L1CAM cDNA ORF clone, Pteropus alecto(black flying fox)

The following L1CAM gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the L1CAM 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
OPt18669 XM_015592069.2
Latest version!
Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OPt18670 XM_006915291.3
Latest version!
Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
View Old Accession Versions >>
OPt18669 XM_015592069.1 Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OPt18670 XM_006915291.2 Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
Hide Old Accession Versions >>

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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 OPt18669
    Clone ID Related Accession (Same CDS sequence) XM_015592069.2 , XM_015592069.1
    Accession Version XM_015592069.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3762bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2018-05-06
    Organism Pteropus alecto(black flying fox)
    Product neural cell adhesion molecule L1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006438082.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On May 7, 2018 this sequence version replaced XM_015592069.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Pteropus alecto Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATATGA AGGATACCAT GTGATGGAGC CACCTGTCAT CACGGATCAG
    TCTCCACGGC GCCTGGTTGT CTTCCCCACA GATGACATAA GCCTCAAGTG TGAGGCCACC
    GGCAAACCCG AAGTGCAGTT CCGCTGGACT CGAGATGGTG TCCACTTCAA ACCCAAGGAG
    GAGCTGGGTG TGACCGTGCA CCAGGCGCCC CGCTCCGGCT CCTTCACCAT CACCGGCAAC
    AACAGCAACT TTGCCCAGAG GTTCCAGGGC ACCTATCGCT GCTTTGCCAG CAATAAGCTG
    GGCACCGCCA TGTCCCATGA GATCCAGCTC ATGGCCGAGG GTGCCCCCAA GTGGCCAAAG
    GAGACCGTAA AACCTGTCGA GGTAGAGGAA GGGGAGTCAG TGATTCTGCC TTGCCACCCT
    CCACCCAGCG CAGAGCCTCT CCGGATCTAC TGGATGAACA GCAAGATCTT GCATATAAAA
    CAGGACGAGC GGGTGACGAT GGGCCAGAAT GGCAACCTCT ACTTTGCCAA CGTGCTCACC
    TCGGACAATC ACTCAGACTA CATCTGCCAC GCCCACTTCC CTGGCACCCG GACCATCATT
    CAAAAGGAAC CCATTGACCT CCGGGTCAAG GCCACCAACA GCATGATCGA CAGGAAGCCA
    CGCCTGCTCT TTCCCACCAA TGCCAGCAGC CACCTGGTGG CCCTGCAGGG GCAGCCGTTG
    GTCCTGGAGT GCATCGCTGA GGGCTTCCCC ACGCCCACCA TCAAGTGGCT TCGCCCAAGT
    GGCCACATGC CAGCCGACCG AGTCACCTAC CAGAACCACA ACAAGACCCT GCACCTGCTG
    GATATGGGCG AAGAGGACGA CGGCGAGTAC CGCTGCCTGG CTGAGAACTC ACTAGGCAGT
    GACCGGCACA CTTACTACGT CACCGTGGAG GCTGCCCCGT ACTGGCTGCA CAAGCCCCAG
    AGCCATCTGT ATGGGCCAGG GGAAACTGCC CGCCTGGACT GCCAAGTGCA GGGCAGGCCC
    AAACCAGAAG TCACCTGGAG AATCAATGGG ATCCCTGTGG AGGAGCTGGG CAAGGACCAG
    AAGTACCGGA TCCAGCATGG AGCCCTGACC CTGAGCAATG TGCAGCCCAG CGACACGATG
    GTCACCCAGT GCGAGGCCCG CAACCGGCAT GGGGTCCTGC TGGCCAATGC CTACATCTAT
    GTTGTCCAGC TACCAGCCAA GATCCTGACC CCAGACAATG AGACCTACTT GGCGGTCGAG
