l1cam.S cDNA ORF clone, Xenopus laevis(African clawed frog)

The following l1cam.S gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the l1cam.S 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
OAf05440 NM_001136163.2
Latest version!
Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAf43280 XM_018231824.1
Latest version!
Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAf43280 XM_018231825.1
Latest version!
Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAf43281 XM_018231827.1
Latest version!
Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAf43282 XM_018231828.1
Latest version!
Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAf43283 XM_018231829.1
Latest version!
Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $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 OAf05440
    Clone ID Related Accession (Same CDS sequence) NM_001136163.2
    Accession Version NM_001136163.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3741bp)
    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 2016-10-28
    Organism Xenopus laevis(African clawed frog)
    Product L1 cell adhesion molecule S homeolog precursor
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from BC073282.1. On Oct 8, 2011 this sequence version replaced NM_001136163.1. ##Evidence-Data-START## Transcript exon combination :: BC073282.1 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMD00012418, SAMD00012419 [ECO:0000348] ##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
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TTAATGTATC CACCAACTAT AACTGAACAG
    TCACCGGCAA AGTACGTGGT ATATCCCAAT GATGACATTG TGCTCAAGTG TGAAGCCAAG
    AGAAATGCAA AAGTAAAATA CACCTGGAAA AAGGATGGGG AAACGTTTGC GCCAGAGGAT
    GGCCCAAGTG TCAATCGCAA GAAAGATTCA GGATCTATAA TCATCTCTAA TGGGAATGGG
    AACGCAATGA AGGATTTTCA GGGCAAATAT CGTTGCTATG CCACCAATGA ACTGGGAACA
    GCCATCTCAC ACGAGATCCA TGTAATCACT GAGAGCACCC CAAAATGGCA GAAGGAAATG
    ATCCGTCCTA TTGAGGTTGA AGAGGGTTCC TCATTGATAT TACCGTGTAA TCCACCTAAA
    AGTGCCGTAC CTCCACGAGT CATCTGGATG AACAGCAGCT TATTGCACAT CACACAGGAT
    AAGCGTGTGT CAATGGGCGT AAATGGAAAC CTATATTTCT CCAATGTACA AAAGCAAGAC
    GAACATCCTG ACTACATCTG TCATGCCCAG TTTGTTGGTG CACGTACCAT TGTGCAGAAG
    GAGGCGATAT CTATCAAAGT CAGACCCACA AATTCGGTGA AATTTCGAAG GCCGGAAATG
    ATGTTACCTG AAGGCTCCAT GAGCACTGTT CTGGCATTAA GAGACCAACC CTTGCAACTG
    GAGTGCATAG CCGAAGGCCT CCCTACCCCA GAGATTGAGT GGATTCCCCT CACTGGCTCC
    ACTACCAATG GTCACATTCA ATATGATGAC TTTAAGAAAA CCCTTCACAT TGACAAGGTT
    CAAGATGACG ATGATGGGGA CTATCAGTGC ACTGCCAAGA ACACACAAGG CACAGCCACA
    CATACCTTCA CAGTGGTTGT TGAGTCTGCC CCTTACTGGA TTAATAAACC AATGGATGGA
    ATCTATGCAC CGGGCGAGGA TATCATACTT CACTGTGAAG TTGGAGGGAA ACCTAAACCT
    AAGGTCACAT GGAAGATAAA CGGAGCATCT TTGAAAGACT CCGATCTATA TCACAACTGG
    AAACTGAGCG AGGGAAGTTT GGTCTTAAAC AATATGCAAC TCAATGACAC GTCTGTTGTT
    CAATGCGAGG CCCGCAACAA ACATGGAAAC CTCCTTGCCA ATGCTTTTGT CTATGTTGTT
    GAGCTGCCCC CACAGATCCT CACCAAAAAT GATGAGCAGT ACAGTGTAGT TGAAAAGACA
    AATGTTTCAA TGGACTGTAA GACTTTTGGA GCTCCAATGC CAAAGATCCA ATGGGACAGA
    GATCAGGAAG ACAACCTGCT TGCTCTTGAC CAGTTTTCCT TCCACACTAA TGGGACACTG
    ACAATAACAG GAGTGGTCAA GGAACATGAA GGAATATATT GGTGCACTGC CAGCAACAAC
    CAGGGAAACG TTAACATCTC TGCCTACTTA GATGTCAGAA ATGCCACTAA GATCATTAGT
    CCCCCAATGG AGCAGAGAGC GAGAAAAGGT GGGAAAGCGA TCTTCCAGTG CACGGTGGAA
    TTTGATCCCA AAATGAGTAG TAAAATTATA GACTGGAAGA AAAACGGCTT GGAAATAAAT
    GAAGATCCCG ACAACGATAA ATACTTTATT GAGGATTACA CCCTAAGTAT TTCCAATGTA
    CAAGAGGGCG ATCAGGGGAT GTACACCTGC TTGGCACGCA GTGAACTGGA TTCTGTGGAA
    CAGACTGCCG AACTGGTGGT GATTGATCTT CCTGAATCTC CTTCTGATTT GGAGCTTTCT
    AACGCACAAG AAACAAGTAT AACACTAACC TGGACTCCAG GCAATGAAAA CAACAGTCCC
    ATTGAGGAGT TCATTATCGA GTTTGAGGAA GACAGCTTTG AACCAGGAGT ATGGCATGAA
    CTCACAAGGG TGGACGGAGA TATGGTTACT ACTGATCTGA ATCTTTCTCC CTATGTCAAC
    TATCAGTTCC GAGTGATTGC CGTGAATGAG GTTGGACCTA GCAATGGAAG CAACCCGTCA
    GATCGTTATC GGACACCTCC ATCTGCTCCA ACAAAGAATC CAGAAGAGGT GAAAGGGGAG
    GGCACAGTAC CAGAAAACAT GAAAATCTCC TGGAAGCCAT TGAAAGGCAT CGACTGGAAT
    GGCCCTGACT TCAAATATCT TGTAAAATGG AGGCGACTTG GTAAAGATGA TTGGAGGGAG
    GAGGTAGCAG AGAGCCCCCC AGTCATTGTG ACAGAGACAA GCACATTTGA GCCTTATGAG
    ATCATAGTCC AGTCAGTCAA CGATCTGGGC AGGGCTTCTG AACCCAAACC TATAATTGGC
    CACTCTGGGG AGGACTTTCC TGACATTAGC CCTGAGAATG TTGGCTTAGA GGCTATGAAC
    GAGAGTGCAA TCAAGGTAGC ATGGTTGCCT GTGCAGAAAC AAGGGCTGAA CGGTCATTTA
    AAAGGATTTA TGGTATACTA CATTAGCCAT AGCAGCCGGC ACAGGCAGAC CAAGGAGTTA
    CGGGTCCATG GTAACACAAC ACATGCATTA ATCACTGGGC TAAAACCTTT CAGTAACTAC
    TCAGTGGAAG TCGCCATCAT GAATGGAAAG GGACCTGGGG ACCGTAGTGA GTCACGCATG
    ATACGCACTG ATGAGGGAGT TCCAAGTCCA CCTTCATTTT TACACCTGGA GCGCCAATCT
    GACACATCAC TGACTCTCAT ATGGGGCCCA CCGGAAACTC CCAATGGAAT TCTAACAGGA
    TACGAGATAT ATCATCAGAT AGTGAACAAA ACTCACATGG GAGCAAAGTA CTTCTCTGAA
    ACTATCAATG ATCCCACGCA GCAAAATTGG ACACTTTCAA ATATCAGCTC CAAAGACACG
    TACCGGTTCT ATTTATATGC CACAACATCG GTGGGACAGA GTGAAGCTGT TATGGTGGAA
    GGCAGCACTA TGCAGGAGAT AGAGGTTCCT CCCGTGCTGA ATGTCAGTAT CGAGACTGGG
    GACAGTGTGG TCACTCTAAA CTGGATGCAG CTGGAGGGAT CGAGTAACGC AGAGATCAAA
    GTCGAGATCA GGAACAAATC TAGTGAACAC TTGTGGCACC ACTATGGTTC AGTGAACACC
    ACAGACTCTA CCTTCCAGCT GAGCGGCCTC CTCCCTGGCA CTCCTTATTT CATACGGCTT
    ATGGCCCTTA ATCACACTCA GCATGTTGAA ATCTGGAGTA AAATGGTACA GACCACCGGA
    ATAGCTATTA CCAAGGAACA GAGAGGATTT GCTACTGAGG GCTGGTTTAT TGGGCTGATA
    AGTGCCATTG TACTCCTACT GCTGATCCTA CTCATTCTTT GCTTTATTAA GCGCAGCAAA
    GGAGGAAAGT ACTCTGTGAA AGATAAAGAA GATACTCAAG TGGACTCTGA AGCCCGGCCA
    ATGAAGGATG AAACCTTTGG GGAATACAGT GAAAATGATG AGAAGCCTTT CACTAGCAGC
    CAACCCTCCC TCAATGGGGA CATCAAGCAA CTGGGTAGCG ATGACAGCCT GGCCGACTAT
    GGTGGTAGTG TGGATGTCCA GTTTAATGAA GATGGCTCGT TCATTGGCCA GTACAGTGGC
    AAAAAGGAGA AGGAGCCAGC AGGAGGCAAT GAAAGCTCTG GAGCGACCTC ACCGGTCAAC
    CCCAACATTG CCAATGAATA G

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

    RefSeq NP_001129635.2
    CDS130..3870
    Translation

    Target ORF information:

