CTGCTCCTGC ACCTCGGGAG CCTGGCGCTG 
    GCCGTGCGGG GTGGAGAGGT CTCCAGAGAG CAGCCTAGGC TTGCTGATGT AATCTCTCAG
    CAGCAGGCAC CCTCCCACTC TTTGGTCCCT GGTGAGACCC ATCAACAGCA GTGGTGCCCC
    CTGGAGGAGA GGCTGGAACG TCTGGAGGCA GAGGTGACTG ACCTCAGAAA GCAGAACAGG
    GAGCTGCAAG CCAGGGTGGT GCAGCTGGAG TCCTGTGAGT GCTGCCCCGT CTCCCCCCAG
    TGCTGGGGGC CAGGTCGCAC CTGTCCCGAA GGAGCTCGCT GGGAGCCTGA TGCCTGCACG
    GCCTGCGTGT GCCGTGATGG AACCGTGCAC TGTGGCCCCC AGCCCAACCT GCCCCACTGC
    CGTGGCTGCA GCCACAATGG GCAGTCTTAT GGTCATGGGG AGACCTTCTC CCCAGATGCC
    TGTACCACCT GCCGCTGTCT GGCAGGAACC GTGCAGTGCC AGGGGCCTTC GTGCTCTGAG
    CTTAACTGTC TGGAGAGCTT CATCCCTCCT GGAGAATGTT GCCCCATCTG CCGGCCAGGC
    TGTGAATACG AAGGGCAGCT TCACCAGGAA GGGTCTAGCT TCTTGTCCAG TTCCAACCCA
    TGCCTCCAGT GCTCTTGCCT GAGGAGCCTG GTTCGATGTG TGCCTGTGAA GTGCCAGCCA
    AGCCCCTGCC TCAATCCAGT CCCGAGGCTT GGACACTGCT GCCCAGTCTG CCAAGCCTCA
    GGCTGCATAG AAGGGAACTC TCATAGGGAC CATGGCCAAG AGTGGACCAC TCCTGGAGAC
    CCCTGCCGCA TCTGCCAGTG CCTGGAGGGC CGCATCCAGT GCCGCCAGCG GGAGTGTGCC
    AGCCTGTGTC CATACCCTGC CAGGCCCCTT CCGGGCACCT GTTGCCCTGT GTGTGACGGC
    TGTTTCCTAA ATGGGCGGGA GCACAGCAGT GGGGAGCCCG TGGGCTCCCA GGACCCCTGC
    TCCAGTTGCC GCTGTACTAA TGGGAGTGTC CAGTGTGAGC CTCTGCCCTG CCCGCCTGCA
    CCCTGCAGAT ACCCGGGCAG GATCCCTGGG CAATGCTGCC CTGTCTGTGA TGGCTGTAAA
    TACCAGGGAC ATGAATATCG GAGCCAGGAG ACCTTCACCC TCCAAGAGAA TGGCCGCTGC
    CTTCGGTGCG TCTGCCAGGC TGGTGAAGTA TCCTGTGAAG AACAGGACTG CCCAGTCACT
    CCCTGTGTCC ACTCTGCCTC CGGCCCCCAG CTCTGCTCCG CCTGTGTGCT CAATGGTGAG
    GAGTTTGCTG AGGGGATCCA GTGGGAGCCA GATGACCAAC CCTGTACTTC CTGTTCCTGC
    CAAGATGGAG TGCCTGTGTG CAGGGCTGTG CTTTGCTCTC CAGTACCCTG CCAACATCCT
    ACCCAACCAC CTGGTGCCTG CTGCCCCAGC TGTGATAGCT GCACCTACCA CAGCCTGGTG
    TATGCTAATG GGCAGAACTT CACAGATGTG GACAGCCCTT GTCAGACTTG CTACTGCGAG
    GATGGGACTG TGAGGTGTTC ATTGATCAAC TGTCCTTTCA CAACCTGCGC CAAGCCCCAG
    AATGGACCAG GCCAGTGCTG CCCTAAGTGC CCAGACTGCA TCTTGGAGGC ACAGGTGTTT
    ATAGATGGGG AGCGCTTTCC TCATCCAAGA GACCCCTGCC AGGAGTGCTG GTGTCAGGAA
    GGCCAAGCTC ACTGCCAGCT CCGTGCCTGC CCCAGCGCCC CCTGTGGTCA CCCTCTGCCA
    GGCACCTGCT GCAAGAATGA CTGCACAGGC TGTGCTTTTG GCGGGAAAGA GTACCCCAAT
    GGAGCAGACT TCCCACATCC CACTGATCCG TGTCGCCTGT GTCACTGTCT GAACGGCAAC