    GGCAGCACTG CCTACCTTCT GTGCAAGGCC TTCGGAGCCC CTGTGCCCGG CGTCCAGTGG
    CTGGACAAGG AAGGAAAGAC CGTGCTGCAG GACGAACGCT TCTTCCCCTA CACCAATGGG
    ACCCTGGGCA TCCGGGACCT CCAGGCCAAT GACACCGGAC ACTACTACTG CCAGGCTGCT
    AATGACCAAA ACAACGTAAC CATTGTGGCG AACCTGCAGG TCAAAGATGC CACTCAGATC
    ACACAGGGAC CCCAGAACGC AATCGAGAAG AAAGGCTCAA GAGTGACATT CACGTGCCAG
    GCCTCCTTCG ACCCCTCCTT GCAGCGCAGC ATCACCTGGC GCAGGGATGG CCGAAACCTC
    CAGGAGCTTG GGGATAGTGA CAAGTACTTC ATAGAGGACG GGCGCCTGGT CATTCACAGC
    TTGGACTACA GTGACCAAGG CAACTACAGC TGTGTGGCCA GCACCAAGCT GGATGTGGTG
    GAAAGCAAGG CGGAGCTCCT GGTGGTGGGG AGCCCTGGGC CAGTGCCTCA GTTGGAGCTG
    TCCGGTCGTC ACCTGCTGAA GCAGAGCCAG GTGCACCTGT CTTGGAGTCC CGCTGACGAC
    CACAACTCCC CCATTGAGAA GTATGACATT GAATTTGAAG ACAAGGAGAT GGCACCTGAG
    AAATGGTACA GTCTGGGCAA GGTGCCTGGA AACCAGACCT CCACCACCCT CAAGCTCTCA
    CCCTATGTCC ACTACACCTT TAGAGTTACT GCCATCAACA AATACGGCCC CGGGGAGCCC
    AGCCCGGCTT CTGAGACTGT GGTCACACCT GAGGCAGCCC CGGAGAAGAA CCCCGTGGAC
    GTGAGGGGGG AAGGCAATGA GACCAACAAC ATGGTCATCA CTTGGAAGCC GCTCAGGTGG
    ATGGACTGGA ATGCCCCCCA TGTTCAGTAT CGCGTGCAGT GGCGCCCTCA GGGGCTGCGG
    GGCGCCTGGC AGGAACAGAT CGTGAATGAC CCCTTCCTAG TGGTGTCCAA CACGTCCACC
    TTTGTACCCT ATGAGATCAA GGTCCAGGCC ATCAACAGCC AGGGCAAAGG CCCCGAGCCC
    CAGGTCACCA TTGGCTACTC TGGAGAAGAC TACCCCCAGG CAAGCCCTCA GCTGGAAGAC
    GTCAAGATCC TCAACTCGAG CACCGTGCTG GTCAAGTGGT GGCCCTTGGA CCCAGCCCAG
    GTCAAGGGTC ACCTCCGCGG ATATAATGTG ACATACTGGT GGGAGGGCAG TCAGAGGAAG
    CACAGCAAGA GGCATGTCCA CAAAGGCCAC GTGGTGGTGC CTGCCAACAC CACCAGCACC
    ATCCTGGGAG GCCTGCGGCC CTACAGCTCC TACCATCTGG AGGTGCAGGC TTTTAATGGC
    CGGGGCCTGG GACCCGCCAG CAAGATGACC TTCAGCACCC CAGAGGGCGT GCCCGGCCAC
    CCTGAGGCAT TGCACCTGGA GTGCCAGTCG AACACCAGTC TGCTGCTGCA CTGGCAGCCT
    CCGCTCAGTC ACAATGGCGT GCTCACTGGC TACGTGCTCT CTTACCACTC ACTGGATGAT
    GGGGTCATGG AGCAGTTGTC CTTCAACCTT TCGGACCCTG AGCTGCGGAT GCACAACCTG
    ACCAACCTCA GCCCCCACCT GAGGTACCGC TTCCAGCTTC AGGCCACCAC TAAGGAGGGC
    CCTGGTGAGG CCATTGTGCA AGAAGGAGGC ACGATGGCCT TATCTGGGAC TCTGGATTTT
    GGCAATATCT CGGCCATGGC TGGAGAGAAT TACAGCGTGG TCTCCTGGGT CCCCAAGGAG
    GGCCAGTGCA ACTTTGGGTT CCAGATCTCG TTCAAAGCCC GGGGAGAAGA GAAGATGGGT
    GCTTATCTAC CGCCACAGTA CGTCAGCTAC AACCAGAGGT CCTACACGCA GTGGGACTTG
    CAGCCTGATA CCGACTACGA CATCTGTCTA CTCAAGAACA CGGTGCTCCT ACACCAGATG
    GCTGTGAAGA CGAACGGCAC TGGCCGAATG AGACTCCCTC CTCCTGGCTT TGCCACTGAG
    GGCTGGTTTA TCGGCTTCAT CAGCGCCATC ATTCTCTTGC TCCTCATCTT GCTCATCCTC
    TGCTTTATCA AGCGCAGCAA GGGTGGCAAG TACTCAGTGA AGGATAAAGA GGACACCCAG
    GTGGACTCCG AGGCCCGGCC GATGAAGGAC GAGACCTTTG GCGAGTACAG CGACAACGAG
    GAGAAGGCCT TCGGCAGCAG CCAGCCATCC CTCAATGGAG ACATCAAGCC CCTGGGCAGC
    GACGACAGCC TGGCTGACTA TGGGGGCAGC GTGGACGTCC AGTTCAACGA GGACGGCTCT
    TTCATTGGCC AGTACAGCGG CAAGAAGGAG AAGGAGGCGG CAGGAGGCAA CGACAGCTCA
    GGGGCTGCCT CCCCCATCAA CCCTGCAGGG ACCCTGGAGT AG