    RefSeq Version NM_001136163.2
    Organism Xenopus laevis(African clawed frog)
    Definition Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001136163.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TTAATGTATC CACCAACTAT AACTGAACAG
    TCACCGGCAA AGTACGTGGT ATATCCCAAT GATGACATTG TGCTCAAGTG TGAAGCCAAG
    AGAAATGCAA AAGTAAAATA CACCTGGAAA AAGGATGGGG AAACGTTTGC GCCAGAGGAT
    GGCCCAAGTG TCAATCGCAA GAAAGATTCA GGATCTATAA TCATCTCTAA TGGGAATGGG
    AACGCAATGA AGGATTTTCA GGGCAAATAT CGTTGCTATG CCACCAATGA ACTGGGAACA
    GCCATCTCAC ACGAGATCCA TGTAATCACT GAGAGCACCC CAAAATGGCA GAAGGAAATG
    ATCCGTCCTA TTGAGGTTGA AGAGGGTTCC TCATTGATAT TACCGTGTAA TCCACCTAAA
    AGTGCCGTAC CTCCACGAGT CATCTGGATG AACAGCAGCT TATTGCACAT CACACAGGAT
    AAGCGTGTGT CAATGGGCGT AAATGGAAAC CTATATTTCT CCAATGTACA AAAGCAAGAC
    GAACATCCTG ACTACATCTG TCATGCCCAG TTTGTTGGTG CACGTACCAT TGTGCAGAAG
    GAGGCGATAT CTATCAAAGT CAGACCCACA AATTCGGTGA AATTTCGAAG GCCGGAAATG
    ATGTTACCTG AAGGCTCCAT GAGCACTGTT CTGGCATTAA GAGACCAACC CTTGCAACTG
    GAGTGCATAG CCGAAGGCCT CCCTACCCCA GAGATTGAGT GGATTCCCCT CACTGGCTCC
    ACTACCAATG GTCACATTCA ATATGATGAC TTTAAGAAAA CCCTTCACAT TGACAAGGTT
    CAAGATGACG ATGATGGGGA CTATCAGTGC ACTGCCAAGA ACACACAAGG CACAGCCACA
    CATACCTTCA CAGTGGTTGT TGAGTCTGCC CCTTACTGGA TTAATAAACC AATGGATGGA
    ATCTATGCAC CGGGCGAGGA TATCATACTT CACTGTGAAG TTGGAGGGAA ACCTAAACCT
    AAGGTCACAT GGAAGATAAA CGGAGCATCT TTGAAAGACT CCGATCTATA TCACAACTGG
    AAACTGAGCG AGGGAAGTTT GGTCTTAAAC AATATGCAAC TCAATGACAC GTCTGTTGTT
    CAATGCGAGG CCCGCAACAA ACATGGAAAC CTCCTTGCCA ATGCTTTTGT CTATGTTGTT
    GAGCTGCCCC CACAGATCCT CACCAAAAAT GATGAGCAGT ACAGTGTAGT TGAAAAGACA
    AATGTTTCAA TGGACTGTAA GACTTTTGGA GCTCCAATGC CAAAGATCCA ATGGGACAGA
    GATCAGGAAG ACAACCTGCT TGCTCTTGAC CAGTTTTCCT TCCACACTAA TGGGACACTG
    ACAATAACAG GAGTGGTCAA GGAACATGAA GGAATATATT GGTGCACTGC CAGCAACAAC
    CAGGGAAACG TTAACATCTC TGCCTACTTA GATGTCAGAA ATGCCACTAA GATCATTAGT
    CCCCCAATGG AGCAGAGAGC GAGAAAAGGT GGGAAAGCGA TCTTCCAGTG CACGGTGGAA
    TTTGATCCCA AAATGAGTAG TAAAATTATA GACTGGAAGA AAAACGGCTT GGAAATAAAT
    GAAGATCCCG ACAACGATAA ATACTTTATT GAGGATTACA CCCTAAGTAT TTCCAATGTA
    CAAGAGGGCG ATCAGGGGAT GTACACCTGC TTGGCACGCA GTGAACTGGA TTCTGTGGAA
    CAGACTGCCG AACTGGTGGT GATTGATCTT CCTGAATCTC CTTCTGATTT GGAGCTTTCT
    AACGCACAAG AAACAAGTAT AACACTAACC TGGACTCCAG GCAATGAAAA CAACAGTCCC
    ATTGAGGAGT TCATTATCGA GTTTGAGGAA GACAGCTTTG AACCAGGAGT ATGGCATGAA
    CTCACAAGGG TGGACGGAGA TATGGTTACT ACTGATCTGA ATCTTTCTCC CTATGTCAAC
    TATCAGTTCC GAGTGATTGC CGTGAATGAG GTTGGACCTA GCAATGGAAG CAACCCGTCA
    GATCGTTATC GGACACCTCC ATCTGCTCCA ACAAAGAATC CAGAAGAGGT GAAAGGGGAG
    GGCACAGTAC CAGAAAACAT GAAAATCTCC TGGAAGCCAT TGAAAGGCAT CGACTGGAAT
    GGCCCTGACT TCAAATATCT TGTAAAATGG AGGCGACTTG GTAAAGATGA TTGGAGGGAG
    GAGGTAGCAG AGAGCCCCCC AGTCATTGTG ACAGAGACAA GCACATTTGA GCCTTATGAG
    ATCATAGTCC AGTCAGTCAA CGATCTGGGC AGGGCTTCTG AACCCAAACC TATAATTGGC
    CACTCTGGGG AGGACTTTCC TGACATTAGC CCTGAGAATG TTGGCTTAGA GGCTATGAAC
    GAGAGTGCAA TCAAGGTAGC ATGGTTGCCT GTGCAGAAAC AAGGGCTGAA CGGTCATTTA
    AAAGGATTTA TGGTATACTA CATTAGCCAT AGCAGCCGGC ACAGGCAGAC CAAGGAGTTA
    CGGGTCCATG GTAACACAAC ACATGCATTA ATCACTGGGC TAAAACCTTT CAGTAACTAC
    TCAGTGGAAG TCGCCATCAT GAATGGAAAG GGACCTGGGG ACCGTAGTGA GTCACGCATG
    ATACGCACTG ATGAGGGAGT TCCAAGTCCA CCTTCATTTT TACACCTGGA GCGCCAATCT
    GACACATCAC TGACTCTCAT ATGGGGCCCA CCGGAAACTC CCAATGGAAT TCTAACAGGA
    TACGAGATAT ATCATCAGAT AGTGAACAAA ACTCACATGG GAGCAAAGTA CTTCTCTGAA
    ACTATCAATG ATCCCACGCA GCAAAATTGG ACACTTTCAA ATATCAGCTC CAAAGACACG
    TACCGGTTCT ATTTATATGC CACAACATCG GTGGGACAGA GTGAAGCTGT TATGGTGGAA
    GGCAGCACTA TGCAGGAGAT AGAGGTTCCT CCCGTGCTGA ATGTCAGTAT CGAGACTGGG
    GACAGTGTGG TCACTCTAAA CTGGATGCAG CTGGAGGGAT CGAGTAACGC AGAGATCAAA
    GTCGAGATCA GGAACAAATC TAGTGAACAC TTGTGGCACC ACTATGGTTC AGTGAACACC
    ACAGACTCTA CCTTCCAGCT GAGCGGCCTC CTCCCTGGCA CTCCTTATTT CATACGGCTT
    ATGGCCCTTA ATCACACTCA GCATGTTGAA ATCTGGAGTA AAATGGTACA GACCACCGGA
    ATAGCTATTA CCAAGGAACA GAGAGGATTT GCTACTGAGG GCTGGTTTAT TGGGCTGATA
    AGTGCCATTG TACTCCTACT GCTGATCCTA CTCATTCTTT GCTTTATTAA GCGCAGCAAA
    GGAGGAAAGT ACTCTGTGAA AGATAAAGAA GATACTCAAG TGGACTCTGA AGCCCGGCCA
    ATGAAGGATG AAACCTTTGG GGAATACAGT GAAAATGATG AGAAGCCTTT CACTAGCAGC
    CAACCCTCCC TCAATGGGGA CATCAAGCAA CTGGGTAGCG ATGACAGCCT GGCCGACTAT
    GGTGGTAGTG TGGATGTCCA GTTTAATGAA GATGGCTCGT TCATTGGCCA GTACAGTGGC
    AAAAAGGAGA AGGAGCCAGC AGGAGGCAAT GAAAGCTCTG GAGCGACCTC ACCGGTCAAC
    CCCAACATTG CCAATGAATA G

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

    CloneID OAf43280
    Clone ID Related Accession (Same CDS sequence) XM_018231824.1 , XM_018231825.1
    Accession Version XM_018231824.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3768bp)
    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 2016-09-19
    Organism Xenopus laevis(African clawed frog)
    Product L1 cell adhesion molecule S homeolog isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030739.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Xenopus laevis Annotation Release 100 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
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TATGTAATGC AAGAAATAAT GTATCCACCA
    ACTATAACTG AACAGTCACC GGCAAAGTAC GTGGTATATC CCAATGATGA CATTGTGCTC
    AAGTGTGAAG CCAAGAGAAA TGCAAAAGTA AAATACACCT GGAAAAAGGA TGGGGAAACG
    TTTGCGCCAG AGGATGGCCC AAGTGTCAAT CGCAAGAAAG ATTCAGGATC TATAATCATC
    TCTAATGGGA ATGGGAACGC AATGAAGGAT TTTCAGGGCA AATATCGTTG CTATGCCACC
    AATGAACTGG GAACAGCCAT CTCACACGAG ATCCATGTAA TCACTGAGAG CACCCCAAAA
    TGGCAGAAGG AAATGATCCG TCCTATTGAG GTTGAAGAGG GTTCCTCATT GATATTACCG
    TGTAATCCAC CTAAAAGTGC CGTACCTCCA CGAGTCATCT GGATGAACAG CAGCTTATTG
    CACATCACAC AGGATAAGCG TGTGTCAATG GGCGTAAATG GAAACCTATA TTTCTCCAAT
    GTACAAAAGC AAGACGAACA TCCTGACTAC ATCTGTCATG CCCAGTTTGT TGGTGCACGT
    ACCATTGTGC AGAAGGAGGC GATATCTATC AAAGTCAGAC CCACAAATTC GGTGAAATTT
    CGAAGGCCGG AAATGATGTT ACCTGAAGGC TCCATGAGCA CTGTTCTGGC ATTAAGAGAC
    CAACCCTTGC AACTGGAGTG CATAGCCGAA GGCCTCCCTA CCCCAGAGAT TGAGTGGATT
    CCCCTCACTG GCTCCACTAC CAATGGTCAC ATTCAATATG ATGACTTTAA GAAAACCCTT
    CACATTGACA AGGTTCAAGA TGACGATGAT GGGGACTATC AGTGCACTGC CAAGAACACA
    CAAGGCACAG CCACACATAC CTTCACAGTG GTTGTTGAGT CTGCCCCTTA CTGGATTAAT
    AAACCAATGG ATGGAATCTA TGCACCGGGC GAGGATATCA TACTTCACTG TGAAGTTGGA
    GGGAAACCTA AACCTAAGGT CACATGGAAG ATAAACGGAG CATCTTTGAA AGACTCCGAT
    CTATATCACA ACTGGAAACT GAGCGAGGGA AGTTTGGTCT TAAACAATAT GCAACTCAAT
    GACACGTCTG TTGTTCAATG CGAGGCCCGC AACAAACATG GAAACCTCCT TGCCAATGCT
    TTTGTCTATG TTGTTGAGCT GCCCCCACAG ATCCTCACCA AAAATGATGA GCAGTACAGT
    GTAGTTGAAA AGACAAATGT TTCAATGGAC TGTAAGACTT TTGGAGCTCC AATGCCAAAG
    ATCCAATGGG ACAGAGATCA GGAAGACAAC CTGCTTGCTC TTGACCAGTT TTCCTTCCAC
    ACTAATGGGA CACTGACAAT AACAGGAGTG GTCAAGGAAC ATGAAGGAAT ATATTGGTGC
    ACTGCCAGCA ACAACCAGGG AAACGTTAAC ATCTCTGCCT ACTTAGATGT CAGAAATGCC
    ACTAAGATCA TTAGTCCCCC AACGGAGCAG AGAGCGAGAA AAGGTGGGAA AGCGATCTTC
    CAGTGCACGG TGGAATTTGA TCCCAAAATG AGTAGTAAAA TTATAGACTG GAAGAAAAAC
    GGCTTGGAAA TAAATGAAGA TCCCGACAAC GATAAATACT TTATTGAGGA TTACACCCTA
    AGTATTTCCA ATGTACAAGA GGGCGATCAG GGGATGTACA CCTGCTTGGC ACGCAGTGAA
    CTGGATTCTG TGGAACAGAC TGCCGAACTG GTGGTGATTG ATCTTCCTGA ATCTCCTTCT
    GATTTGGAGC TTTCTAACGC ACAAGAAACA AGTATAACAC TAACCTGGAC TCCAGGCAAT
    GAAAACAACA GTCCCATTGA GGAGTTCATT ATCGAGTTTG AGGAAGACAG CTTTGAACCA
    GGAGTATGGC ATGAACTCAC AAGGGTGGAC GGAGATATGG TTACTACTGA TCTGAATCTT
    TCTCCCTATG TCAACTATCA GTTCCGAGTG ATTGCCGTGA ATGAGGTTGG ACCTAGCAAT
    GGAAGCAACC CGTCAGATCG TTATCGGACA CCTCCATCTG CTCCAACAAA GAATCCAGAA
    GAGGTGAAAG GGGAGGGCAC AGTACCAGAA AACATGAAAA TCTCCTGGAA GCCATTGAAA
    GGCATCGACT GGAATGGCCC TGACTTCAAA TATCTTGTAA AATGGAGGCG ACTTGGTAAA
    GATGATTGGA GGGAGGAGGT AGCAGAGAGC CCCCCAGTCA TTGTGACAGA GACAAGCACA
    TTTGAGCCTT ATGAGATCAT AGTCCAGTCA GTCAACGATC TGGGCAGGGC TTCTGAACCC
    AAACCTATAA TTGGCCACTC TGGGGAGGAC TTTCCTGACA TTAGCCCTGA GAATGTTGGC
    TTAGAGGCTA TGAACGAGAG TGCAATCAAG GTAGCATGGT TGCCTGTGCA GAAACAAGGG
    CTGAACGGTC ATTTAAAAGG ATTTATGGTA TACTACATTA GCCATAGCAG CCGGCACAGG
    CAGACCAAGG AGTTACGGGT CCATGGTAAC ACAACACATG CATTAATTAC TGGGCTAAAA
    CCTTTCAGTA ACTACTCAGT GGAAGTCGCC ATCATGAATG GAAAGGGACC TGGGGACCGT
    AGTGAGTCAC GCATGATACG CACTGATGAG GGAGTTCCAA GTCCACCTTC ATTTTTACAC
    CTGGAGCGCC AATCTGACAC ATCACTGACT CTCATATGGG GCCCACCGGA AACTCCCAAT
    GGAATTCTAA CAGGATACGA GATATATCAT CAGATAGTGA ACAAAACTCA CATGGGAGCA
    AAGTACTTCT CTGAAACTAT CAATGATCCC ACGCAGCAAA ATTGGACACT TTCAAATATC
    AGCTCCAAAG ACACGTACCG GTTCTATTTA TATGCCACAA CATCGGTGGG ACAGAGTGAA
    GCTGTTATGG TGGAAGGCAG CACTATGCAG GAGATAGAGG TTCCTCCCGT GCTGAATGTC
    AGTATCGAGA CTGGGGACAG TGTGGTCACT CTAAACTGGA TGCAGCTGGA GGGATCGAGT
    AACGCAGAGA TCAAAGTCGA GATCAGGAAC AAATCTAGTG AACACTTGTG GCACCACTAT
    GGTTCAGTGA ACACCACAGA CTCTACCTTC CAGCTGAGCG GCCTCCTCCC TGGCACTCCT
    TATTTCATAC GGCTTATGGC CCTTAATCAC ACTCAGCATG TTGAAATCTG GAGTAAAATG
    GTACAGACCA CCGGAATAGC TATTACCAAG GAACAGAGAG GATTTGCTAC TGAGGGCTGG
    TTTATTGGGC TGATAAGTGC CATTGTACTC CTACTGCTGA TCCTACTCAT TCTTTGCTTT
    ATTAAGCGCA GCAAAGGAGG AAAGTACTCT GTGAAAGATA AAGAAGATAC TCAAGTGGAC
    TCTGAAGCCC GGCCAATGAA GGATGAAACC TTTGGGGAAT ACAGATCTCT AGAAAGTGAA
    AATGATGAGA AGCCTTTCAC TAGCAGCCAA CCCTCCCTCA ATGGGGACAT CAAGCAACTG
    GGTAGCGATG ACAGCCTGGC CGACTATGGT GGTAGTGTGG ATGTCCAGTT TAATGAAGAT
    GGCTCGTTCA TTGGCCAGTA CAGTGGCAAA AAGGAGAAGG AGCCAGCAGG AGGCAATGAA
    AGCTCTGGAG CGACCTCACC GGTCAACCCC AACATTGCCA ATGAATAG