    GTACAGTGCC TGGCGCGACG CTGTCCGCCA CTGTCCTGTC CGCAGCCAGT CCTCACTCCG
    GGGAACTGCT GCCCGCAATG CCCAGATGCC TCTGCTGACT GCCCACAGTC AGGGAATATG
    GTCCCTGTCC GCCACCAGGA GCACTTTTTC CAACCGGGAG ACCCCTGCAG CCGCTGCCTC
    TGCCTGGATG GCTCAGTGTC CTGCCAGCGG CTGACCTGCC CTCCTGCGCC CTGCGCCCAC
    CCACGCCGGG ATGCCTGTTG CCCCTCTTGC GACGGCTGCC TGTATCAGGG GAAGGAGTTT
    GCCAGTGGGG AGCGTTTTCC ATCACCAAGC ATTGCGTGCC ACGTGTGCCT CTGCTGGGAG
    GGCAGCGTCA AGTGCGAGCC CAGGACTTGT GCCCCTGCAC AGTGCCCCTT TCCTACCAGG
    GAAGACTGCT GCCCTGCCTG CGATAGCTGT GAGTATCTTG GGGTCTCCTA TCTGAGCAGC
    CAGGAGTTCC CAGATCCCCG GGATGCCTGC AACCTATGCA CCTGCCTTGG AGGCTTCGTG
    ACTTGCACCC GCCGGCCCTG TGAGCCTCCA GCCTGCAGCC ATCCACTCAT CATACCCGAG
    CACTGCTGTC CAACCTGCCA GGGATGCCTG TACAACGGGA TCACCGCTGC CCTCGGAGAG
    ACCCTTCCTG ACCCCCTTGA CCCCACCTGC TCCCTCTGCA CCTGTGAGGA AGGTTCTATG
    CGCTGCCAAA AGAAGCCATG CCCTCCGGCT CCCTGCGCAC ACCCGTCTCC AGGCCCCTGC
    TTCTGCCCTG TTTGTCGTAG CTGCCTCTCT CAGGGCCGGG AGCACCGAGA TGGGGAAGAG
    TTTGAGGGAC CCCAGGGCAG CTGTGAGCGC TGCCGCTGTC TGGCCGGCCA GGTCAGCTGC
    ACGAGGCTTC AGTGCCCGTC CCTGCCCTGC TTGCATCAGG TCACAGAACC AGGGACCTGT
    TGTCCTCGAT GCACAGGCTG CCTCGCTCGC GGGGAGGAGC ATCCTGAAGG GAGTAGCTGG
    GTGCCAGCGG ACAGCCCCTG TTCCTCCTGC ATGTGTCACA AGGGCGTCAT CACTTGTGCC
    CAAGTCCAGT GTGTCAGCAC CTGCATCTGG CCCCAGGAGG GGCCCAGCGA CTGCTGTCCT
    CGATGCTCTG GCTGTGAGCA TGGGGGCAGG ACGTATGAGC CTGGGGAGAG CTTCCAGCCC
    GGGGCAGACC CGTGTGAAGT GTGCATCTGC GAGCAGAAGC GTGAGGGGAC TCCCAGCCTT
    CACTGTAGTC GGCGGCAGTG CCCCAGCCTG GTGGGCTGCC CACCAAGCCA GCTTCTTCCT
    CCTGGCCCCC AGCACTGCTG TCCCACATGT GCCCAGGCAC TGAGTAACTG CACAGAGGAC
    CTGGTGGGGT CTCAGCTGGT GCCACCAGAC CCCTGCTACA CCTGCCAGTG TCAGGATCTG
    ACGTGGCTCT GTACTCACCG GGCCTGTCCT GAGCTCAGCT GTCCCCTGTG GGAGCGTCAC
    ACAACCCCTG GCAGCTGCTG CCCCGTGTGT AAAGACCCTA CCCAGTCATG CACACATCAG
    GGTCGCTGGG TGGCCTCTGG AGAACAGTGG GCAGTGGATG CCTGCACCAG CTGCTCTTGT
    GTGGCTGGTA CTGTGCACTG CCAGACCCAG CGCTGCAAGA AGCTCGCATG TAGCCGGGAT
    GAGGTCCCTG CCCTGAGTCC CGGCAGCTGC TGTCTCCGCT GTTTGCCCCG GCCGGCTTCC
    TGCATGGCCT TCGGAGACCC CCATTACCGC ACCTTCGATG GCCGCCTGTT GCACTTCCAA
    GGCAGCTGCA GCTACGTGCT GGCCAAGGAC TGCCACGGCG AGGACTTCAG TGTGCACGTG