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

    RefSeq XP_015447555.1
    CDS106..3867
    Translation

    Target ORF information:

    RefSeq Version XM_015592069.2
    Organism Pteropus alecto(black flying fox)
    Definition Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015592069.2

    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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATATGA AGGATACCAT GTGATGGAGC CACCTGTCAT CACGGATCAG
    TCTCCACGGC GCCTGGTTGT CTTCCCCACA GATGACATAA GCCTCAAGTG TGAGGCCACC
    GGCAAACCCG AAGTGCAGTT CCGCTGGACT CGAGATGGTG TCCACTTCAA ACCCAAGGAG
    GAGCTGGGTG TGACCGTGCA CCAGGCGCCC CGCTCCGGCT CCTTCACCAT CACCGGCAAC
    AACAGCAACT TTGCCCAGAG GTTCCAGGGC ACCTATCGCT GCTTTGCCAG CAATAAGCTG
    GGCACCGCCA TGTCCCATGA GATCCAGCTC ATGGCCGAGG GTGCCCCCAA GTGGCCAAAG
    GAGACCGTAA AACCTGTCGA GGTAGAGGAA GGGGAGTCAG TGATTCTGCC TTGCCACCCT
    CCACCCAGCG CAGAGCCTCT CCGGATCTAC TGGATGAACA GCAAGATCTT GCATATAAAA
    CAGGACGAGC GGGTGACGAT GGGCCAGAAT GGCAACCTCT ACTTTGCCAA CGTGCTCACC
    TCGGACAATC ACTCAGACTA CATCTGCCAC GCCCACTTCC CTGGCACCCG GACCATCATT
    CAAAAGGAAC CCATTGACCT CCGGGTCAAG GCCACCAACA GCATGATCGA CAGGAAGCCA
    CGCCTGCTCT TTCCCACCAA TGCCAGCAGC CACCTGGTGG CCCTGCAGGG GCAGCCGTTG
    GTCCTGGAGT GCATCGCTGA GGGCTTCCCC ACGCCCACCA TCAAGTGGCT TCGCCCAAGT
    GGCCACATGC CAGCCGACCG AGTCACCTAC CAGAACCACA ACAAGACCCT GCACCTGCTG
    GATATGGGCG AAGAGGACGA CGGCGAGTAC CGCTGCCTGG CTGAGAACTC ACTAGGCAGT
    GACCGGCACA CTTACTACGT CACCGTGGAG GCTGCCCCGT ACTGGCTGCA CAAGCCCCAG
    AGCCATCTGT ATGGGCCAGG GGAAACTGCC CGCCTGGACT GCCAAGTGCA GGGCAGGCCC
    AAACCAGAAG TCACCTGGAG AATCAATGGG ATCCCTGTGG AGGAGCTGGG CAAGGACCAG
    AAGTACCGGA TCCAGCATGG AGCCCTGACC CTGAGCAATG TGCAGCCCAG CGACACGATG
    GTCACCCAGT GCGAGGCCCG CAACCGGCAT GGGGTCCTGC TGGCCAATGC CTACATCTAT
    GTTGTCCAGC TACCAGCCAA GATCCTGACC CCAGACAATG AGACCTACTT GGCGGTCGAG
    GGCAGCACTG CCTACCTTCT GTGCAAGGCC TTCGGAGCCC CTGTGCCCGG CGTCCAGTGG
    CTGGACAAGG AAGGAAAGAC CGTGCTGCAG GACGAACGCT TCTTCCCCTA CACCAATGGG
    ACCCTGGGCA TCCGGGACCT CCAGGCCAAT GACACCGGAC ACTACTACTG CCAGGCTGCT
    AATGACCAAA ACAACGTAAC CATTGTGGCG AACCTGCAGG TCAAAGATGC CACTCAGATC
    ACACAGGGAC CCCAGAACGC AATCGAGAAG AAAGGCTCAA GAGTGACATT CACGTGCCAG
    GCCTCCTTCG ACCCCTCCTT GCAGCGCAGC ATCACCTGGC GCAGGGATGG CCGAAACCTC
    CAGGAGCTTG GGGATAGTGA CAAGTACTTC ATAGAGGACG GGCGCCTGGT CATTCACAGC
    TTGGACTACA GTGACCAAGG CAACTACAGC TGTGTGGCCA GCACCAAGCT GGATGTGGTG
    GAAAGCAAGG CGGAGCTCCT GGTGGTGGGG AGCCCTGGGC CAGTGCCTCA GTTGGAGCTG
    TCCGGTCGTC ACCTGCTGAA GCAGAGCCAG GTGCACCTGT CTTGGAGTCC CGCTGACGAC
    CACAACTCCC CCATTGAGAA GTATGACATT GAATTTGAAG ACAAGGAGAT GGCACCTGAG
    AAATGGTACA GTCTGGGCAA GGTGCCTGGA AACCAGACCT CCACCACCCT CAAGCTCTCA
    CCCTATGTCC ACTACACCTT TAGAGTTACT GCCATCAACA AATACGGCCC CGGGGAGCCC
    AGCCCGGCTT CTGAGACTGT GGTCACACCT GAGGCAGCCC CGGAGAAGAA CCCCGTGGAC
    GTGAGGGGGG AAGGCAATGA GACCAACAAC ATGGTCATCA CTTGGAAGCC GCTCAGGTGG
    ATGGACTGGA ATGCCCCCCA TGTTCAGTAT CGCGTGCAGT GGCGCCCTCA GGGGCTGCGG
    GGCGCCTGGC AGGAACAGAT CGTGAATGAC CCCTTCCTAG TGGTGTCCAA CACGTCCACC
    TTTGTACCCT ATGAGATCAA GGTCCAGGCC ATCAACAGCC AGGGCAAAGG CCCCGAGCCC
    CAGGTCACCA TTGGCTACTC TGGAGAAGAC TACCCCCAGG CAAGCCCTCA GCTGGAAGAC
    GTCAAGATCC TCAACTCGAG CACCGTGCTG GTCAAGTGGT GGCCCTTGGA CCCAGCCCAG
    GTCAAGGGTC ACCTCCGCGG ATATAATGTG ACATACTGGT GGGAGGGCAG TCAGAGGAAG
    CACAGCAAGA GGCATGTCCA CAAAGGCCAC GTGGTGGTGC CTGCCAACAC CACCAGCACC
    ATCCTGGGAG GCCTGCGGCC CTACAGCTCC TACCATCTGG AGGTGCAGGC TTTTAATGGC
    CGGGGCCTGG GACCCGCCAG CAAGATGACC TTCAGCACCC CAGAGGGCGT GCCCGGCCAC
    CCTGAGGCAT TGCACCTGGA GTGCCAGTCG AACACCAGTC TGCTGCTGCA CTGGCAGCCT
    CCGCTCAGTC ACAATGGCGT GCTCACTGGC TACGTGCTCT CTTACCACTC ACTGGATGAT
    GGGGTCATGG AGCAGTTGTC CTTCAACCTT TCGGACCCTG AGCTGCGGAT GCACAACCTG
    ACCAACCTCA GCCCCCACCT GAGGTACCGC TTCCAGCTTC AGGCCACCAC TAAGGAGGGC
    CCTGGTGAGG CCATTGTGCA AGAAGGAGGC ACGATGGCCT TATCTGGGAC TCTGGATTTT
    GGCAATATCT CGGCCATGGC TGGAGAGAAT TACAGCGTGG TCTCCTGGGT CCCCAAGGAG
    GGCCAGTGCA ACTTTGGGTT CCAGATCTCG TTCAAAGCCC GGGGAGAAGA GAAGATGGGT
    GCTTATCTAC CGCCACAGTA CGTCAGCTAC AACCAGAGGT CCTACACGCA GTGGGACTTG
    CAGCCTGATA CCGACTACGA CATCTGTCTA CTCAAGAACA CGGTGCTCCT ACACCAGATG
    GCTGTGAAGA CGAACGGCAC TGGCCGAATG AGACTCCCTC CTCCTGGCTT TGCCACTGAG
    GGCTGGTTTA TCGGCTTCAT CAGCGCCATC ATTCTCTTGC TCCTCATCTT GCTCATCCTC
    TGCTTTATCA AGCGCAGCAA GGGTGGCAAG TACTCAGTGA AGGATAAAGA GGACACCCAG
    GTGGACTCCG AGGCCCGGCC GATGAAGGAC GAGACCTTTG GCGAGTACAG CGACAACGAG
    GAGAAGGCCT TCGGCAGCAG CCAGCCATCC CTCAATGGAG ACATCAAGCC CCTGGGCAGC
    GACGACAGCC TGGCTGACTA TGGGGGCAGC GTGGACGTCC AGTTCAACGA GGACGGCTCT
    TTCATTGGCC AGTACAGCGG CAAGAAGGAG AAGGAGGCGG CAGGAGGCAA CGACAGCTCA
    GGGGCTGCCT CCCCCATCAA CCCTGCAGGG ACCCTGGAGT AG