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

    RefSeq XP_018087313.1
    CDS239..4006
    Translation

    Target ORF information:

    RefSeq Version XM_018231824.1
    Organism Xenopus laevis(African clawed frog)
    Definition Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_018231824.1

    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
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TATGTAATGC AAGAAATAAT GTATCCACCA
    ACTATAACTG AACAGTCACC GGCAAAGTAC GTGGTATATC CCAATGATGA CATTGTGCTC
    AAGTGTGAAG CCAAGAGAAA TGCAAAAGTA AAATACACCT GGAAAAAGGA TGGGGAAACG
    TTTGCGCCAG AGGATGGCCC AAGTGTCAAT CGCAAGAAAG ATTCAGGATC TATAATCATC
    TCTAATGGGA ATGGGAACGC AATGAAGGAT TTTCAGGGCA AATATCGTTG CTATGCCACC
    AATGAACTGG GAACAGCCAT CTCACACGAG ATCCATGTAA TCACTGAGAG CACCCCAAAA
    TGGCAGAAGG AAATGATCCG TCCTATTGAG GTTGAAGAGG GTTCCTCATT GATATTACCG
    TGTAATCCAC CTAAAAGTGC CGTACCTCCA CGAGTCATCT GGATGAACAG CAGCTTATTG
    CACATCACAC AGGATAAGCG TGTGTCAATG GGCGTAAATG GAAACCTATA TTTCTCCAAT
    GTACAAAAGC AAGACGAACA TCCTGACTAC ATCTGTCATG CCCAGTTTGT TGGTGCACGT
    ACCATTGTGC AGAAGGAGGC GATATCTATC AAAGTCAGAC CCACAAATTC GGTGAAATTT
    CGAAGGCCGG AAATGATGTT ACCTGAAGGC TCCATGAGCA CTGTTCTGGC ATTAAGAGAC
    CAACCCTTGC AACTGGAGTG CATAGCCGAA GGCCTCCCTA CCCCAGAGAT TGAGTGGATT
    CCCCTCACTG GCTCCACTAC CAATGGTCAC ATTCAATATG ATGACTTTAA GAAAACCCTT
    CACATTGACA AGGTTCAAGA TGACGATGAT GGGGACTATC AGTGCACTGC CAAGAACACA
    CAAGGCACAG CCACACATAC CTTCACAGTG GTTGTTGAGT CTGCCCCTTA CTGGATTAAT
    AAACCAATGG ATGGAATCTA TGCACCGGGC GAGGATATCA TACTTCACTG TGAAGTTGGA
    GGGAAACCTA AACCTAAGGT CACATGGAAG ATAAACGGAG CATCTTTGAA AGACTCCGAT
    CTATATCACA ACTGGAAACT GAGCGAGGGA AGTTTGGTCT TAAACAATAT GCAACTCAAT
    GACACGTCTG TTGTTCAATG CGAGGCCCGC AACAAACATG GAAACCTCCT TGCCAATGCT
    TTTGTCTATG TTGTTGAGCT GCCCCCACAG ATCCTCACCA AAAATGATGA GCAGTACAGT
    GTAGTTGAAA AGACAAATGT TTCAATGGAC TGTAAGACTT TTGGAGCTCC AATGCCAAAG
    ATCCAATGGG ACAGAGATCA GGAAGACAAC CTGCTTGCTC TTGACCAGTT TTCCTTCCAC
    ACTAATGGGA CACTGACAAT AACAGGAGTG GTCAAGGAAC ATGAAGGAAT ATATTGGTGC
    ACTGCCAGCA ACAACCAGGG AAACGTTAAC ATCTCTGCCT ACTTAGATGT CAGAAATGCC
    ACTAAGATCA TTAGTCCCCC AACGGAGCAG AGAGCGAGAA AAGGTGGGAA AGCGATCTTC
    CAGTGCACGG TGGAATTTGA TCCCAAAATG AGTAGTAAAA TTATAGACTG GAAGAAAAAC
    GGCTTGGAAA TAAATGAAGA TCCCGACAAC GATAAATACT TTATTGAGGA TTACACCCTA
    AGTATTTCCA ATGTACAAGA GGGCGATCAG GGGATGTACA CCTGCTTGGC ACGCAGTGAA
    CTGGATTCTG TGGAACAGAC TGCCGAACTG GTGGTGATTG ATCTTCCTGA ATCTCCTTCT
    GATTTGGAGC TTTCTAACGC ACAAGAAACA AGTATAACAC TAACCTGGAC TCCAGGCAAT
    GAAAACAACA GTCCCATTGA GGAGTTCATT ATCGAGTTTG AGGAAGACAG CTTTGAACCA
    GGAGTATGGC ATGAACTCAC AAGGGTGGAC GGAGATATGG TTACTACTGA TCTGAATCTT
    TCTCCCTATG TCAACTATCA GTTCCGAGTG ATTGCCGTGA ATGAGGTTGG ACCTAGCAAT
    GGAAGCAACC CGTCAGATCG TTATCGGACA CCTCCATCTG CTCCAACAAA GAATCCAGAA
    GAGGTGAAAG GGGAGGGCAC AGTACCAGAA AACATGAAAA TCTCCTGGAA GCCATTGAAA
    GGCATCGACT GGAATGGCCC TGACTTCAAA TATCTTGTAA AATGGAGGCG ACTTGGTAAA
    GATGATTGGA GGGAGGAGGT AGCAGAGAGC CCCCCAGTCA TTGTGACAGA GACAAGCACA
    TTTGAGCCTT ATGAGATCAT AGTCCAGTCA GTCAACGATC TGGGCAGGGC TTCTGAACCC
    AAACCTATAA TTGGCCACTC TGGGGAGGAC TTTCCTGACA TTAGCCCTGA GAATGTTGGC
    TTAGAGGCTA TGAACGAGAG TGCAATCAAG GTAGCATGGT TGCCTGTGCA GAAACAAGGG
    CTGAACGGTC ATTTAAAAGG ATTTATGGTA TACTACATTA GCCATAGCAG CCGGCACAGG
    CAGACCAAGG AGTTACGGGT CCATGGTAAC ACAACACATG CATTAATTAC TGGGCTAAAA
    CCTTTCAGTA ACTACTCAGT GGAAGTCGCC ATCATGAATG GAAAGGGACC TGGGGACCGT
    AGTGAGTCAC GCATGATACG CACTGATGAG GGAGTTCCAA GTCCACCTTC ATTTTTACAC
    CTGGAGCGCC AATCTGACAC ATCACTGACT CTCATATGGG GCCCACCGGA AACTCCCAAT
    GGAATTCTAA CAGGATACGA GATATATCAT CAGATAGTGA ACAAAACTCA CATGGGAGCA
    AAGTACTTCT CTGAAACTAT CAATGATCCC ACGCAGCAAA ATTGGACACT TTCAAATATC
    AGCTCCAAAG ACACGTACCG GTTCTATTTA TATGCCACAA CATCGGTGGG ACAGAGTGAA
    GCTGTTATGG TGGAAGGCAG CACTATGCAG GAGATAGAGG TTCCTCCCGT GCTGAATGTC
    AGTATCGAGA CTGGGGACAG TGTGGTCACT CTAAACTGGA TGCAGCTGGA GGGATCGAGT
    AACGCAGAGA TCAAAGTCGA GATCAGGAAC AAATCTAGTG AACACTTGTG GCACCACTAT
    GGTTCAGTGA ACACCACAGA CTCTACCTTC CAGCTGAGCG GCCTCCTCCC TGGCACTCCT
    TATTTCATAC GGCTTATGGC CCTTAATCAC ACTCAGCATG TTGAAATCTG GAGTAAAATG
    GTACAGACCA CCGGAATAGC TATTACCAAG GAACAGAGAG GATTTGCTAC TGAGGGCTGG
    TTTATTGGGC TGATAAGTGC CATTGTACTC CTACTGCTGA TCCTACTCAT TCTTTGCTTT
    ATTAAGCGCA GCAAAGGAGG AAAGTACTCT GTGAAAGATA AAGAAGATAC TCAAGTGGAC
    TCTGAAGCCC GGCCAATGAA GGATGAAACC TTTGGGGAAT ACAGATCTCT AGAAAGTGAA
    AATGATGAGA AGCCTTTCAC TAGCAGCCAA CCCTCCCTCA ATGGGGACAT CAAGCAACTG
    GGTAGCGATG ACAGCCTGGC CGACTATGGT GGTAGTGTGG ATGTCCAGTT TAATGAAGAT
    GGCTCGTTCA TTGGCCAGTA CAGTGGCAAA AAGGAGAAGG AGCCAGCAGG AGGCAATGAA
    AGCTCTGGAG CGACCTCACC GGTCAACCCC AACATTGCCA ATGAATAG