    ACTAATGATG ACCGGGGCCG GAGGGGTGTG GCCTGGACCC AAGAGGTAGC AGTGCTGTTG
    GGAACCGTGG CTGTGAGGCT GCTGCAGGGC AGGACAGTCA TGGTGGACCA GCACACAGTG
    ACCTTGCCCT TCCTCCGGGA GCCACTGCTG TACATTGAGC TTCGTGGTCA AACTGTGATC
    TTGCATGCCC AGCCTGGGCT TCAGGTGCTG TGGGACGGGC AATCCCAGGT GGAGGTGAGA
    GTTCCCAGCT CCTACCGGGG CCAGACTTGT GGTCTCTGTG GGAACTTCAA TGGCTTTGCC
    CAGGATGATC TGCAGGGTCC GGATGGGAGG CTCCTGCCCA CAGAGGCTTC GTTTGGGAAC
    AGCTGGAAGG TCCCCAAGGG GCTGGGGCCT GGCCGGCCGT GTTCTGCAGG CCGAGAGGTG
    GACCCGTGCC GGGCAGCAGG CTACCGTGCC AGGCGTGAGG CCAATGCCCG GTGCCGGATC
    CTGAAGACTT CACCGTTCAG TCATTGCCAT GCTGTGGTGC CCCCGGAACC CTTCTTTGCT
    GCCTGTGTGT ACGACTTGTG TGCTTGTGGT CCAGGCTCCT CCTCTGACAC CTGTCTCTGT
    GATGCCCTTG AAGCCTACGC TAGCCACTGT CGCCAGGCAG GGGTGACTCC TGTCTGGAGG
    GGTCCTACAC TCTGTGTGGT GGGCTGCCCT GTGGACCGTG GCTTTGTGTT TGATGAGTGT
    GGACCACCTT GTCCCCGTAC CTGTTTCAAC CGGCACATAC CCCTAGGGGA ACTGGCAGCC
    CACTGTGTGA GACCCTGTGT TCCAGGCTGC CAGTGTCCTG CAGGCCTGGT GGAACATGAA
    GGCCATTGCA TCTCACCTGA GGCCTGCCCA CCAGTCCTGC TTACTGGCGA CTAG

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

    CloneID OMv74067
    Clone ID Related Accession (Same CDS sequence) XM_029478167.1
    Accession Version XM_029478167.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4641bp)
    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 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product kielin/chordin-like protein
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034575.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 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##

    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
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGAGGAGTT TCAGCATCTA CCAAGACCAC TTGAAAGGTG GAGAGGTCTC CAGAGAGCAG 
    CCTAGGCTTG CTGATGTAAT CTCTCAGCAG CAGGCACCCT CCCACTCTTT GGTCCCTGGT
    GAGACCCATC AACAGCAGTG GTGCCCCCTG GAGGAGAGGC TGGAACGTCT GGAGGCAGAG
    GTGACTGACC TCAGAAAGCA GAACAGGGAG CTGCAAGCCA GGGTGGTGCA GCTGGAGTCC
    TGTGAGTGCT GCCCCGTCTC CCCCCAGTGC TGGGGGCCAG GTCGCACCTG TCCCGAAGGA
    GCTCGCTGGG AGCCTGATGC CTGCACGGCC TGCGTGTGCC GTGATGGAAC CGTGCACTGT