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

    CloneID OPt18669
    Clone ID Related Accession (Same CDS sequence) XM_015592069.2 , XM_015592069.1
    Accession Version XM_015592069.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3762bp)
    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 2016-02-09
    Organism Pteropus alecto(black flying fox)
    Product neural cell adhesion molecule L1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006438082.1) 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 :: Pteropus alecto Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.5 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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATATGA AGGATACCAT GTGATGGAGC CACCTGTCAT CACGGATCAG
    TCTCCACGGC GCCTGGTTGT CTTCCCCACA GATGACATAA GCCTCAAGTG TGAGGCCACC
    GGCAAACCCG AAGTGCAGTT CCGCTGGACT CGAGATGGTG TCCACTTCAA ACCCAAGGAG
    GAGCTGGGTG TGACCGTGCA CCAGGCGCCC CGCTCCGGCT CCTTCACCAT CACCGGCAAC
    AACAGCAACT TTGCCCAGAG GTTCCAGGGC ACCTATCGCT GCTTTGCCAG CAATAAGCTG
    GGCACCGCCA TGTCCCATGA GATCCAGCTC ATGGCCGAGG GTGCCCCCAA GTGGCCAAAG
    GAGACCGTAA AACCTGTCGA GGTAGAGGAA GGGGAGTCAG TGATTCTGCC TTGCCACCCT
    CCACCCAGCG CAGAGCCTCT CCGGATCTAC TGGATGAACA GCAAGATCTT GCATATAAAA
    CAGGACGAGC GGGTGACGAT GGGCCAGAAT GGCAACCTCT ACTTTGCCAA CGTGCTCACC
    TCGGACAATC ACTCAGACTA CATCTGCCAC GCCCACTTCC CTGGCACCCG GACCATCATT
    CAAAAGGAAC CCATTGACCT CCGGGTCAAG GCCACCAACA GCATGATCGA CAGGAAGCCA
    CGCCTGCTCT TTCCCACCAA TGCCAGCAGC CACCTGGTGG CCCTGCAGGG GCAGCCGTTG
    GTCCTGGAGT GCATCGCTGA GGGCTTCCCC ACGCCCACCA TCAAGTGGCT TCGCCCAAGT
    GGCCACATGC CAGCCGACCG AGTCACCTAC CAGAACCACA ACAAGACCCT GCACCTGCTG
    GATATGGGCG AAGAGGACGA CGGCGAGTAC CGCTGCCTGG CTGAGAACTC ACTAGGCAGT
    GACCGGCACA CTTACTACGT CACCGTGGAG GCTGCCCCGT ACTGGCTGCA CAAGCCCCAG
    AGCCATCTGT ATGGGCCAGG GGAAACTGCC CGCCTGGACT GCCAAGTGCA GGGCAGGCCC
    AAACCAGAAG TCACCTGGAG AATCAATGGG ATCCCTGTGG AGGAGCTGGG CAAGGACCAG
    AAGTACCGGA TCCAGCATGG AGCCCTGACC CTGAGCAATG TGCAGCCCAG CGACACGATG
    GTCACCCAGT GCGAGGCCCG CAACCGGCAT GGGGTCCTGC TGGCCAATGC CTACATCTAT
    GTTGTCCAGC TACCAGCCAA GATCCTGACC CCAGACAATG AGACCTACTT GGCGGTCGAG
    GGCAGCACTG CCTACCTTCT GTGCAAGGCC TTCGGAGCCC CTGTGCCCGG CGTCCAGTGG
    CTGGACAAGG AAGGAAAGAC CGTGCTGCAG GACGAACGCT TCTTCCCCTA CACCAATGGG
    ACCCTGGGCA TCCGGGACCT CCAGGCCAAT GACACCGGAC ACTACTACTG CCAGGCTGCT
    AATGACCAAA ACAACGTAAC CATTGTGGCG AACCTGCAGG TCAAAGATGC CACTCAGATC
    ACACAGGGAC CCCAGAACGC AATCGAGAAG AAAGGCTCAA GAGTGACATT CACGTGCCAG