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

    CloneID OAf43280
    Clone ID Related Accession (Same CDS sequence) XM_018231824.1 , XM_018231825.1
    Accession Version XM_018231825.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3768bp)
    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 2016-09-19
    Organism Xenopus laevis(African clawed frog)
    Product L1 cell adhesion molecule S homeolog isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030739.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Xenopus laevis Annotation Release 100 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
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TATGTAATGC AAGAAATAAT GTATCCACCA
    ACTATAACTG AACAGTCACC GGCAAAGTAC GTGGTATATC CCAATGATGA CATTGTGCTC
    AAGTGTGAAG CCAAGAGAAA TGCAAAAGTA AAATACACCT GGAAAAAGGA TGGGGAAACG
    TTTGCGCCAG AGGATGGCCC AAGTGTCAAT CGCAAGAAAG ATTCAGGATC TATAATCATC
    TCTAATGGGA ATGGGAACGC AATGAAGGAT TTTCAGGGCA AATATCGTTG CTATGCCACC
    AATGAACTGG GAACAGCCAT CTCACACGAG ATCCATGTAA TCACTGAGAG CACCCCAAAA
    TGGCAGAAGG AAATGATCCG TCCTATTGAG GTTGAAGAGG GTTCCTCATT GATATTACCG
    TGTAATCCAC CTAAAAGTGC CGTACCTCCA CGAGTCATCT GGATGAACAG CAGCTTATTG
    CACATCACAC AGGATAAGCG TGTGTCAATG GGCGTAAATG GAAACCTATA TTTCTCCAAT
    GTACAAAAGC AAGACGAACA TCCTGACTAC ATCTGTCATG CCCAGTTTGT TGGTGCACGT
    ACCATTGTGC AGAAGGAGGC GATATCTATC AAAGTCAGAC CCACAAATTC GGTGAAATTT
    CGAAGGCCGG AAATGATGTT ACCTGAAGGC TCCATGAGCA CTGTTCTGGC ATTAAGAGAC
    CAACCCTTGC AACTGGAGTG CATAGCCGAA GGCCTCCCTA CCCCAGAGAT TGAGTGGATT
    CCCCTCACTG GCTCCACTAC CAATGGTCAC ATTCAATATG ATGACTTTAA GAAAACCCTT
    CACATTGACA AGGTTCAAGA TGACGATGAT GGGGACTATC AGTGCACTGC CAAGAACACA
    CAAGGCACAG CCACACATAC CTTCACAGTG GTTGTTGAGT CTGCCCCTTA CTGGATTAAT
    AAACCAATGG ATGGAATCTA TGCACCGGGC GAGGATATCA TACTTCACTG TGAAGTTGGA
    GGGAAACCTA AACCTAAGGT CACATGGAAG ATAAACGGAG CATCTTTGAA AGACTCCGAT
    CTATATCACA ACTGGAAACT GAGCGAGGGA AGTTTGGTCT TAAACAATAT GCAACTCAAT
    GACACGTCTG TTGTTCAATG CGAGGCCCGC AACAAACATG GAAACCTCCT TGCCAATGCT
    TTTGTCTATG TTGTTGAGCT GCCCCCACAG ATCCTCACCA AAAATGATGA GCAGTACAGT
    GTAGTTGAAA AGACAAATGT TTCAATGGAC TGTAAGACTT TTGGAGCTCC AATGCCAAAG
    ATCCAATGGG ACAGAGATCA GGAAGACAAC CTGCTTGCTC TTGACCAGTT TTCCTTCCAC
    ACTAATGGGA CACTGACAAT AACAGGAGTG GTCAAGGAAC ATGAAGGAAT ATATTGGTGC
    ACTGCCAGCA ACAACCAGGG AAACGTTAAC ATCTCTGCCT ACTTAGATGT CAGAAATGCC
    ACTAAGATCA TTAGTCCCCC AACGGAGCAG AGAGCGAGAA AAGGTGGGAA AGCGATCTTC
    CAGTGCACGG TGGAATTTGA TCCCAAAATG AGTAGTAAAA TTATAGACTG GAAGAAAAAC
    GGCTTGGAAA TAAATGAAGA TCCCGACAAC GATAAATACT TTATTGAGGA TTACACCCTA
    AGTATTTCCA ATGTACAAGA GGGCGATCAG GGGATGTACA CCTGCTTGGC ACGCAGTGAA
    CTGGATTCTG TGGAACAGAC TGCCGAACTG GTGGTGATTG ATCTTCCTGA ATCTCCTTCT
    GATTTGGAGC TTTCTAACGC ACAAGAAACA AGTATAACAC TAACCTGGAC TCCAGGCAAT
    GAAAACAACA GTCCCATTGA GGAGTTCATT ATCGAGTTTG AGGAAGACAG CTTTGAACCA
    GGAGTATGGC ATGAACTCAC AAGGGTGGAC GGAGATATGG TTACTACTGA TCTGAATCTT
    TCTCCCTATG TCAACTATCA GTTCCGAGTG ATTGCCGTGA ATGAGGTTGG ACCTAGCAAT
    GGAAGCAACC CGTCAGATCG TTATCGGACA CCTCCATCTG CTCCAACAAA GAATCCAGAA
    GAGGTGAAAG GGGAGGGCAC AGTACCAGAA AACATGAAAA TCTCCTGGAA GCCATTGAAA
    GGCATCGACT GGAATGGCCC TGACTTCAAA TATCTTGTAA AATGGAGGCG ACTTGGTAAA
    GATGATTGGA GGGAGGAGGT AGCAGAGAGC CCCCCAGTCA TTGTGACAGA GACAAGCACA
    TTTGAGCCTT ATGAGATCAT AGTCCAGTCA GTCAACGATC TGGGCAGGGC TTCTGAACCC
    AAACCTATAA TTGGCCACTC TGGGGAGGAC TTTCCTGACA TTAGCCCTGA GAATGTTGGC
    TTAGAGGCTA TGAACGAGAG TGCAATCAAG GTAGCATGGT TGCCTGTGCA GAAACAAGGG
    CTGAACGGTC ATTTAAAAGG ATTTATGGTA TACTACATTA GCCATAGCAG CCGGCACAGG
    CAGACCAAGG AGTTACGGGT CCATGGTAAC ACAACACATG CATTAATTAC TGGGCTAAAA
    CCTTTCAGTA ACTACTCAGT GGAAGTCGCC ATCATGAATG GAAAGGGACC TGGGGACCGT
    AGTGAGTCAC GCATGATACG CACTGATGAG GGAGTTCCAA GTCCACCTTC ATTTTTACAC
    CTGGAGCGCC AATCTGACAC ATCACTGACT CTCATATGGG GCCCACCGGA AACTCCCAAT
    GGAATTCTAA CAGGATACGA GATATATCAT CAGATAGTGA ACAAAACTCA CATGGGAGCA
    AAGTACTTCT CTGAAACTAT CAATGATCCC ACGCAGCAAA ATTGGACACT TTCAAATATC
    AGCTCCAAAG ACACGTACCG GTTCTATTTA TATGCCACAA CATCGGTGGG ACAGAGTGAA
    GCTGTTATGG TGGAAGGCAG CACTATGCAG GAGATAGAGG TTCCTCCCGT GCTGAATGTC
    AGTATCGAGA CTGGGGACAG TGTGGTCACT CTAAACTGGA TGCAGCTGGA GGGATCGAGT
    AACGCAGAGA TCAAAGTCGA GATCAGGAAC AAATCTAGTG AACACTTGTG GCACCACTAT
    GGTTCAGTGA ACACCACAGA CTCTACCTTC CAGCTGAGCG GCCTCCTCCC TGGCACTCCT
    TATTTCATAC GGCTTATGGC CCTTAATCAC ACTCAGCATG TTGAAATCTG GAGTAAAATG
    GTACAGACCA CCGGAATAGC TATTACCAAG GAACAGAGAG GATTTGCTAC TGAGGGCTGG
    TTTATTGGGC TGATAAGTGC CATTGTACTC CTACTGCTGA TCCTACTCAT TCTTTGCTTT
    ATTAAGCGCA GCAAAGGAGG AAAGTACTCT GTGAAAGATA AAGAAGATAC TCAAGTGGAC
    TCTGAAGCCC GGCCAATGAA GGATGAAACC TTTGGGGAAT ACAGATCTCT AGAAAGTGAA
    AATGATGAGA AGCCTTTCAC TAGCAGCCAA CCCTCCCTCA ATGGGGACAT CAAGCAACTG
    GGTAGCGATG ACAGCCTGGC CGACTATGGT GGTAGTGTGG ATGTCCAGTT TAATGAAGAT
    GGCTCGTTCA TTGGCCAGTA CAGTGGCAAA AAGGAGAAGG AGCCAGCAGG AGGCAATGAA
    AGCTCTGGAG CGACCTCACC GGTCAACCCC AACATTGCCA ATGAATAG

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

    RefSeq XP_018087314.1
    CDS416..4183
    Translation

    Target ORF information:

    RefSeq Version XM_018231825.1
    Organism Xenopus laevis(African clawed frog)
    Definition Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_018231825.1

    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
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TATGTAATGC AAGAAATAAT GTATCCACCA
    ACTATAACTG AACAGTCACC GGCAAAGTAC GTGGTATATC CCAATGATGA CATTGTGCTC
    AAGTGTGAAG CCAAGAGAAA TGCAAAAGTA AAATACACCT GGAAAAAGGA TGGGGAAACG
    TTTGCGCCAG AGGATGGCCC AAGTGTCAAT CGCAAGAAAG ATTCAGGATC TATAATCATC
    TCTAATGGGA ATGGGAACGC AATGAAGGAT TTTCAGGGCA AATATCGTTG CTATGCCACC
    AATGAACTGG GAACAGCCAT CTCACACGAG ATCCATGTAA TCACTGAGAG CACCCCAAAA
    TGGCAGAAGG AAATGATCCG TCCTATTGAG GTTGAAGAGG GTTCCTCATT GATATTACCG
    TGTAATCCAC CTAAAAGTGC CGTACCTCCA CGAGTCATCT GGATGAACAG CAGCTTATTG
    CACATCACAC AGGATAAGCG TGTGTCAATG GGCGTAAATG GAAACCTATA TTTCTCCAAT
    GTACAAAAGC AAGACGAACA TCCTGACTAC ATCTGTCATG CCCAGTTTGT TGGTGCACGT
    ACCATTGTGC AGAAGGAGGC GATATCTATC AAAGTCAGAC CCACAAATTC GGTGAAATTT
    CGAAGGCCGG AAATGATGTT ACCTGAAGGC TCCATGAGCA CTGTTCTGGC ATTAAGAGAC
    CAACCCTTGC AACTGGAGTG CATAGCCGAA GGCCTCCCTA CCCCAGAGAT TGAGTGGATT
    CCCCTCACTG GCTCCACTAC CAATGGTCAC ATTCAATATG ATGACTTTAA GAAAACCCTT
    CACATTGACA AGGTTCAAGA TGACGATGAT GGGGACTATC AGTGCACTGC CAAGAACACA
    CAAGGCACAG CCACACATAC CTTCACAGTG GTTGTTGAGT CTGCCCCTTA CTGGATTAAT
    AAACCAATGG ATGGAATCTA TGCACCGGGC GAGGATATCA TACTTCACTG TGAAGTTGGA
    GGGAAACCTA AACCTAAGGT CACATGGAAG ATAAACGGAG CATCTTTGAA AGACTCCGAT
    CTATATCACA ACTGGAAACT GAGCGAGGGA AGTTTGGTCT TAAACAATAT GCAACTCAAT
    GACACGTCTG TTGTTCAATG CGAGGCCCGC AACAAACATG GAAACCTCCT TGCCAATGCT
    TTTGTCTATG TTGTTGAGCT GCCCCCACAG ATCCTCACCA AAAATGATGA GCAGTACAGT
    GTAGTTGAAA AGACAAATGT TTCAATGGAC TGTAAGACTT TTGGAGCTCC AATGCCAAAG
    ATCCAATGGG ACAGAGATCA GGAAGACAAC CTGCTTGCTC TTGACCAGTT TTCCTTCCAC
    ACTAATGGGA CACTGACAAT AACAGGAGTG GTCAAGGAAC ATGAAGGAAT ATATTGGTGC
    ACTGCCAGCA ACAACCAGGG AAACGTTAAC ATCTCTGCCT ACTTAGATGT CAGAAATGCC
    ACTAAGATCA TTAGTCCCCC AACGGAGCAG AGAGCGAGAA AAGGTGGGAA AGCGATCTTC
    CAGTGCACGG TGGAATTTGA TCCCAAAATG AGTAGTAAAA TTATAGACTG GAAGAAAAAC
    GGCTTGGAAA TAAATGAAGA TCCCGACAAC GATAAATACT TTATTGAGGA TTACACCCTA
    AGTATTTCCA ATGTACAAGA GGGCGATCAG GGGATGTACA CCTGCTTGGC ACGCAGTGAA
    CTGGATTCTG TGGAACAGAC TGCCGAACTG GTGGTGATTG ATCTTCCTGA ATCTCCTTCT
    GATTTGGAGC TTTCTAACGC ACAAGAAACA AGTATAACAC TAACCTGGAC TCCAGGCAAT
    GAAAACAACA GTCCCATTGA GGAGTTCATT ATCGAGTTTG AGGAAGACAG CTTTGAACCA
    GGAGTATGGC ATGAACTCAC AAGGGTGGAC GGAGATATGG TTACTACTGA TCTGAATCTT
    TCTCCCTATG TCAACTATCA GTTCCGAGTG ATTGCCGTGA ATGAGGTTGG ACCTAGCAAT
    GGAAGCAACC CGTCAGATCG TTATCGGACA CCTCCATCTG CTCCAACAAA GAATCCAGAA
    GAGGTGAAAG GGGAGGGCAC AGTACCAGAA AACATGAAAA TCTCCTGGAA GCCATTGAAA
    GGCATCGACT GGAATGGCCC TGACTTCAAA TATCTTGTAA AATGGAGGCG ACTTGGTAAA
    GATGATTGGA GGGAGGAGGT AGCAGAGAGC CCCCCAGTCA TTGTGACAGA GACAAGCACA
    TTTGAGCCTT ATGAGATCAT AGTCCAGTCA GTCAACGATC TGGGCAGGGC TTCTGAACCC
    AAACCTATAA TTGGCCACTC TGGGGAGGAC TTTCCTGACA TTAGCCCTGA GAATGTTGGC
    TTAGAGGCTA TGAACGAGAG TGCAATCAAG GTAGCATGGT TGCCTGTGCA GAAACAAGGG
    CTGAACGGTC ATTTAAAAGG ATTTATGGTA TACTACATTA GCCATAGCAG CCGGCACAGG
    CAGACCAAGG AGTTACGGGT CCATGGTAAC ACAACACATG CATTAATTAC TGGGCTAAAA
    CCTTTCAGTA ACTACTCAGT GGAAGTCGCC ATCATGAATG GAAAGGGACC TGGGGACCGT
    AGTGAGTCAC GCATGATACG CACTGATGAG GGAGTTCCAA GTCCACCTTC ATTTTTACAC
    CTGGAGCGCC AATCTGACAC ATCACTGACT CTCATATGGG GCCCACCGGA AACTCCCAAT
    GGAATTCTAA CAGGATACGA GATATATCAT CAGATAGTGA ACAAAACTCA CATGGGAGCA
    AAGTACTTCT CTGAAACTAT CAATGATCCC ACGCAGCAAA ATTGGACACT TTCAAATATC
    AGCTCCAAAG ACACGTACCG GTTCTATTTA TATGCCACAA CATCGGTGGG ACAGAGTGAA
    GCTGTTATGG TGGAAGGCAG CACTATGCAG GAGATAGAGG TTCCTCCCGT GCTGAATGTC
    AGTATCGAGA CTGGGGACAG TGTGGTCACT CTAAACTGGA TGCAGCTGGA GGGATCGAGT
    AACGCAGAGA TCAAAGTCGA GATCAGGAAC AAATCTAGTG AACACTTGTG GCACCACTAT
    GGTTCAGTGA ACACCACAGA CTCTACCTTC CAGCTGAGCG GCCTCCTCCC TGGCACTCCT
    TATTTCATAC GGCTTATGGC CCTTAATCAC ACTCAGCATG TTGAAATCTG GAGTAAAATG
    GTACAGACCA CCGGAATAGC TATTACCAAG GAACAGAGAG GATTTGCTAC TGAGGGCTGG
    TTTATTGGGC TGATAAGTGC CATTGTACTC CTACTGCTGA TCCTACTCAT TCTTTGCTTT
    ATTAAGCGCA GCAAAGGAGG AAAGTACTCT GTGAAAGATA AAGAAGATAC TCAAGTGGAC
    TCTGAAGCCC GGCCAATGAA GGATGAAACC TTTGGGGAAT ACAGATCTCT AGAAAGTGAA
    AATGATGAGA AGCCTTTCAC TAGCAGCCAA CCCTCCCTCA ATGGGGACAT CAAGCAACTG
    GGTAGCGATG ACAGCCTGGC CGACTATGGT GGTAGTGTGG ATGTCCAGTT TAATGAAGAT
    GGCTCGTTCA TTGGCCAGTA CAGTGGCAAA AAGGAGAAGG AGCCAGCAGG AGGCAATGAA
    AGCTCTGGAG CGACCTCACC GGTCAACCCC AACATTGCCA ATGAATAG