    GGCCCCCAGC CCAACCTGCC CCACTGCCGT GGCTGCAGCC ACAATGGGCA GTCTTATGGT
    CATGGGGAGA CCTTCTCCCC AGATGCCTGT ACCACCTGCC GCTGTCTGGC AGGAACCGTG
    CAGTGCCAGG GGCCTTCGTG CTCTGAGCTT AACTGTCTGG AGAGCTTCAT CCCTCCTGGA
    GAATGTTGCC CCATCTGCCG GCCAGGCTGT GAATACGAAG GGCAGCTTCA CCAGGAAGGG
    TCTAGCTTCT TGTCCAGTTC CAACCCATGC CTCCAGTGCT CTTGCCTGAG GAGCCTGGTT
    CGATGTGTGC CTGTGAAGTG CCAGCCAAGC CCCTGCCTCA ATCCAGTCCC GAGGCTTGGA
    CACTGCTGCC CAGTCTGCCA AGCCTCAGGC TGCATAGAAG GGAACTCTCA TAGGGACCAT
    GGCCAAGAGT GGACCACTCC TGGAGACCCC TGCCGCATCT GCCAGTGCCT GGAGGGCCGC
    ATCCAGTGCC GCCAGCGGGA GTGTGCCAGC CTGTGTCCAT ACCCTGCCAG GCCCCTTCCG
    GGCACCTGTT GCCCTGTGTG TGACGGCTGT TTCCTAAATG GGCGGGAGCA CAGCAGTGGG
    GAGCCCGTGG GCTCCCAGGA CCCCTGCTCC AGTTGCCGCT GTACTAATGG GAGTGTCCAG
    TGTGAGCCTC TGCCCTGCCC GCCTGCACCC TGCAGATACC CGGGCAGGAT CCCTGGGCAA
    TGCTGCCCTG TCTGTGATGG CTGTAAATAC CAGGGACATG AATATCGGAG CCAGGAGACC
    TTCACCCTCC AAGAGAATGG CCGCTGCCTT CGGTGCGTCT GCCAGGCTGG TGAAGTATCC
    TGTGAAGAAC AGGACTGCCC AGTCACTCCC TGTGTCCACT CTGCCTCCGG CCCCCAGCTC
    TGCTCCGCCT GTGTGCTCAA TGGTGAGGAG TTTGCTGAGG GGATCCAGTG GGAGCCAGAT
    GACCAACCCT GTACTTCCTG TTCCTGCCAA GATGGAGTGC CTGTGTGCAG GGCTGTGCTT
    TGCTCTCCAG TACCCTGCCA ACATCCTACC CAACCACCTG GTGCCTGCTG CCCCAGCTGT
    GATAGCTGCA CCTACCACAG CCTGGTGTAT GCTAATGGGC AGAACTTCAC AGATGTGGAC
    AGCCCTTGTC AGACTTGCTA CTGCGAGGAT GGGACTGTGA GGTGTTCATT GATCAACTGT
    CCTTTCACAA CCTGCGCCAA GCCCCAGAAT GGACCAGGCC AGTGCTGCCC TAAGTGCCCA
    GACTGCATCT TGGAGGCACA GGTGTTTATA GATGGGGAGC GCTTTCCTCA TCCAAGAGAC
    CCCTGCCAGG AGTGCTGGTG TCAGGAAGGC CAAGCTCACT GCCAGCTCCG TGCCTGCCCC
    AGCGCCCCCT GTGGTCACCC TCTGCCAGGC ACCTGCTGCA AGAATGACTG CACAGGCTGT
    GCTTTTGGCG GGAAAGAGTA CCCCAATGGA GCAGACTTCC CACATCCCAC TGATCCGTGT
    CGCCTGTGTC ACTGTCTGAA CGGCAACGTA CAGTGCCTGG CGCGACGCTG TCCGCCACTG
    TCCTGTCCGC AGCCAGTCCT CACTCCGGGG AACTGCTGCC CGCAATGCCC AGATGCCTCT
    GCTGACTGCC CACAGTCAGG GAATATGGTC CCTGTCCGCC ACCAGGAGCA CTTTTTCCAA
    CCGGGAGACC CCTGCAGCCG CTGCCTCTGC CTGGATGGCT CAGTGTCCTG CCAGCGGCTG
    ACCTGCCCTC CTGCGCCCTG CGCCCACCCA CGCCGGGATG CCTGTTGCCC CTCTTGCGAC
    GGCTGCCTGT ATCAGGGGAA GGAGTTTGCC AGTGGGGAGC GTTTTCCATC ACCAAGCATT
    GCGTGCCACG TGTGCCTCTG CTGGGAGGGC AGCGTCAAGT GCGAGCCCAG GACTTGTGCC