    GCCTCCTTCG ACCCCTCCTT GCAGCGCAGC ATCACCTGGC GCAGGGATGG CCGAAACCTC
    CAGGAGCTTG GGGATAGTGA CAAGTACTTC ATAGAGGACG GGCGCCTGGT CATTCACAGC
    TTGGACTACA GTGACCAAGG CAACTACAGC TGTGTGGCCA GCACCAAGCT GGATGTGGTG
    GAAAGCAAGG CGGAGCTCCT GGTGGTGGGG AGCCCTGGGC CAGTGCCTCA GTTGGAGCTG
    TCCGGTCGTC ACCTGCTGAA GCAGAGCCAG GTGCACCTGT CTTGGAGTCC CGCTGACGAC
    CACAACTCCC CCATTGAGAA GTATGACATT GAATTTGAAG ACAAGGAGAT GGCACCTGAG
    AAATGGTACA GTCTGGGCAA GGTGCCTGGA AACCAGACCT CCACCACCCT CAAGCTCTCA
    CCCTATGTCC ACTACACCTT TAGAGTTACT GCCATCAACA AATACGGCCC CGGGGAGCCC
    AGCCCGGCTT CTGAGACTGT GGTCACACCT GAGGCAGCCC CGGAGAAGAA CCCCGTGGAC
    GTGAGGGGGG AAGGCAATGA GACCAACAAC ATGGTCATCA CTTGGAAGCC GCTCAGGTGG
    ATGGACTGGA ATGCCCCCCA TGTTCAGTAT CGCGTGCAGT GGCGCCCTCA GGGGCTGCGG
    GGCGCCTGGC AGGAACAGAT CGTGAATGAC CCCTTCCTAG TGGTGTCCAA CACGTCCACC
    TTTGTACCCT ATGAGATCAA GGTCCAGGCC ATCAACAGCC AGGGCAAAGG CCCCGAGCCC
    CAGGTCACCA TTGGCTACTC TGGAGAAGAC TACCCCCAGG CAAGCCCTCA GCTGGAAGAC
    GTCAAGATCC TCAACTCGAG CACCGTGCTG GTCAAGTGGT GGCCCTTGGA CCCAGCCCAG
    GTCAAGGGTC ACCTCCGCGG ATATAATGTG ACATACTGGT GGGAGGGCAG TCAGAGGAAG
    CACAGCAAGA GGCATGTCCA CAAAGGCCAC GTGGTGGTGC CTGCCAACAC CACCAGCACC
    ATCCTGGGAG GCCTGCGGCC CTACAGCTCC TACCATCTGG AGGTGCAGGC TTTTAATGGC
    CGGGGCCTGG GACCCGCCAG CAAGATGACC TTCAGCACCC CAGAGGGCGT GCCCGGCCAC
    CCTGAGGCAT TGCACCTGGA GTGCCAGTCG AACACCAGTC TGCTGCTGCA CTGGCAGCCT
    CCGCTCAGTC ACAATGGCGT GCTCACTGGC TACGTGCTCT CTTACCACTC ACTGGATGAT
    GGGGTCATGG AGCAGTTGTC CTTCAACCTT TCGGACCCTG AGCTGCGGAT GCACAACCTG
    ACCAACCTCA GCCCCCACCT GAGGTACCGC TTCCAGCTTC AGGCCACCAC TAAGGAGGGC
    CCTGGTGAGG CCATTGTGCA AGAAGGAGGC ACGATGGCCT TATCTGGGAC TCTGGATTTT
    GGCAATATCT CGGCCATGGC TGGAGAGAAT TACAGCGTGG TCTCCTGGGT CCCCAAGGAG
    GGCCAGTGCA ACTTTGGGTT CCAGATCTCG TTCAAAGCCC GGGGAGAAGA GAAGATGGGT
    GCTTATCTAC CGCCACAGTA CGTCAGCTAC AACCAGAGGT CCTACACGCA GTGGGACTTG
    CAGCCTGATA CCGACTACGA CATCTGTCTA CTCAAGAACA CGGTGCTCCT ACACCAGATG
    GCTGTGAAGA CGAACGGCAC TGGCCGAATG AGACTCCCTC CTCCTGGCTT TGCCACTGAG
    GGCTGGTTTA TCGGCTTCAT CAGCGCCATC ATTCTCTTGC TCCTCATCTT GCTCATCCTC
    TGCTTTATCA AGCGCAGCAA GGGTGGCAAG TACTCAGTGA AGGATAAAGA GGACACCCAG
    GTGGACTCCG AGGCCCGGCC GATGAAGGAC GAGACCTTTG GCGAGTACAG CGACAACGAG
    GAGAAGGCCT TCGGCAGCAG CCAGCCATCC CTCAATGGAG ACATCAAGCC CCTGGGCAGC
    GACGACAGCC TGGCTGACTA TGGGGGCAGC GTGGACGTCC AGTTCAACGA GGACGGCTCT
    TTCATTGGCC AGTACAGCGG CAAGAAGGAG AAGGAGGCGG CAGGAGGCAA CGACAGCTCA
    GGGGCTGCCT CCCCCATCAA CCCTGCAGGG ACCCTGGAGT AG