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

    CloneID OAf43281
    Clone ID Related Accession (Same CDS sequence) XM_018231827.1
    Accession Version XM_018231827.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3756bp)
    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 2016-09-19
    Organism Xenopus laevis(African clawed frog)
    Product L1 cell adhesion molecule S homeolog isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030739.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Xenopus laevis Annotation Release 100 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
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TATGTAATGC AAGAAATAAT GTATCCACCA
    ACTATAACTG AACAGTCACC GGCAAAGTAC GTGGTATATC CCAATGATGA CATTGTGCTC
    AAGTGTGAAG CCAAGAGAAA TGCAAAAGTA AAATACACCT GGAAAAAGGA TGGGGAAACG
    TTTGCGCCAG AGGATGGCCC AAGTGTCAAT CGCAAGAAAG ATTCAGGATC TATAATCATC
    TCTAATGGGA ATGGGAACGC AATGAAGGAT TTTCAGGGCA AATATCGTTG CTATGCCACC
    AATGAACTGG GAACAGCCAT CTCACACGAG ATCCATGTAA TCACTGAGAG CACCCCAAAA
    TGGCAGAAGG AAATGATCCG TCCTATTGAG GTTGAAGAGG GTTCCTCATT GATATTACCG
    TGTAATCCAC CTAAAAGTGC CGTACCTCCA CGAGTCATCT GGATGAACAG CAGCTTATTG
    CACATCACAC AGGATAAGCG TGTGTCAATG GGCGTAAATG GAAACCTATA TTTCTCCAAT
    GTACAAAAGC AAGACGAACA TCCTGACTAC ATCTGTCATG CCCAGTTTGT TGGTGCACGT
    ACCATTGTGC AGAAGGAGGC GATATCTATC AAAGTCAGAC CCACAAATTC GGTGAAATTT
    CGAAGGCCGG AAATGATGTT ACCTGAAGGC TCCATGAGCA CTGTTCTGGC ATTAAGAGAC
    CAACCCTTGC AACTGGAGTG CATAGCCGAA GGCCTCCCTA CCCCAGAGAT TGAGTGGATT
    CCCCTCACTG GCTCCACTAC CAATGGTCAC ATTCAATATG ATGACTTTAA GAAAACCCTT
    CACATTGACA AGGTTCAAGA TGACGATGAT GGGGACTATC AGTGCACTGC CAAGAACACA
    CAAGGCACAG CCACACATAC CTTCACAGTG GTTGTTGAGT CTGCCCCTTA CTGGATTAAT
    AAACCAATGG ATGGAATCTA TGCACCGGGC GAGGATATCA TACTTCACTG TGAAGTTGGA
    GGGAAACCTA AACCTAAGGT CACATGGAAG ATAAACGGAG CATCTTTGAA AGACTCCGAT
    CTATATCACA ACTGGAAACT GAGCGAGGGA AGTTTGGTCT TAAACAATAT GCAACTCAAT
    GACACGTCTG TTGTTCAATG CGAGGCCCGC AACAAACATG GAAACCTCCT TGCCAATGCT
    TTTGTCTATG TTGTTGAGCT GCCCCCACAG ATCCTCACCA AAAATGATGA GCAGTACAGT
    GTAGTTGAAA AGACAAATGT TTCAATGGAC TGTAAGACTT TTGGAGCTCC AATGCCAAAG
    ATCCAATGGG ACAGAGATCA GGAAGACAAC CTGCTTGCTC TTGACCAGTT TTCCTTCCAC
    ACTAATGGGA CACTGACAAT AACAGGAGTG GTCAAGGAAC ATGAAGGAAT ATATTGGTGC
    ACTGCCAGCA ACAACCAGGG AAACGTTAAC ATCTCTGCCT ACTTAGATGT CAGAAATGCC
    ACTAAGATCA TTAGTCCCCC AACGGAGCAG AGAGCGAGAA AAGGTGGGAA AGCGATCTTC
    CAGTGCACGG TGGAATTTGA TCCCAAAATG AGTAGTAAAA TTATAGACTG GAAGAAAAAC
    GGCTTGGAAA TAAATGAAGA TCCCGACAAC GATAAATACT TTATTGAGGA TTACACCCTA
    AGTATTTCCA ATGTACAAGA GGGCGATCAG GGGATGTACA CCTGCTTGGC ACGCAGTGAA
    CTGGATTCTG TGGAACAGAC TGCCGAACTG GTGGTGATTG ATCTTCCTGA ATCTCCTTCT
    GATTTGGAGC TTTCTAACGC ACAAGAAACA AGTATAACAC TAACCTGGAC TCCAGGCAAT
    GAAAACAACA GTCCCATTGA GGAGTTCATT ATCGAGTTTG AGGAAGACAG CTTTGAACCA
    GGAGTATGGC ATGAACTCAC AAGGGTGGAC GGAGATATGG TTACTACTGA TCTGAATCTT
    TCTCCCTATG TCAACTATCA GTTCCGAGTG ATTGCCGTGA ATGAGGTTGG ACCTAGCAAT
    GGAAGCAACC CGTCAGATCG TTATCGGACA CCTCCATCTG CTCCAACAAA GAATCCAGAA
    GAGGTGAAAG GGGAGGGCAC AGTACCAGAA AACATGAAAA TCTCCTGGAA GCCATTGAAA
    GGCATCGACT GGAATGGCCC TGACTTCAAA TATCTTGTAA AATGGAGGCG ACTTGGTAAA
    GATGATTGGA GGGAGGAGGT AGCAGAGAGC CCCCCAGTCA TTGTGACAGA GACAAGCACA
    TTTGAGCCTT ATGAGATCAT AGTCCAGTCA GTCAACGATC TGGGCAGGGC TTCTGAACCC
    AAACCTATAA TTGGCCACTC TGGGGAGGAC TTTCCTGACA TTAGCCCTGA GAATGTTGGC
    TTAGAGGCTA TGAACGAGAG TGCAATCAAG GTAGCATGGT TGCCTGTGCA GAAACAAGGG
    CTGAACGGTC ATTTAAAAGG ATTTATGGTA TACTACATTA GCCATAGCAG CCGGCACAGG
    CAGACCAAGG AGTTACGGGT CCATGGTAAC ACAACACATG CATTAATTAC TGGGCTAAAA
    CCTTTCAGTA ACTACTCAGT GGAAGTCGCC ATCATGAATG GAAAGGGACC TGGGGACCGT
    AGTGAGTCAC GCATGATACG CACTGATGAG GGAGTTCCAA GTCCACCTTC ATTTTTACAC
    CTGGAGCGCC AATCTGACAC ATCACTGACT CTCATATGGG GCCCACCGGA AACTCCCAAT
    GGAATTCTAA CAGGATACGA GATATATCAT CAGATAGTGA ACAAAACTCA CATGGGAGCA
    AAGTACTTCT CTGAAACTAT CAATGATCCC ACGCAGCAAA ATTGGACACT TTCAAATATC
    AGCTCCAAAG ACACGTACCG GTTCTATTTA TATGCCACAA CATCGGTGGG ACAGAGTGAA
    GCTGTTATGG TGGAAGGCAG CACTATGCAG GAGATAGAGG TTCCTCCCGT GCTGAATGTC
    AGTATCGAGA CTGGGGACAG TGTGGTCACT CTAAACTGGA TGCAGCTGGA GGGATCGAGT
    AACGCAGAGA TCAAAGTCGA GATCAGGAAC AAATCTAGTG AACACTTGTG GCACCACTAT
    GGTTCAGTGA ACACCACAGA CTCTACCTTC CAGCTGAGCG GCCTCCTCCC TGGCACTCCT
    TATTTCATAC GGCTTATGGC CCTTAATCAC ACTCAGCATG TTGAAATCTG GAGTAAAATG
    GTACAGACCA CCGGAATAGC TATTACCAAG GAACAGAGAG GATTTGCTAC TGAGGGCTGG
    TTTATTGGGC TGATAAGTGC CATTGTACTC CTACTGCTGA TCCTACTCAT TCTTTGCTTT
    ATTAAGCGCA GCAAAGGAGG AAAGTACTCT GTGAAAGATA AAGAAGATAC TCAAGTGGAC
    TCTGAAGCCC GGCCAATGAA GGATGAAACC TTTGGGGAAT ACAGTGAAAA TGATGAGAAG
    CCTTTCACTA GCAGCCAACC CTCCCTCAAT GGGGACATCA AGCAACTGGG TAGCGATGAC
    AGCCTGGCCG ACTATGGTGG TAGTGTGGAT GTCCAGTTTA ATGAAGATGG CTCGTTCATT
    GGCCAGTACA GTGGCAAAAA GGAGAAGGAG CCAGCAGGAG GCAATGAAAG CTCTGGAGCG
    ACCTCACCGG TCAACCCCAA CATTGCCAAT GAATAG

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

    RefSeq XP_018087316.1
    CDS274..4029
    Translation

    Target ORF information:

    RefSeq Version XM_018231827.1
    Organism Xenopus laevis(African clawed frog)
    Definition Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_018231827.1