    CCTGCACAGT GCCCCTTTCC TACCAGGGAA GACTGCTGCC CTGCCTGCGA TAGCTGTGAG
    TATCTTGGGG TCTCCTATCT GAGCAGCCAG GAGTTCCCAG ATCCCCGGGA TGCCTGCAAC
    CTATGCACCT GCCTTGGAGG CTTCGTGACT TGCACCCGCC GGCCCTGTGA GCCTCCAGCC
    TGCAGCCATC CACTCATCAT ACCCGAGCAC TGCTGTCCAA CCTGCCAGGG ATGCCTGTAC
    AACGGGATCA CCGCTGCCCT CGGAGAGACC CTTCCTGACC CCCTTGACCC CACCTGCTCC
    CTCTGCACCT GTGAGGAAGG TTCTATGCGC TGCCAAAAGA AGCCATGCCC TCCGGCTCCC
    TGCGCACACC CGTCTCCAGG CCCCTGCTTC TGCCCTGTTT GTCGTAGCTG CCTCTCTCAG
    GGCCGGGAGC ACCGAGATGG GGAAGAGTTT GAGGGACCCC AGGGCAGCTG TGAGCGCTGC
    CGCTGTCTGG CCGGCCAGGT CAGCTGCACG AGGCTTCAGT GCCCGTCCCT GCCCTGCTTG
    CATCAGGTCA CAGAACCAGG GACCTGTTGT CCTCGATGCA CAGGCTGCCT CGCTCGCGGG
    GAGGAGCATC CTGAAGGGAG TAGCTGGGTG CCAGCGGACA GCCCCTGTTC CTCCTGCATG
    TGTCACAAGG GCGTCATCAC TTGTGCCCAA GTCCAGTGTG TCAGCACCTG CATCTGGCCC
    CAGGAGGGGC CCAGCGACTG CTGTCCTCGA TGCTCTGGCT GTGAGCATGG GGGCAGGACG
    TATGAGCCTG GGGAGAGCTT CCAGCCCGGG GCAGACCCGT GTGAAGTGTG CATCTGCGAG
    CAGAAGCGTG AGGGGACTCC CAGCCTTCAC TGTAGTCGGC GGCAGTGCCC CAGCCTGGTG
    GGCTGCCCAC CAAGCCAGCT TCTTCCTCCT GGCCCCCAGC ACTGCTGTCC CACATGTGCC
    CAGGCACTGA GTAACTGCAC AGAGGACCTG GTGGGGTCTC AGCTGGTGCC ACCAGACCCC
    TGCTACACCT GCCAGTGTCA GGATCTGACG TGGCTCTGTA CTCACCGGGC CTGTCCTGAG
    CTCAGCTGTC CCCTGTGGGA GCGTCACACA ACCCCTGGCA GCTGCTGCCC CGTGTGTAAA
    GACCCTACCC AGTCATGCAC ACATCAGGGT CGCTGGGTGG CCTCTGGAGA ACAGTGGGCA
    GTGGATGCCT GCACCAGCTG CTCTTGTGTG GCTGGTACTG TGCACTGCCA GACCCAGCGC
    TGCAAGAAGC TCGCATGTAG CCGGGATGAG GTCCCTGCCC TGAGTCCCGG CAGCTGCTGT
    CTCCGCTGTT TGCCCCGGCC GGCTTCCTGC ATGGCCTTCG GAGACCCCCA TTACCGCACC
    TTCGATGGCC GCCTGTTGCA CTTCCAAGGC AGCTGCAGCT ACGTGCTGGC CAAGGACTGC
    CACGGCGAGG ACTTCAGTGT GCACGTGACT AATGATGACC GGGGCCGGAG GGGTGTGGCC
    TGGACCCAAG AGGTAGCAGT GCTGTTGGGA ACCGTGGCTG TGAGGCTGCT GCAGGGCAGG
    ACAGTCATGG TGGACCAGCA CACAGTGACC TTGCCCTTCC TCCGGGAGCC ACTGCTGTAC
    ATTGAGCTTC GTGGTCAAAC TGTGATCTTG CATGCCCAGC CTGGGCTTCA GGTGCTGTGG
    GACGGGCAAT CCCAGGTGGA GGTGAGAGTT CCCAGCTCCT ACCGGGGCCA GACTTGTGGT
    CTCTGTGGGA ACTTCAATGG CTTTGCCCAG GATGATCTGC AGGGTCCGGA TGGGAGGCTC
    CTGCCCACAG AGGCTTCGTT TGGGAACAGC TGGAAGGTCC CCAAGGGGCT GGGGCCTGGC