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

    RefSeq XP_015447555.1
    CDS103..3864
    Translation

    Target ORF information:

    RefSeq Version XM_015592069.1
    Organism Pteropus alecto(black flying fox)
    Definition Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015592069.1

    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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATATGA AGGATACCAT GTGATGGAGC CACCTGTCAT CACGGATCAG
    TCTCCACGGC GCCTGGTTGT CTTCCCCACA GATGACATAA GCCTCAAGTG TGAGGCCACC
    GGCAAACCCG AAGTGCAGTT CCGCTGGACT CGAGATGGTG TCCACTTCAA ACCCAAGGAG
    GAGCTGGGTG TGACCGTGCA CCAGGCGCCC CGCTCCGGCT CCTTCACCAT CACCGGCAAC
    AACAGCAACT TTGCCCAGAG GTTCCAGGGC ACCTATCGCT GCTTTGCCAG CAATAAGCTG
    GGCACCGCCA TGTCCCATGA GATCCAGCTC ATGGCCGAGG GTGCCCCCAA GTGGCCAAAG
    GAGACCGTAA AACCTGTCGA GGTAGAGGAA GGGGAGTCAG TGATTCTGCC TTGCCACCCT
    CCACCCAGCG CAGAGCCTCT CCGGATCTAC TGGATGAACA GCAAGATCTT GCATATAAAA
    CAGGACGAGC GGGTGACGAT GGGCCAGAAT GGCAACCTCT ACTTTGCCAA CGTGCTCACC
    TCGGACAATC ACTCAGACTA CATCTGCCAC GCCCACTTCC CTGGCACCCG GACCATCATT
    CAAAAGGAAC CCATTGACCT CCGGGTCAAG GCCACCAACA GCATGATCGA CAGGAAGCCA
    CGCCTGCTCT TTCCCACCAA TGCCAGCAGC CACCTGGTGG CCCTGCAGGG GCAGCCGTTG
    GTCCTGGAGT GCATCGCTGA GGGCTTCCCC ACGCCCACCA TCAAGTGGCT TCGCCCAAGT
    GGCCACATGC CAGCCGACCG AGTCACCTAC CAGAACCACA ACAAGACCCT GCACCTGCTG
    GATATGGGCG AAGAGGACGA CGGCGAGTAC CGCTGCCTGG CTGAGAACTC ACTAGGCAGT
    GACCGGCACA CTTACTACGT CACCGTGGAG GCTGCCCCGT ACTGGCTGCA CAAGCCCCAG
    AGCCATCTGT ATGGGCCAGG GGAAACTGCC CGCCTGGACT GCCAAGTGCA GGGCAGGCCC
    AAACCAGAAG TCACCTGGAG AATCAATGGG ATCCCTGTGG AGGAGCTGGG CAAGGACCAG
    AAGTACCGGA TCCAGCATGG AGCCCTGACC CTGAGCAATG TGCAGCCCAG CGACACGATG
    GTCACCCAGT GCGAGGCCCG CAACCGGCAT GGGGTCCTGC TGGCCAATGC CTACATCTAT
    GTTGTCCAGC TACCAGCCAA GATCCTGACC CCAGACAATG AGACCTACTT GGCGGTCGAG
    GGCAGCACTG CCTACCTTCT GTGCAAGGCC TTCGGAGCCC CTGTGCCCGG CGTCCAGTGG
    CTGGACAAGG AAGGAAAGAC CGTGCTGCAG GACGAACGCT TCTTCCCCTA CACCAATGGG
    ACCCTGGGCA TCCGGGACCT CCAGGCCAAT GACACCGGAC ACTACTACTG CCAGGCTGCT
    AATGACCAAA ACAACGTAAC CATTGTGGCG AACCTGCAGG TCAAAGATGC CACTCAGATC
    ACACAGGGAC CCCAGAACGC AATCGAGAAG AAAGGCTCAA GAGTGACATT CACGTGCCAG
    GCCTCCTTCG ACCCCTCCTT GCAGCGCAGC ATCACCTGGC GCAGGGATGG CCGAAACCTC
    CAGGAGCTTG GGGATAGTGA CAAGTACTTC ATAGAGGACG GGCGCCTGGT CATTCACAGC
    TTGGACTACA GTGACCAAGG CAACTACAGC TGTGTGGCCA GCACCAAGCT GGATGTGGTG
    GAAAGCAAGG CGGAGCTCCT GGTGGTGGGG AGCCCTGGGC CAGTGCCTCA GTTGGAGCTG
    TCCGGTCGTC ACCTGCTGAA GCAGAGCCAG GTGCACCTGT CTTGGAGTCC CGCTGACGAC
    CACAACTCCC CCATTGAGAA GTATGACATT GAATTTGAAG ACAAGGAGAT GGCACCTGAG
    AAATGGTACA GTCTGGGCAA GGTGCCTGGA AACCAGACCT CCACCACCCT CAAGCTCTCA
    CCCTATGTCC ACTACACCTT TAGAGTTACT GCCATCAACA AATACGGCCC CGGGGAGCCC
    AGCCCGGCTT CTGAGACTGT GGTCACACCT GAGGCAGCCC CGGAGAAGAA CCCCGTGGAC
    GTGAGGGGGG AAGGCAATGA GACCAACAAC ATGGTCATCA CTTGGAAGCC GCTCAGGTGG
    ATGGACTGGA ATGCCCCCCA TGTTCAGTAT CGCGTGCAGT GGCGCCCTCA GGGGCTGCGG
    GGCGCCTGGC AGGAACAGAT CGTGAATGAC CCCTTCCTAG TGGTGTCCAA CACGTCCACC
    TTTGTACCCT ATGAGATCAA GGTCCAGGCC ATCAACAGCC AGGGCAAAGG CCCCGAGCCC
    CAGGTCACCA TTGGCTACTC TGGAGAAGAC TACCCCCAGG CAAGCCCTCA GCTGGAAGAC
    GTCAAGATCC TCAACTCGAG CACCGTGCTG GTCAAGTGGT GGCCCTTGGA CCCAGCCCAG
    GTCAAGGGTC ACCTCCGCGG ATATAATGTG ACATACTGGT GGGAGGGCAG TCAGAGGAAG
    CACAGCAAGA GGCATGTCCA CAAAGGCCAC GTGGTGGTGC CTGCCAACAC CACCAGCACC
    ATCCTGGGAG GCCTGCGGCC CTACAGCTCC TACCATCTGG AGGTGCAGGC TTTTAATGGC
    CGGGGCCTGG GACCCGCCAG CAAGATGACC TTCAGCACCC CAGAGGGCGT GCCCGGCCAC
    CCTGAGGCAT TGCACCTGGA GTGCCAGTCG AACACCAGTC TGCTGCTGCA CTGGCAGCCT
    CCGCTCAGTC ACAATGGCGT GCTCACTGGC TACGTGCTCT CTTACCACTC ACTGGATGAT
    GGGGTCATGG AGCAGTTGTC CTTCAACCTT TCGGACCCTG AGCTGCGGAT GCACAACCTG
    ACCAACCTCA GCCCCCACCT GAGGTACCGC TTCCAGCTTC AGGCCACCAC TAAGGAGGGC
    CCTGGTGAGG CCATTGTGCA AGAAGGAGGC ACGATGGCCT TATCTGGGAC TCTGGATTTT
    GGCAATATCT CGGCCATGGC TGGAGAGAAT TACAGCGTGG TCTCCTGGGT CCCCAAGGAG
    GGCCAGTGCA ACTTTGGGTT CCAGATCTCG TTCAAAGCCC GGGGAGAAGA GAAGATGGGT
    GCTTATCTAC CGCCACAGTA CGTCAGCTAC AACCAGAGGT CCTACACGCA GTGGGACTTG
    CAGCCTGATA CCGACTACGA CATCTGTCTA CTCAAGAACA CGGTGCTCCT ACACCAGATG
    GCTGTGAAGA CGAACGGCAC TGGCCGAATG AGACTCCCTC CTCCTGGCTT TGCCACTGAG
    GGCTGGTTTA TCGGCTTCAT CAGCGCCATC ATTCTCTTGC TCCTCATCTT GCTCATCCTC
    TGCTTTATCA AGCGCAGCAA GGGTGGCAAG TACTCAGTGA AGGATAAAGA GGACACCCAG
    GTGGACTCCG AGGCCCGGCC GATGAAGGAC GAGACCTTTG GCGAGTACAG CGACAACGAG
    GAGAAGGCCT TCGGCAGCAG CCAGCCATCC CTCAATGGAG ACATCAAGCC CCTGGGCAGC
    GACGACAGCC TGGCTGACTA TGGGGGCAGC GTGGACGTCC AGTTCAACGA GGACGGCTCT
    TTCATTGGCC AGTACAGCGG CAAGAAGGAG AAGGAGGCGG CAGGAGGCAA CGACAGCTCA
    GGGGCTGCCT CCCCCATCAA CCCTGCAGGG ACCCTGGAGT AG