    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
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TATGTAATGC AAGAAATAAT GTATCCACCA
    ACTATAACTG AACAGTCACC GGCAAAGTAC GTGGTATATC CCAATGATGA CATTGTGCTC
    AAGTGTGAAG CCAAGAGAAA TGCAAAAGTA AAATACACCT GGAAAAAGGA TGGGGAAACG
    TTTGCGCCAG AGGATGGCCC AAGTGTCAAT CGCAAGAAAG ATTCAGGATC TATAATCATC
    TCTAATGGGA ATGGGAACGC AATGAAGGAT TTTCAGGGCA AATATCGTTG CTATGCCACC
    AATGAACTGG GAACAGCCAT CTCACACGAG ATCCATGTAA TCACTGAGAG CACCCCAAAA
    TGGCAGAAGG AAATGATCCG TCCTATTGAG GTTGAAGAGG GTTCCTCATT GATATTACCG
    TGTAATCCAC CTAAAAGTGC CGTACCTCCA CGAGTCATCT GGATGAACAG CAGCTTATTG
    CACATCACAC AGGATAAGCG TGTGTCAATG GGCGTAAATG GAAACCTATA TTTCTCCAAT
    GTACAAAAGC AAGACGAACA TCCTGACTAC ATCTGTCATG CCCAGTTTGT TGGTGCACGT
    ACCATTGTGC AGAAGGAGGC GATATCTATC AAAGTCAGAC CCACAAATTC GGTGAAATTT
    CGAAGGCCGG AAATGATGTT ACCTGAAGGC TCCATGAGCA CTGTTCTGGC ATTAAGAGAC
    CAACCCTTGC AACTGGAGTG CATAGCCGAA GGCCTCCCTA CCCCAGAGAT TGAGTGGATT
    CCCCTCACTG GCTCCACTAC CAATGGTCAC ATTCAATATG ATGACTTTAA GAAAACCCTT
    CACATTGACA AGGTTCAAGA TGACGATGAT GGGGACTATC AGTGCACTGC CAAGAACACA
    CAAGGCACAG CCACACATAC CTTCACAGTG GTTGTTGAGT CTGCCCCTTA CTGGATTAAT
    AAACCAATGG ATGGAATCTA TGCACCGGGC GAGGATATCA TACTTCACTG TGAAGTTGGA
    GGGAAACCTA AACCTAAGGT CACATGGAAG ATAAACGGAG CATCTTTGAA AGACTCCGAT
    CTATATCACA ACTGGAAACT GAGCGAGGGA AGTTTGGTCT TAAACAATAT GCAACTCAAT
    GACACGTCTG TTGTTCAATG CGAGGCCCGC AACAAACATG GAAACCTCCT TGCCAATGCT
    TTTGTCTATG TTGTTGAGCT GCCCCCACAG ATCCTCACCA AAAATGATGA GCAGTACAGT
    GTAGTTGAAA AGACAAATGT TTCAATGGAC TGTAAGACTT TTGGAGCTCC AATGCCAAAG
    ATCCAATGGG ACAGAGATCA GGAAGACAAC CTGCTTGCTC TTGACCAGTT TTCCTTCCAC
    ACTAATGGGA CACTGACAAT AACAGGAGTG GTCAAGGAAC ATGAAGGAAT ATATTGGTGC
    ACTGCCAGCA ACAACCAGGG AAACGTTAAC ATCTCTGCCT ACTTAGATGT CAGAAATGCC
    ACTAAGATCA TTAGTCCCCC AACGGAGCAG AGAGCGAGAA AAGGTGGGAA AGCGATCTTC
    CAGTGCACGG TGGAATTTGA TCCCAAAATG AGTAGTAAAA TTATAGACTG GAAGAAAAAC
    GGCTTGGAAA TAAATGAAGA TCCCGACAAC GATAAATACT TTATTGAGGA TTACACCCTA
    AGTATTTCCA ATGTACAAGA GGGCGATCAG GGGATGTACA CCTGCTTGGC ACGCAGTGAA
    CTGGATTCTG TGGAACAGAC TGCCGAACTG GTGGTGATTG ATCTTCCTGA ATCTCCTTCT
    GATTTGGAGC TTTCTAACGC ACAAGAAACA AGTATAACAC TAACCTGGAC TCCAGGCAAT
    GAAAACAACA GTCCCATTGA GGAGTTCATT ATCGAGTTTG AGGAAGACAG CTTTGAACCA
    GGAGTATGGC ATGAACTCAC AAGGGTGGAC GGAGATATGG TTACTACTGA TCTGAATCTT
    TCTCCCTATG TCAACTATCA GTTCCGAGTG ATTGCCGTGA ATGAGGTTGG ACCTAGCAAT
    GGAAGCAACC CGTCAGATCG TTATCGGACA CCTCCATCTG CTCCAACAAA GAATCCAGAA
    GAGGTGAAAG GGGAGGGCAC AGTACCAGAA AACATGAAAA TCTCCTGGAA GCCATTGAAA
    GGCATCGACT GGAATGGCCC TGACTTCAAA TATCTTGTAA AATGGAGGCG ACTTGGTAAA
    GATGATTGGA GGGAGGAGGT AGCAGAGAGC CCCCCAGTCA TTGTGACAGA GACAAGCACA
    TTTGAGCCTT ATGAGATCAT AGTCCAGTCA GTCAACGATC TGGGCAGGGC TTCTGAACCC
    AAACCTATAA TTGGCCACTC TGGGGAGGAC TTTCCTGACA TTAGCCCTGA GAATGTTGGC
    TTAGAGGCTA TGAACGAGAG TGCAATCAAG GTAGCATGGT TGCCTGTGCA GAAACAAGGG
    CTGAACGGTC ATTTAAAAGG ATTTATGGTA TACTACATTA GCCATAGCAG CCGGCACAGG
    CAGACCAAGG AGTTACGGGT CCATGGTAAC ACAACACATG CATTAATTAC TGGGCTAAAA
    CCTTTCAGTA ACTACTCAGT GGAAGTCGCC ATCATGAATG GAAAGGGACC TGGGGACCGT
    AGTGAGTCAC GCATGATACG CACTGATGAG GGAGTTCCAA GTCCACCTTC ATTTTTACAC
    CTGGAGCGCC AATCTGACAC ATCACTGACT CTCATATGGG GCCCACCGGA AACTCCCAAT
    GGAATTCTAA CAGGATACGA GATATATCAT CAGATAGTGA ACAAAACTCA CATGGGAGCA
    AAGTACTTCT CTGAAACTAT CAATGATCCC ACGCAGCAAA ATTGGACACT TTCAAATATC
    AGCTCCAAAG ACACGTACCG GTTCTATTTA TATGCCACAA CATCGGTGGG ACAGAGTGAA
    GCTGTTATGG TGGAAGGCAG CACTATGCAG GAGATAGAGG TTCCTCCCGT GCTGAATGTC
    AGTATCGAGA CTGGGGACAG TGTGGTCACT CTAAACTGGA TGCAGCTGGA GGGATCGAGT
    AACGCAGAGA TCAAAGTCGA GATCAGGAAC AAATCTAGTG AACACTTGTG GCACCACTAT
    GGTTCAGTGA ACACCACAGA CTCTACCTTC CAGCTGAGCG GCCTCCTCCC TGGCACTCCT
    TATTTCATAC GGCTTATGGC CCTTAATCAC ACTCAGCATG TTGAAATCTG GAGTAAAATG
    GTACAGACCA CCGGAATAGC TATTACCAAG GAACAGAGAG GATTTGCTAC TGAGGGCTGG
    TTTATTGGGC TGATAAGTGC CATTGTACTC CTACTGCTGA TCCTACTCAT TCTTTGCTTT
    ATTAAGCGCA GCAAAGGAGG AAAGTACTCT GTGAAAGATA AAGAAGATAC TCAAGTGGAC
    TCTGAAGCCC GGCCAATGAA GGATGAAACC TTTGGGGAAT ACAGTGAAAA TGATGAGAAG
    CCTTTCACTA GCAGCCAACC CTCCCTCAAT GGGGACATCA AGCAACTGGG TAGCGATGAC
    AGCCTGGCCG ACTATGGTGG TAGTGTGGAT GTCCAGTTTA ATGAAGATGG CTCGTTCATT
    GGCCAGTACA GTGGCAAAAA GGAGAAGGAG CCAGCAGGAG GCAATGAAAG CTCTGGAGCG
    ACCTCACCGG TCAACCCCAA CATTGCCAAT GAATAG

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

    CloneID OAf43282
    Clone ID Related Accession (Same CDS sequence) XM_018231828.1
    Accession Version XM_018231828.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3753bp)
    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 2016-09-19
    Organism Xenopus laevis(African clawed frog)
    Product L1 cell adhesion molecule S homeolog isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030739.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Xenopus laevis Annotation Release 100 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
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TTAATGTATC CACCAACTAT AACTGAACAG
    TCACCGGCAA AGTACGTGGT ATATCCCAAT GATGACATTG TGCTCAAGTG TGAAGCCAAG
    AGAAATGCAA AAGTAAAATA CACCTGGAAA AAGGATGGGG AAACGTTTGC GCCAGAGGAT
    GGCCCAAGTG TCAATCGCAA GAAAGATTCA GGATCTATAA TCATCTCTAA TGGGAATGGG
    AACGCAATGA AGGATTTTCA GGGCAAATAT CGTTGCTATG CCACCAATGA ACTGGGAACA
    GCCATCTCAC ACGAGATCCA TGTAATCACT GAGAGCACCC CAAAATGGCA GAAGGAAATG
    ATCCGTCCTA TTGAGGTTGA AGAGGGTTCC TCATTGATAT TACCGTGTAA TCCACCTAAA
    AGTGCCGTAC CTCCACGAGT CATCTGGATG AACAGCAGCT TATTGCACAT CACACAGGAT
    AAGCGTGTGT CAATGGGCGT AAATGGAAAC CTATATTTCT CCAATGTACA AAAGCAAGAC
    GAACATCCTG ACTACATCTG TCATGCCCAG TTTGTTGGTG CACGTACCAT TGTGCAGAAG
    GAGGCGATAT CTATCAAAGT CAGACCCACA AATTCGGTGA AATTTCGAAG GCCGGAAATG
    ATGTTACCTG AAGGCTCCAT GAGCACTGTT CTGGCATTAA GAGACCAACC CTTGCAACTG
    GAGTGCATAG CCGAAGGCCT CCCTACCCCA GAGATTGAGT GGATTCCCCT CACTGGCTCC
    ACTACCAATG GTCACATTCA ATATGATGAC TTTAAGAAAA CCCTTCACAT TGACAAGGTT
    CAAGATGACG ATGATGGGGA CTATCAGTGC ACTGCCAAGA ACACACAAGG CACAGCCACA
    CATACCTTCA CAGTGGTTGT TGAGTCTGCC CCTTACTGGA TTAATAAACC AATGGATGGA
    ATCTATGCAC CGGGCGAGGA TATCATACTT CACTGTGAAG TTGGAGGGAA ACCTAAACCT
    AAGGTCACAT GGAAGATAAA CGGAGCATCT TTGAAAGACT CCGATCTATA TCACAACTGG
    AAACTGAGCG AGGGAAGTTT GGTCTTAAAC AATATGCAAC TCAATGACAC GTCTGTTGTT
    CAATGCGAGG CCCGCAACAA ACATGGAAAC CTCCTTGCCA ATGCTTTTGT CTATGTTGTT
    GAGCTGCCCC CACAGATCCT CACCAAAAAT GATGAGCAGT ACAGTGTAGT TGAAAAGACA
    AATGTTTCAA TGGACTGTAA GACTTTTGGA GCTCCAATGC CAAAGATCCA ATGGGACAGA
    GATCAGGAAG ACAACCTGCT TGCTCTTGAC CAGTTTTCCT TCCACACTAA TGGGACACTG
    ACAATAACAG GAGTGGTCAA GGAACATGAA GGAATATATT GGTGCACTGC CAGCAACAAC
    CAGGGAAACG TTAACATCTC TGCCTACTTA GATGTCAGAA ATGCCACTAA GATCATTAGT
    CCCCCAACGG AGCAGAGAGC GAGAAAAGGT GGGAAAGCGA TCTTCCAGTG CACGGTGGAA
    TTTGATCCCA AAATGAGTAG TAAAATTATA GACTGGAAGA AAAACGGCTT GGAAATAAAT
    GAAGATCCCG ACAACGATAA ATACTTTATT GAGGATTACA CCCTAAGTAT TTCCAATGTA
    CAAGAGGGCG ATCAGGGGAT GTACACCTGC TTGGCACGCA GTGAACTGGA TTCTGTGGAA
    CAGACTGCCG AACTGGTGGT GATTGATCTT CCTGAATCTC CTTCTGATTT GGAGCTTTCT
    AACGCACAAG AAACAAGTAT AACACTAACC TGGACTCCAG GCAATGAAAA CAACAGTCCC
    ATTGAGGAGT TCATTATCGA GTTTGAGGAA GACAGCTTTG AACCAGGAGT ATGGCATGAA
    CTCACAAGGG TGGACGGAGA TATGGTTACT ACTGATCTGA ATCTTTCTCC CTATGTCAAC
    TATCAGTTCC GAGTGATTGC CGTGAATGAG GTTGGACCTA GCAATGGAAG CAACCCGTCA
    GATCGTTATC GGACACCTCC ATCTGCTCCA ACAAAGAATC CAGAAGAGGT GAAAGGGGAG
    GGCACAGTAC CAGAAAACAT GAAAATCTCC TGGAAGCCAT TGAAAGGCAT CGACTGGAAT
    GGCCCTGACT TCAAATATCT TGTAAAATGG AGGCGACTTG GTAAAGATGA TTGGAGGGAG
    GAGGTAGCAG AGAGCCCCCC AGTCATTGTG ACAGAGACAA GCACATTTGA GCCTTATGAG
    ATCATAGTCC AGTCAGTCAA CGATCTGGGC AGGGCTTCTG AACCCAAACC TATAATTGGC
    CACTCTGGGG AGGACTTTCC TGACATTAGC CCTGAGAATG TTGGCTTAGA GGCTATGAAC
    GAGAGTGCAA TCAAGGTAGC ATGGTTGCCT GTGCAGAAAC AAGGGCTGAA CGGTCATTTA
    AAAGGATTTA TGGTATACTA CATTAGCCAT AGCAGCCGGC ACAGGCAGAC CAAGGAGTTA
    CGGGTCCATG GTAACACAAC ACATGCATTA ATTACTGGGC TAAAACCTTT CAGTAACTAC
    TCAGTGGAAG TCGCCATCAT GAATGGAAAG GGACCTGGGG ACCGTAGTGA GTCACGCATG
    ATACGCACTG ATGAGGGAGT TCCAAGTCCA CCTTCATTTT TACACCTGGA GCGCCAATCT
    GACACATCAC TGACTCTCAT ATGGGGCCCA CCGGAAACTC CCAATGGAAT TCTAACAGGA
    TACGAGATAT ATCATCAGAT AGTGAACAAA ACTCACATGG GAGCAAAGTA CTTCTCTGAA
    ACTATCAATG ATCCCACGCA GCAAAATTGG ACACTTTCAA ATATCAGCTC CAAAGACACG
    TACCGGTTCT ATTTATATGC CACAACATCG GTGGGACAGA GTGAAGCTGT TATGGTGGAA
    GGCAGCACTA TGCAGGAGAT AGAGGTTCCT CCCGTGCTGA ATGTCAGTAT CGAGACTGGG
    GACAGTGTGG TCACTCTAAA CTGGATGCAG CTGGAGGGAT CGAGTAACGC AGAGATCAAA
    GTCGAGATCA GGAACAAATC TAGTGAACAC TTGTGGCACC ACTATGGTTC AGTGAACACC
    ACAGACTCTA CCTTCCAGCT GAGCGGCCTC CTCCCTGGCA CTCCTTATTT CATACGGCTT
    ATGGCCCTTA ATCACACTCA GCATGTTGAA ATCTGGAGTA AAATGGTACA GACCACCGGA
    ATAGCTATTA CCAAGGAACA GAGAGGATTT GCTACTGAGG GCTGGTTTAT TGGGCTGATA
    AGTGCCATTG TACTCCTACT GCTGATCCTA CTCATTCTTT GCTTTATTAA GCGCAGCAAA
    GGAGGAAAGT ACTCTGTGAA AGATAAAGAA GATACTCAAG TGGACTCTGA AGCCCGGCCA
    ATGAAGGATG AAACCTTTGG GGAATACAGA TCTCTAGAAA GTGAAAATGA TGAGAAGCCT
    TTCACTAGCA GCCAACCCTC CCTCAATGGG GACATCAAGC AACTGGGTAG CGATGACAGC
    CTGGCCGACT ATGGTGGTAG TGTGGATGTC CAGTTTAATG AAGATGGCTC GTTCATTGGC
    CAGTACAGTG GCAAAAAGGA GAAGGAGCCA GCAGGAGGCA ATGAAAGCTC TGGAGCGACC
    TCACCGGTCA ACCCCAACAT TGCCAATGAA TAG