    CGGCCGTGTT CTGCAGGCCG AGAGGTGGAC CCGTGCCGGG CAGCAGGCTA CCGTGCCAGG
    CGTGAGGCCA ATGCCCGGTG CCGGATCCTG AAGACTTCAC CGTTCAGTCA TTGCCATGCT
    GTGGTGCCCC CGGAACCCTT CTTTGCTGCC TGTGTGTACG ACTTGTGTGC TTGTGGTCCA
    GGCTCCTCCT CTGACACCTG TCTCTGTGAT GCCCTTGAAG CCTACGCTAG CCACTGTCGC
    CAGGCAGGGG TGACTCCTGT CTGGAGGGGT CCTACACTCT GTGTGGTGGG CTGCCCTGTG
    GACCGTGGCT TTGTGTTTGA TGAGTGTGGA CCACCTTGTC CCCGTACCTG TTTCAACCGG
    CACATACCCC TAGGGGAACT GGCAGCCCAC TGTGTGAGAC CCTGTGTTCC AGGCTGCCAG
    TGTCCTGCAG GCCTGGTGGA ACATGAAGGC CATTGCATCT CACCTGAGGC CTGCCCACCA
    GTCCTGCTTA CTGGCGACTA G

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

    RefSeq XP_029334027.1
    CDS470..5110
    Translation

    Target ORF information:

    RefSeq Version XM_029478167.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli kielin cysteine rich BMP regulator (Kcp), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029478167.1

    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
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGAGGAGTT TCAGCATCTA CCAAGACCAC TTGAAAGGTG GAGAGGTCTC CAGAGAGCAG 
    CCTAGGCTTG CTGATGTAAT CTCTCAGCAG CAGGCACCCT CCCACTCTTT GGTCCCTGGT
    GAGACCCATC AACAGCAGTG GTGCCCCCTG GAGGAGAGGC TGGAACGTCT GGAGGCAGAG
    GTGACTGACC TCAGAAAGCA GAACAGGGAG CTGCAAGCCA GGGTGGTGCA GCTGGAGTCC
    TGTGAGTGCT GCCCCGTCTC CCCCCAGTGC TGGGGGCCAG GTCGCACCTG TCCCGAAGGA
    GCTCGCTGGG AGCCTGATGC CTGCACGGCC TGCGTGTGCC GTGATGGAAC CGTGCACTGT
    GGCCCCCAGC CCAACCTGCC CCACTGCCGT GGCTGCAGCC ACAATGGGCA GTCTTATGGT
    CATGGGGAGA CCTTCTCCCC AGATGCCTGT ACCACCTGCC GCTGTCTGGC AGGAACCGTG
    CAGTGCCAGG GGCCTTCGTG CTCTGAGCTT AACTGTCTGG AGAGCTTCAT CCCTCCTGGA
    GAATGTTGCC CCATCTGCCG GCCAGGCTGT GAATACGAAG GGCAGCTTCA CCAGGAAGGG
    TCTAGCTTCT TGTCCAGTTC CAACCCATGC CTCCAGTGCT CTTGCCTGAG GAGCCTGGTT
    CGATGTGTGC CTGTGAAGTG CCAGCCAAGC CCCTGCCTCA ATCCAGTCCC GAGGCTTGGA
    CACTGCTGCC CAGTCTGCCA AGCCTCAGGC TGCATAGAAG GGAACTCTCA TAGGGACCAT
    GGCCAAGAGT GGACCACTCC TGGAGACCCC TGCCGCATCT GCCAGTGCCT GGAGGGCCGC
    ATCCAGTGCC GCCAGCGGGA GTGTGCCAGC CTGTGTCCAT ACCCTGCCAG GCCCCTTCCG
    GGCACCTGTT GCCCTGTGTG TGACGGCTGT TTCCTAAATG GGCGGGAGCA CAGCAGTGGG