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

    CloneID OPt18670
    Clone ID Related Accession (Same CDS sequence) XM_006915291.2 , XM_006915291.3
    Accession Version XM_006915291.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3747bp)
    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 2016-02-09
    Organism Pteropus alecto(black flying fox)
    Product neural cell adhesion molecule L1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006438082.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Feb 10, 2016 this sequence version replaced XM_006915291.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Pteropus alecto Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.5 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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATTGAT GGAGCCACCT GTCATCACGG ATCAGTCTCC ACGGCGCCTG
    GTTGTCTTCC CCACAGATGA CATAAGCCTC AAGTGTGAGG CCACCGGCAA ACCCGAAGTG
    CAGTTCCGCT GGACTCGAGA TGGTGTCCAC TTCAAACCCA AGGAGGAGCT GGGTGTGACC
    GTGCACCAGG CGCCCCGCTC CGGCTCCTTC ACCATCACCG GCAACAACAG CAACTTTGCC
    CAGAGGTTCC AGGGCACCTA TCGCTGCTTT GCCAGCAATA AGCTGGGCAC CGCCATGTCC
    CATGAGATCC AGCTCATGGC CGAGGGTGCC CCCAAGTGGC CAAAGGAGAC CGTAAAACCT
    GTCGAGGTAG AGGAAGGGGA GTCAGTGATT CTGCCTTGCC ACCCTCCACC CAGCGCAGAG
    CCTCTCCGGA TCTACTGGAT GAACAGCAAG ATCTTGCATA TAAAACAGGA CGAGCGGGTG
    ACGATGGGCC AGAATGGCAA CCTCTACTTT GCCAACGTGC TCACCTCGGA CAATCACTCA
    GACTACATCT GCCACGCCCA CTTCCCTGGC ACCCGGACCA TCATTCAAAA GGAACCCATT
    GACCTCCGGG TCAAGGCCAC CAACAGCATG ATCGACAGGA AGCCACGCCT GCTCTTTCCC
    ACCAATGCCA GCAGCCACCT GGTGGCCCTG CAGGGGCAGC CGTTGGTCCT GGAGTGCATC
    GCTGAGGGCT TCCCCACGCC CACCATCAAG TGGCTTCGCC CAAGTGGCCA CATGCCAGCC
    GACCGAGTCA CCTACCAGAA CCACAACAAG ACCCTGCACC TGCTGGATAT GGGCGAAGAG
    GACGACGGCG AGTACCGCTG CCTGGCTGAG AACTCACTAG GCAGTGACCG GCACACTTAC
    TACGTCACCG TGGAGGCTGC CCCGTACTGG CTGCACAAGC CCCAGAGCCA TCTGTATGGG
    CCAGGGGAAA CTGCCCGCCT GGACTGCCAA GTGCAGGGCA GGCCCAAACC AGAAGTCACC
    TGGAGAATCA ATGGGATCCC TGTGGAGGAG CTGGGCAAGG ACCAGAAGTA CCGGATCCAG
    CATGGAGCCC TGACCCTGAG CAATGTGCAG CCCAGCGACA CGATGGTCAC CCAGTGCGAG
    GCCCGCAACC GGCATGGGGT CCTGCTGGCC AATGCCTACA TCTATGTTGT CCAGCTACCA
    GCCAAGATCC TGACCCCAGA CAATGAGACC TACTTGGCGG TCGAGGGCAG CACTGCCTAC
    CTTCTGTGCA AGGCCTTCGG AGCCCCTGTG CCCGGCGTCC AGTGGCTGGA CAAGGAAGGA
    AAGACCGTGC TGCAGGACGA ACGCTTCTTC CCCTACACCA ATGGGACCCT GGGCATCCGG
    GACCTCCAGG CCAATGACAC CGGACACTAC TACTGCCAGG CTGCTAATGA CCAAAACAAC
    GTAACCATTG TGGCGAACCT GCAGGTCAAA GATGCCACTC AGATCACACA GGGACCCCAG
    AACGCAATCG AGAAGAAAGG CTCAAGAGTG ACATTCACGT GCCAGGCCTC CTTCGACCCC
    TCCTTGCAGC GCAGCATCAC CTGGCGCAGG GATGGCCGAA ACCTCCAGGA GCTTGGGGAT
    AGTGACAAGT ACTTCATAGA GGACGGGCGC CTGGTCATTC ACAGCTTGGA CTACAGTGAC
    CAAGGCAACT ACAGCTGTGT GGCCAGCACC AAGCTGGATG TGGTGGAAAG CAAGGCGGAG