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

    RefSeq XP_018087317.1
    CDS239..3991
    Translation

    Target ORF information:

    RefSeq Version XM_018231828.1
    Organism Xenopus laevis(African clawed frog)
    Definition Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_018231828.1

    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
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TTAATGTATC CACCAACTAT AACTGAACAG
    TCACCGGCAA AGTACGTGGT ATATCCCAAT GATGACATTG TGCTCAAGTG TGAAGCCAAG
    AGAAATGCAA AAGTAAAATA CACCTGGAAA AAGGATGGGG AAACGTTTGC GCCAGAGGAT
    GGCCCAAGTG TCAATCGCAA GAAAGATTCA GGATCTATAA TCATCTCTAA TGGGAATGGG
    AACGCAATGA AGGATTTTCA GGGCAAATAT CGTTGCTATG CCACCAATGA ACTGGGAACA
    GCCATCTCAC ACGAGATCCA TGTAATCACT GAGAGCACCC CAAAATGGCA GAAGGAAATG
    ATCCGTCCTA TTGAGGTTGA AGAGGGTTCC TCATTGATAT TACCGTGTAA TCCACCTAAA
    AGTGCCGTAC CTCCACGAGT CATCTGGATG AACAGCAGCT TATTGCACAT CACACAGGAT
    AAGCGTGTGT CAATGGGCGT AAATGGAAAC CTATATTTCT CCAATGTACA AAAGCAAGAC
    GAACATCCTG ACTACATCTG TCATGCCCAG TTTGTTGGTG CACGTACCAT TGTGCAGAAG
    GAGGCGATAT CTATCAAAGT CAGACCCACA AATTCGGTGA AATTTCGAAG GCCGGAAATG
    ATGTTACCTG AAGGCTCCAT GAGCACTGTT CTGGCATTAA GAGACCAACC CTTGCAACTG
    GAGTGCATAG CCGAAGGCCT CCCTACCCCA GAGATTGAGT GGATTCCCCT CACTGGCTCC
    ACTACCAATG GTCACATTCA ATATGATGAC TTTAAGAAAA CCCTTCACAT TGACAAGGTT
    CAAGATGACG ATGATGGGGA CTATCAGTGC ACTGCCAAGA ACACACAAGG CACAGCCACA
    CATACCTTCA CAGTGGTTGT TGAGTCTGCC CCTTACTGGA TTAATAAACC AATGGATGGA
    ATCTATGCAC CGGGCGAGGA TATCATACTT CACTGTGAAG TTGGAGGGAA ACCTAAACCT
    AAGGTCACAT GGAAGATAAA CGGAGCATCT TTGAAAGACT CCGATCTATA TCACAACTGG
    AAACTGAGCG AGGGAAGTTT GGTCTTAAAC AATATGCAAC TCAATGACAC GTCTGTTGTT
    CAATGCGAGG CCCGCAACAA ACATGGAAAC CTCCTTGCCA ATGCTTTTGT CTATGTTGTT
    GAGCTGCCCC CACAGATCCT CACCAAAAAT GATGAGCAGT ACAGTGTAGT TGAAAAGACA
    AATGTTTCAA TGGACTGTAA GACTTTTGGA GCTCCAATGC CAAAGATCCA ATGGGACAGA
    GATCAGGAAG ACAACCTGCT TGCTCTTGAC CAGTTTTCCT TCCACACTAA TGGGACACTG
    ACAATAACAG GAGTGGTCAA GGAACATGAA GGAATATATT GGTGCACTGC CAGCAACAAC
    CAGGGAAACG TTAACATCTC TGCCTACTTA GATGTCAGAA ATGCCACTAA GATCATTAGT
    CCCCCAACGG AGCAGAGAGC GAGAAAAGGT GGGAAAGCGA TCTTCCAGTG CACGGTGGAA
    TTTGATCCCA AAATGAGTAG TAAAATTATA GACTGGAAGA AAAACGGCTT GGAAATAAAT
    GAAGATCCCG ACAACGATAA ATACTTTATT GAGGATTACA CCCTAAGTAT TTCCAATGTA
    CAAGAGGGCG ATCAGGGGAT GTACACCTGC TTGGCACGCA GTGAACTGGA TTCTGTGGAA
    CAGACTGCCG AACTGGTGGT GATTGATCTT CCTGAATCTC CTTCTGATTT GGAGCTTTCT
    AACGCACAAG AAACAAGTAT AACACTAACC TGGACTCCAG GCAATGAAAA CAACAGTCCC
    ATTGAGGAGT TCATTATCGA GTTTGAGGAA GACAGCTTTG AACCAGGAGT ATGGCATGAA
    CTCACAAGGG TGGACGGAGA TATGGTTACT ACTGATCTGA ATCTTTCTCC CTATGTCAAC
    TATCAGTTCC GAGTGATTGC CGTGAATGAG GTTGGACCTA GCAATGGAAG CAACCCGTCA
    GATCGTTATC GGACACCTCC ATCTGCTCCA ACAAAGAATC CAGAAGAGGT GAAAGGGGAG
    GGCACAGTAC CAGAAAACAT GAAAATCTCC TGGAAGCCAT TGAAAGGCAT CGACTGGAAT
    GGCCCTGACT TCAAATATCT TGTAAAATGG AGGCGACTTG GTAAAGATGA TTGGAGGGAG
    GAGGTAGCAG AGAGCCCCCC AGTCATTGTG ACAGAGACAA GCACATTTGA GCCTTATGAG
    ATCATAGTCC AGTCAGTCAA CGATCTGGGC AGGGCTTCTG AACCCAAACC TATAATTGGC
    CACTCTGGGG AGGACTTTCC TGACATTAGC CCTGAGAATG TTGGCTTAGA GGCTATGAAC
    GAGAGTGCAA TCAAGGTAGC ATGGTTGCCT GTGCAGAAAC AAGGGCTGAA CGGTCATTTA
    AAAGGATTTA TGGTATACTA CATTAGCCAT AGCAGCCGGC ACAGGCAGAC CAAGGAGTTA
    CGGGTCCATG GTAACACAAC ACATGCATTA ATTACTGGGC TAAAACCTTT CAGTAACTAC
    TCAGTGGAAG TCGCCATCAT GAATGGAAAG GGACCTGGGG ACCGTAGTGA GTCACGCATG
    ATACGCACTG ATGAGGGAGT TCCAAGTCCA CCTTCATTTT TACACCTGGA GCGCCAATCT
    GACACATCAC TGACTCTCAT ATGGGGCCCA CCGGAAACTC CCAATGGAAT TCTAACAGGA
    TACGAGATAT ATCATCAGAT AGTGAACAAA ACTCACATGG GAGCAAAGTA CTTCTCTGAA
    ACTATCAATG ATCCCACGCA GCAAAATTGG ACACTTTCAA ATATCAGCTC CAAAGACACG
    TACCGGTTCT ATTTATATGC CACAACATCG GTGGGACAGA GTGAAGCTGT TATGGTGGAA
    GGCAGCACTA TGCAGGAGAT AGAGGTTCCT CCCGTGCTGA ATGTCAGTAT CGAGACTGGG
    GACAGTGTGG TCACTCTAAA CTGGATGCAG CTGGAGGGAT CGAGTAACGC AGAGATCAAA
    GTCGAGATCA GGAACAAATC TAGTGAACAC TTGTGGCACC ACTATGGTTC AGTGAACACC
    ACAGACTCTA CCTTCCAGCT GAGCGGCCTC CTCCCTGGCA CTCCTTATTT CATACGGCTT
    ATGGCCCTTA ATCACACTCA GCATGTTGAA ATCTGGAGTA AAATGGTACA GACCACCGGA
    ATAGCTATTA CCAAGGAACA GAGAGGATTT GCTACTGAGG GCTGGTTTAT TGGGCTGATA
    AGTGCCATTG TACTCCTACT GCTGATCCTA CTCATTCTTT GCTTTATTAA GCGCAGCAAA
    GGAGGAAAGT ACTCTGTGAA AGATAAAGAA GATACTCAAG TGGACTCTGA AGCCCGGCCA
    ATGAAGGATG AAACCTTTGG GGAATACAGA TCTCTAGAAA GTGAAAATGA TGAGAAGCCT
    TTCACTAGCA GCCAACCCTC CCTCAATGGG GACATCAAGC AACTGGGTAG CGATGACAGC
    CTGGCCGACT ATGGTGGTAG TGTGGATGTC CAGTTTAATG AAGATGGCTC GTTCATTGGC
    CAGTACAGTG GCAAAAAGGA GAAGGAGCCA GCAGGAGGCA ATGAAAGCTC TGGAGCGACC
    TCACCGGTCA ACCCCAACAT TGCCAATGAA TAG

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

    CloneID OAf43283
    Clone ID Related Accession (Same CDS sequence) XM_018231829.1
    Accession Version XM_018231829.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3741bp)
    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 2016-09-19
    Organism Xenopus laevis(African clawed frog)
    Product L1 cell adhesion molecule S homeolog isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030739.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Xenopus laevis Annotation Release 100 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
    3541
    3601
    3661
    3721
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TTAATGTATC CACCAACTAT AACTGAACAG
    TCACCGGCAA AGTACGTGGT ATATCCCAAT GATGACATTG TGCTCAAGTG TGAAGCCAAG
    AGAAATGCAA AAGTAAAATA CACCTGGAAA AAGGATGGGG AAACGTTTGC GCCAGAGGAT
    GGCCCAAGTG TCAATCGCAA GAAAGATTCA GGATCTATAA TCATCTCTAA TGGGAATGGG
    AACGCAATGA AGGATTTTCA GGGCAAATAT CGTTGCTATG CCACCAATGA ACTGGGAACA
    GCCATCTCAC ACGAGATCCA TGTAATCACT GAGAGCACCC CAAAATGGCA GAAGGAAATG
    ATCCGTCCTA TTGAGGTTGA AGAGGGTTCC TCATTGATAT TACCGTGTAA TCCACCTAAA
    AGTGCCGTAC CTCCACGAGT CATCTGGATG AACAGCAGCT TATTGCACAT CACACAGGAT
    AAGCGTGTGT CAATGGGCGT AAATGGAAAC CTATATTTCT CCAATGTACA AAAGCAAGAC
    GAACATCCTG ACTACATCTG TCATGCCCAG TTTGTTGGTG CACGTACCAT TGTGCAGAAG
    GAGGCGATAT CTATCAAAGT CAGACCCACA AATTCGGTGA AATTTCGAAG GCCGGAAATG
    ATGTTACCTG AAGGCTCCAT GAGCACTGTT CTGGCATTAA GAGACCAACC CTTGCAACTG
    GAGTGCATAG CCGAAGGCCT CCCTACCCCA GAGATTGAGT GGATTCCCCT CACTGGCTCC
    ACTACCAATG GTCACATTCA ATATGATGAC TTTAAGAAAA CCCTTCACAT TGACAAGGTT
    CAAGATGACG ATGATGGGGA CTATCAGTGC ACTGCCAAGA ACACACAAGG CACAGCCACA
    CATACCTTCA CAGTGGTTGT TGAGTCTGCC CCTTACTGGA TTAATAAACC AATGGATGGA
    ATCTATGCAC CGGGCGAGGA TATCATACTT CACTGTGAAG TTGGAGGGAA ACCTAAACCT
    AAGGTCACAT GGAAGATAAA CGGAGCATCT TTGAAAGACT CCGATCTATA TCACAACTGG
    AAACTGAGCG AGGGAAGTTT GGTCTTAAAC AATATGCAAC TCAATGACAC GTCTGTTGTT
    CAATGCGAGG CCCGCAACAA ACATGGAAAC CTCCTTGCCA ATGCTTTTGT CTATGTTGTT
    GAGCTGCCCC CACAGATCCT CACCAAAAAT GATGAGCAGT ACAGTGTAGT TGAAAAGACA
    AATGTTTCAA TGGACTGTAA GACTTTTGGA GCTCCAATGC CAAAGATCCA ATGGGACAGA
    GATCAGGAAG ACAACCTGCT TGCTCTTGAC CAGTTTTCCT TCCACACTAA TGGGACACTG
    ACAATAACAG GAGTGGTCAA GGAACATGAA GGAATATATT GGTGCACTGC CAGCAACAAC
    CAGGGAAACG TTAACATCTC TGCCTACTTA GATGTCAGAA ATGCCACTAA GATCATTAGT
    CCCCCAACGG AGCAGAGAGC GAGAAAAGGT GGGAAAGCGA TCTTCCAGTG CACGGTGGAA
    TTTGATCCCA AAATGAGTAG TAAAATTATA GACTGGAAGA AAAACGGCTT GGAAATAAAT
    GAAGATCCCG ACAACGATAA ATACTTTATT GAGGATTACA CCCTAAGTAT TTCCAATGTA
    CAAGAGGGCG ATCAGGGGAT GTACACCTGC TTGGCACGCA GTGAACTGGA TTCTGTGGAA
    CAGACTGCCG AACTGGTGGT GATTGATCTT CCTGAATCTC CTTCTGATTT GGAGCTTTCT
    AACGCACAAG AAACAAGTAT AACACTAACC TGGACTCCAG GCAATGAAAA CAACAGTCCC
    ATTGAGGAGT TCATTATCGA GTTTGAGGAA GACAGCTTTG AACCAGGAGT ATGGCATGAA
    CTCACAAGGG TGGACGGAGA TATGGTTACT ACTGATCTGA ATCTTTCTCC CTATGTCAAC
    TATCAGTTCC GAGTGATTGC CGTGAATGAG GTTGGACCTA GCAATGGAAG CAACCCGTCA
    GATCGTTATC GGACACCTCC ATCTGCTCCA ACAAAGAATC CAGAAGAGGT GAAAGGGGAG
    GGCACAGTAC CAGAAAACAT GAAAATCTCC TGGAAGCCAT TGAAAGGCAT CGACTGGAAT
    GGCCCTGACT TCAAATATCT TGTAAAATGG AGGCGACTTG GTAAAGATGA TTGGAGGGAG
    GAGGTAGCAG AGAGCCCCCC AGTCATTGTG ACAGAGACAA GCACATTTGA GCCTTATGAG
    ATCATAGTCC AGTCAGTCAA CGATCTGGGC AGGGCTTCTG AACCCAAACC TATAATTGGC
    CACTCTGGGG AGGACTTTCC TGACATTAGC CCTGAGAATG TTGGCTTAGA GGCTATGAAC
    GAGAGTGCAA TCAAGGTAGC ATGGTTGCCT GTGCAGAAAC AAGGGCTGAA CGGTCATTTA
    AAAGGATTTA TGGTATACTA CATTAGCCAT AGCAGCCGGC ACAGGCAGAC CAAGGAGTTA
    CGGGTCCATG GTAACACAAC ACATGCATTA ATTACTGGGC TAAAACCTTT CAGTAACTAC
    TCAGTGGAAG TCGCCATCAT GAATGGAAAG GGACCTGGGG ACCGTAGTGA GTCACGCATG
    ATACGCACTG ATGAGGGAGT TCCAAGTCCA CCTTCATTTT TACACCTGGA GCGCCAATCT
    GACACATCAC TGACTCTCAT ATGGGGCCCA CCGGAAACTC CCAATGGAAT TCTAACAGGA
    TACGAGATAT ATCATCAGAT AGTGAACAAA ACTCACATGG GAGCAAAGTA CTTCTCTGAA
    ACTATCAATG ATCCCACGCA GCAAAATTGG ACACTTTCAA ATATCAGCTC CAAAGACACG
    TACCGGTTCT ATTTATATGC CACAACATCG GTGGGACAGA GTGAAGCTGT TATGGTGGAA
    GGCAGCACTA TGCAGGAGAT AGAGGTTCCT CCCGTGCTGA ATGTCAGTAT CGAGACTGGG
    GACAGTGTGG TCACTCTAAA CTGGATGCAG CTGGAGGGAT CGAGTAACGC AGAGATCAAA
    GTCGAGATCA GGAACAAATC TAGTGAACAC TTGTGGCACC ACTATGGTTC AGTGAACACC
    ACAGACTCTA CCTTCCAGCT GAGCGGCCTC CTCCCTGGCA CTCCTTATTT CATACGGCTT
    ATGGCCCTTA ATCACACTCA GCATGTTGAA ATCTGGAGTA AAATGGTACA GACCACCGGA
    ATAGCTATTA CCAAGGAACA GAGAGGATTT GCTACTGAGG GCTGGTTTAT TGGGCTGATA
    AGTGCCATTG TACTCCTACT GCTGATCCTA CTCATTCTTT GCTTTATTAA GCGCAGCAAA
    GGAGGAAAGT ACTCTGTGAA AGATAAAGAA GATACTCAAG TGGACTCTGA AGCCCGGCCA
    ATGAAGGATG AAACCTTTGG GGAATACAGT GAAAATGATG AGAAGCCTTT CACTAGCAGC
    CAACCCTCCC TCAATGGGGA CATCAAGCAA CTGGGTAGCG ATGACAGCCT GGCCGACTAT
    GGTGGTAGTG TGGATGTCCA GTTTAATGAA GATGGCTCGT TCATTGGCCA GTACAGTGGC
    AAAAAGGAGA AGGAGCCAGC AGGAGGCAAT GAAAGCTCTG GAGCGACCTC ACCGGTCAAC
    CCCAACATTG CCAATGAATA G