    GAGCCCGTGG GCTCCCAGGA CCCCTGCTCC AGTTGCCGCT GTACTAATGG GAGTGTCCAG
    TGTGAGCCTC TGCCCTGCCC GCCTGCACCC TGCAGATACC CGGGCAGGAT CCCTGGGCAA
    TGCTGCCCTG TCTGTGATGG CTGTAAATAC CAGGGACATG AATATCGGAG CCAGGAGACC
    TTCACCCTCC AAGAGAATGG CCGCTGCCTT CGGTGCGTCT GCCAGGCTGG TGAAGTATCC
    TGTGAAGAAC AGGACTGCCC AGTCACTCCC TGTGTCCACT CTGCCTCCGG CCCCCAGCTC
    TGCTCCGCCT GTGTGCTCAA TGGTGAGGAG TTTGCTGAGG GGATCCAGTG GGAGCCAGAT
    GACCAACCCT GTACTTCCTG TTCCTGCCAA GATGGAGTGC CTGTGTGCAG GGCTGTGCTT
    TGCTCTCCAG TACCCTGCCA ACATCCTACC CAACCACCTG GTGCCTGCTG CCCCAGCTGT
    GATAGCTGCA CCTACCACAG CCTGGTGTAT GCTAATGGGC AGAACTTCAC AGATGTGGAC
    AGCCCTTGTC AGACTTGCTA CTGCGAGGAT GGGACTGTGA GGTGTTCATT GATCAACTGT
    CCTTTCACAA CCTGCGCCAA GCCCCAGAAT GGACCAGGCC AGTGCTGCCC TAAGTGCCCA
    GACTGCATCT TGGAGGCACA GGTGTTTATA GATGGGGAGC GCTTTCCTCA TCCAAGAGAC
    CCCTGCCAGG AGTGCTGGTG TCAGGAAGGC CAAGCTCACT GCCAGCTCCG TGCCTGCCCC
    AGCGCCCCCT GTGGTCACCC TCTGCCAGGC ACCTGCTGCA AGAATGACTG CACAGGCTGT
    GCTTTTGGCG GGAAAGAGTA CCCCAATGGA GCAGACTTCC CACATCCCAC TGATCCGTGT
    CGCCTGTGTC ACTGTCTGAA CGGCAACGTA CAGTGCCTGG CGCGACGCTG TCCGCCACTG
    TCCTGTCCGC AGCCAGTCCT CACTCCGGGG AACTGCTGCC CGCAATGCCC AGATGCCTCT
    GCTGACTGCC CACAGTCAGG GAATATGGTC CCTGTCCGCC ACCAGGAGCA CTTTTTCCAA
    CCGGGAGACC CCTGCAGCCG CTGCCTCTGC CTGGATGGCT CAGTGTCCTG CCAGCGGCTG
    ACCTGCCCTC CTGCGCCCTG CGCCCACCCA CGCCGGGATG CCTGTTGCCC CTCTTGCGAC
    GGCTGCCTGT ATCAGGGGAA GGAGTTTGCC AGTGGGGAGC GTTTTCCATC ACCAAGCATT
    GCGTGCCACG TGTGCCTCTG CTGGGAGGGC AGCGTCAAGT GCGAGCCCAG GACTTGTGCC
    CCTGCACAGT GCCCCTTTCC TACCAGGGAA GACTGCTGCC CTGCCTGCGA TAGCTGTGAG
    TATCTTGGGG TCTCCTATCT GAGCAGCCAG GAGTTCCCAG ATCCCCGGGA TGCCTGCAAC
    CTATGCACCT GCCTTGGAGG CTTCGTGACT TGCACCCGCC GGCCCTGTGA GCCTCCAGCC
    TGCAGCCATC CACTCATCAT ACCCGAGCAC TGCTGTCCAA CCTGCCAGGG ATGCCTGTAC
    AACGGGATCA CCGCTGCCCT CGGAGAGACC CTTCCTGACC CCCTTGACCC CACCTGCTCC
    CTCTGCACCT GTGAGGAAGG TTCTATGCGC TGCCAAAAGA AGCCATGCCC TCCGGCTCCC
    TGCGCACACC CGTCTCCAGG CCCCTGCTTC TGCCCTGTTT GTCGTAGCTG CCTCTCTCAG
    GGCCGGGAGC ACCGAGATGG GGAAGAGTTT GAGGGACCCC AGGGCAGCTG TGAGCGCTGC
    CGCTGTCTGG CCGGCCAGGT CAGCTGCACG AGGCTTCAGT GCCCGTCCCT GCCCTGCTTG