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

    RefSeq XP_018087318.1
    CDS240..3980
    Translation

    Target ORF information:

    RefSeq Version XM_018231829.1
    Organism Xenopus laevis(African clawed frog)
    Definition Xenopus laevis L1 cell adhesion molecule S homeolog (l1cam.S), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_018231829.1

    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
    ATGGCTCTGA GATGGGGACC TTGCCTTCTG GGGACAGTGC TTGTCTCTTT GCTCTGCAGC 
    CACATGGAGG CCTTTCAGAT GCCTAAAGAA TTAATGTATC CACCAACTAT AACTGAACAG
    TCACCGGCAA AGTACGTGGT ATATCCCAAT GATGACATTG TGCTCAAGTG TGAAGCCAAG
    AGAAATGCAA AAGTAAAATA CACCTGGAAA AAGGATGGGG AAACGTTTGC GCCAGAGGAT
    GGCCCAAGTG TCAATCGCAA GAAAGATTCA GGATCTATAA TCATCTCTAA TGGGAATGGG
    AACGCAATGA AGGATTTTCA GGGCAAATAT CGTTGCTATG CCACCAATGA ACTGGGAACA
    GCCATCTCAC ACGAGATCCA TGTAATCACT GAGAGCACCC CAAAATGGCA GAAGGAAATG
    ATCCGTCCTA TTGAGGTTGA AGAGGGTTCC TCATTGATAT TACCGTGTAA TCCACCTAAA
    AGTGCCGTAC CTCCACGAGT CATCTGGATG AACAGCAGCT TATTGCACAT CACACAGGAT
    AAGCGTGTGT CAATGGGCGT AAATGGAAAC CTATATTTCT CCAATGTACA AAAGCAAGAC
    GAACATCCTG ACTACATCTG TCATGCCCAG TTTGTTGGTG CACGTACCAT TGTGCAGAAG
    GAGGCGATAT CTATCAAAGT CAGACCCACA AATTCGGTGA AATTTCGAAG GCCGGAAATG
    ATGTTACCTG AAGGCTCCAT GAGCACTGTT CTGGCATTAA GAGACCAACC CTTGCAACTG
    GAGTGCATAG CCGAAGGCCT CCCTACCCCA GAGATTGAGT GGATTCCCCT CACTGGCTCC
    ACTACCAATG GTCACATTCA ATATGATGAC TTTAAGAAAA CCCTTCACAT TGACAAGGTT
    CAAGATGACG ATGATGGGGA CTATCAGTGC ACTGCCAAGA ACACACAAGG CACAGCCACA
    CATACCTTCA CAGTGGTTGT TGAGTCTGCC CCTTACTGGA TTAATAAACC AATGGATGGA
    ATCTATGCAC CGGGCGAGGA TATCATACTT CACTGTGAAG TTGGAGGGAA ACCTAAACCT
    AAGGTCACAT GGAAGATAAA CGGAGCATCT TTGAAAGACT CCGATCTATA TCACAACTGG
    AAACTGAGCG AGGGAAGTTT GGTCTTAAAC AATATGCAAC TCAATGACAC GTCTGTTGTT
    CAATGCGAGG CCCGCAACAA ACATGGAAAC CTCCTTGCCA ATGCTTTTGT CTATGTTGTT
    GAGCTGCCCC CACAGATCCT CACCAAAAAT GATGAGCAGT ACAGTGTAGT TGAAAAGACA
    AATGTTTCAA TGGACTGTAA GACTTTTGGA GCTCCAATGC CAAAGATCCA ATGGGACAGA
    GATCAGGAAG ACAACCTGCT TGCTCTTGAC CAGTTTTCCT TCCACACTAA TGGGACACTG
    ACAATAACAG GAGTGGTCAA GGAACATGAA GGAATATATT GGTGCACTGC CAGCAACAAC
    CAGGGAAACG TTAACATCTC TGCCTACTTA GATGTCAGAA ATGCCACTAA GATCATTAGT
    CCCCCAACGG AGCAGAGAGC GAGAAAAGGT GGGAAAGCGA TCTTCCAGTG CACGGTGGAA
    TTTGATCCCA AAATGAGTAG TAAAATTATA GACTGGAAGA AAAACGGCTT GGAAATAAAT
    GAAGATCCCG ACAACGATAA ATACTTTATT GAGGATTACA CCCTAAGTAT TTCCAATGTA
    CAAGAGGGCG ATCAGGGGAT GTACACCTGC TTGGCACGCA GTGAACTGGA TTCTGTGGAA
    CAGACTGCCG AACTGGTGGT GATTGATCTT CCTGAATCTC CTTCTGATTT GGAGCTTTCT
    AACGCACAAG AAACAAGTAT AACACTAACC TGGACTCCAG GCAATGAAAA CAACAGTCCC
    ATTGAGGAGT TCATTATCGA GTTTGAGGAA GACAGCTTTG AACCAGGAGT ATGGCATGAA
    CTCACAAGGG TGGACGGAGA TATGGTTACT ACTGATCTGA ATCTTTCTCC CTATGTCAAC
    TATCAGTTCC GAGTGATTGC CGTGAATGAG GTTGGACCTA GCAATGGAAG CAACCCGTCA
    GATCGTTATC GGACACCTCC ATCTGCTCCA ACAAAGAATC CAGAAGAGGT GAAAGGGGAG
    GGCACAGTAC CAGAAAACAT GAAAATCTCC TGGAAGCCAT TGAAAGGCAT CGACTGGAAT
    GGCCCTGACT TCAAATATCT TGTAAAATGG AGGCGACTTG GTAAAGATGA TTGGAGGGAG
    GAGGTAGCAG AGAGCCCCCC AGTCATTGTG ACAGAGACAA GCACATTTGA GCCTTATGAG
    ATCATAGTCC AGTCAGTCAA CGATCTGGGC AGGGCTTCTG AACCCAAACC TATAATTGGC
    CACTCTGGGG AGGACTTTCC TGACATTAGC CCTGAGAATG TTGGCTTAGA GGCTATGAAC
    GAGAGTGCAA TCAAGGTAGC ATGGTTGCCT GTGCAGAAAC AAGGGCTGAA CGGTCATTTA
    AAAGGATTTA TGGTATACTA CATTAGCCAT AGCAGCCGGC ACAGGCAGAC CAAGGAGTTA
    CGGGTCCATG GTAACACAAC ACATGCATTA ATTACTGGGC TAAAACCTTT CAGTAACTAC
    TCAGTGGAAG TCGCCATCAT GAATGGAAAG GGACCTGGGG ACCGTAGTGA GTCACGCATG
    ATACGCACTG ATGAGGGAGT TCCAAGTCCA CCTTCATTTT TACACCTGGA GCGCCAATCT
    GACACATCAC TGACTCTCAT ATGGGGCCCA CCGGAAACTC CCAATGGAAT TCTAACAGGA
    TACGAGATAT ATCATCAGAT AGTGAACAAA ACTCACATGG GAGCAAAGTA CTTCTCTGAA
    ACTATCAATG ATCCCACGCA GCAAAATTGG ACACTTTCAA ATATCAGCTC CAAAGACACG
    TACCGGTTCT ATTTATATGC CACAACATCG GTGGGACAGA GTGAAGCTGT TATGGTGGAA
    GGCAGCACTA TGCAGGAGAT AGAGGTTCCT CCCGTGCTGA ATGTCAGTAT CGAGACTGGG
    GACAGTGTGG TCACTCTAAA CTGGATGCAG CTGGAGGGAT CGAGTAACGC AGAGATCAAA
    GTCGAGATCA GGAACAAATC TAGTGAACAC TTGTGGCACC ACTATGGTTC AGTGAACACC
    ACAGACTCTA CCTTCCAGCT GAGCGGCCTC CTCCCTGGCA CTCCTTATTT CATACGGCTT
    ATGGCCCTTA ATCACACTCA GCATGTTGAA ATCTGGAGTA AAATGGTACA GACCACCGGA
    ATAGCTATTA CCAAGGAACA GAGAGGATTT GCTACTGAGG GCTGGTTTAT TGGGCTGATA
    AGTGCCATTG TACTCCTACT GCTGATCCTA CTCATTCTTT GCTTTATTAA GCGCAGCAAA
    GGAGGAAAGT ACTCTGTGAA AGATAAAGAA GATACTCAAG TGGACTCTGA AGCCCGGCCA
    ATGAAGGATG AAACCTTTGG GGAATACAGT GAAAATGATG AGAAGCCTTT CACTAGCAGC
    CAACCCTCCC TCAATGGGGA CATCAAGCAA CTGGGTAGCG ATGACAGCCT GGCCGACTAT
    GGTGGTAGTG TGGATGTCCA GTTTAATGAA GATGGCTCGT TCATTGGCCA GTACAGTGGC
    AAAAAGGAGA AGGAGCCAGC AGGAGGCAAT GAAAGCTCTG GAGCGACCTC ACCGGTCAAC
    CCCAACATTG CCAATGAATA G

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