    CATCAGGTCA CAGAACCAGG GACCTGTTGT CCTCGATGCA CAGGCTGCCT CGCTCGCGGG
    GAGGAGCATC CTGAAGGGAG TAGCTGGGTG CCAGCGGACA GCCCCTGTTC CTCCTGCATG
    TGTCACAAGG GCGTCATCAC TTGTGCCCAA GTCCAGTGTG TCAGCACCTG CATCTGGCCC
    CAGGAGGGGC CCAGCGACTG CTGTCCTCGA TGCTCTGGCT GTGAGCATGG GGGCAGGACG
    TATGAGCCTG GGGAGAGCTT CCAGCCCGGG GCAGACCCGT GTGAAGTGTG CATCTGCGAG
    CAGAAGCGTG AGGGGACTCC CAGCCTTCAC TGTAGTCGGC GGCAGTGCCC CAGCCTGGTG
    GGCTGCCCAC CAAGCCAGCT TCTTCCTCCT GGCCCCCAGC ACTGCTGTCC CACATGTGCC
    CAGGCACTGA GTAACTGCAC AGAGGACCTG GTGGGGTCTC AGCTGGTGCC ACCAGACCCC
    TGCTACACCT GCCAGTGTCA GGATCTGACG TGGCTCTGTA CTCACCGGGC CTGTCCTGAG
    CTCAGCTGTC CCCTGTGGGA GCGTCACACA ACCCCTGGCA GCTGCTGCCC CGTGTGTAAA
    GACCCTACCC AGTCATGCAC ACATCAGGGT CGCTGGGTGG CCTCTGGAGA ACAGTGGGCA
    GTGGATGCCT GCACCAGCTG CTCTTGTGTG GCTGGTACTG TGCACTGCCA GACCCAGCGC
    TGCAAGAAGC TCGCATGTAG CCGGGATGAG GTCCCTGCCC TGAGTCCCGG CAGCTGCTGT
    CTCCGCTGTT TGCCCCGGCC GGCTTCCTGC ATGGCCTTCG GAGACCCCCA TTACCGCACC
    TTCGATGGCC GCCTGTTGCA CTTCCAAGGC AGCTGCAGCT ACGTGCTGGC CAAGGACTGC
    CACGGCGAGG ACTTCAGTGT GCACGTGACT AATGATGACC GGGGCCGGAG GGGTGTGGCC
    TGGACCCAAG AGGTAGCAGT GCTGTTGGGA ACCGTGGCTG TGAGGCTGCT GCAGGGCAGG
    ACAGTCATGG TGGACCAGCA CACAGTGACC TTGCCCTTCC TCCGGGAGCC ACTGCTGTAC
    ATTGAGCTTC GTGGTCAAAC TGTGATCTTG CATGCCCAGC CTGGGCTTCA GGTGCTGTGG
    GACGGGCAAT CCCAGGTGGA GGTGAGAGTT CCCAGCTCCT ACCGGGGCCA GACTTGTGGT
    CTCTGTGGGA ACTTCAATGG CTTTGCCCAG GATGATCTGC AGGGTCCGGA TGGGAGGCTC
    CTGCCCACAG AGGCTTCGTT TGGGAACAGC TGGAAGGTCC CCAAGGGGCT GGGGCCTGGC
    CGGCCGTGTT CTGCAGGCCG AGAGGTGGAC CCGTGCCGGG CAGCAGGCTA CCGTGCCAGG
    CGTGAGGCCA ATGCCCGGTG CCGGATCCTG AAGACTTCAC CGTTCAGTCA TTGCCATGCT
    GTGGTGCCCC CGGAACCCTT CTTTGCTGCC TGTGTGTACG ACTTGTGTGC TTGTGGTCCA
    GGCTCCTCCT CTGACACCTG TCTCTGTGAT GCCCTTGAAG CCTACGCTAG CCACTGTCGC
    CAGGCAGGGG TGACTCCTGT CTGGAGGGGT CCTACACTCT GTGTGGTGGG CTGCCCTGTG
    GACCGTGGCT TTGTGTTTGA TGAGTGTGGA CCACCTTGTC CCCGTACCTG TTTCAACCGG
    CACATACCCC TAGGGGAACT GGCAGCCCAC TGTGTGAGAC CCTGTGTTCC AGGCTGCCAG
    TGTCCTGCAG GCCTGGTGGA ACATGAAGGC CATTGCATCT CACCTGAGGC CTGCCCACCA
    GTCCTGCTTA CTGGCGACTA G

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