    CTCCTGGTGG TGGGGAGCCC TGGGCCAGTG CCTCAGTTGG AGCTGTCCGG TCGTCACCTG
    CTGAAGCAGA GCCAGGTGCA CCTGTCTTGG AGTCCCGCTG ACGACCACAA CTCCCCCATT
    GAGAAGTATG ACATTGAATT TGAAGACAAG GAGATGGCAC CTGAGAAATG GTACAGTCTG
    GGCAAGGTGC CTGGAAACCA GACCTCCACC ACCCTCAAGC TCTCACCCTA TGTCCACTAC
    ACCTTTAGAG TTACTGCCAT CAACAAATAC GGCCCCGGGG AGCCCAGCCC GGCTTCTGAG
    ACTGTGGTCA CACCTGAGGC AGCCCCGGAG AAGAACCCCG TGGACGTGAG GGGGGAAGGC
    AATGAGACCA ACAACATGGT CATCACTTGG AAGCCGCTCA GGTGGATGGA CTGGAATGCC
    CCCCATGTTC AGTATCGCGT GCAGTGGCGC CCTCAGGGGC TGCGGGGCGC CTGGCAGGAA
    CAGATCGTGA ATGACCCCTT CCTAGTGGTG TCCAACACGT CCACCTTTGT ACCCTATGAG
    ATCAAGGTCC AGGCCATCAA CAGCCAGGGC AAAGGCCCCG AGCCCCAGGT CACCATTGGC
    TACTCTGGAG AAGACTACCC CCAGGCAAGC CCTCAGCTGG AAGACGTCAA GATCCTCAAC
    TCGAGCACCG TGCTGGTCAA GTGGTGGCCC TTGGACCCAG CCCAGGTCAA GGGTCACCTC
    CGCGGATATA ATGTGACATA CTGGTGGGAG GGCAGTCAGA GGAAGCACAG CAAGAGGCAT
    GTCCACAAAG GCCACGTGGT GGTGCCTGCC AACACCACCA GCACCATCCT GGGAGGCCTG
    CGGCCCTACA GCTCCTACCA TCTGGAGGTG CAGGCTTTTA ATGGCCGGGG CCTGGGACCC
    GCCAGCAAGA TGACCTTCAG CACCCCAGAG GGCGTGCCCG GCCACCCTGA GGCATTGCAC
    CTGGAGTGCC AGTCGAACAC CAGTCTGCTG CTGCACTGGC AGCCTCCGCT CAGTCACAAT
    GGCGTGCTCA CTGGCTACGT GCTCTCTTAC CACTCACTGG ATGATGGGGT CATGGAGCAG
    TTGTCCTTCA ACCTTTCGGA CCCTGAGCTG CGGATGCACA ACCTGACCAA CCTCAGCCCC
    CACCTGAGGT ACCGCTTCCA GCTTCAGGCC ACCACTAAGG AGGGCCCTGG TGAGGCCATT
    GTGCAAGAAG GAGGCACGAT GGCCTTATCT GGGACTCTGG ATTTTGGCAA TATCTCGGCC
    ATGGCTGGAG AGAATTACAG CGTGGTCTCC TGGGTCCCCA AGGAGGGCCA GTGCAACTTT
    GGGTTCCAGA TCTCGTTCAA AGCCCGGGGA GAAGAGAAGA TGGGTGCTTA TCTACCGCCA
    CAGTACGTCA GCTACAACCA GAGGTCCTAC ACGCAGTGGG ACTTGCAGCC TGATACCGAC
    TACGACATCT GTCTACTCAA GAACACGGTG CTCCTACACC AGATGGCTGT GAAGACGAAC
    GGCACTGGCC GAATGAGACT CCCTCCTCCT GGCTTTGCCA CTGAGGGCTG GTTTATCGGC
    TTCATCAGCG CCATCATTCT CTTGCTCCTC ATCTTGCTCA TCCTCTGCTT TATCAAGCGC
    AGCAAGGGTG GCAAGTACTC AGTGAAGGAT AAAGAGGACA CCCAGGTGGA CTCCGAGGCC
    CGGCCGATGA AGGACGAGAC CTTTGGCGAG TACAGCGACA ACGAGGAGAA GGCCTTCGGC
    AGCAGCCAGC CATCCCTCAA TGGAGACATC AAGCCCCTGG GCAGCGACGA CAGCCTGGCT
    GACTATGGGG GCAGCGTGGA CGTCCAGTTC AACGAGGACG GCTCTTTCAT TGGCCAGTAC
    AGCGGCAAGA AGGAGAAGGA GGCGGCAGGA GGCAACGACA GCTCAGGGGC TGCCTCCCCC
    ATCAACCCTG CAGGGACCCT GGAGTAG

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

    RefSeq XP_006915353.1
    CDS25..3771
    Translation

    Target ORF information:

    RefSeq Version XM_006915291.2
    Organism Pteropus alecto(black flying fox)
    Definition Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006915291.2

    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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATTGAT GGAGCCACCT GTCATCACGG ATCAGTCTCC ACGGCGCCTG
    GTTGTCTTCC CCACAGATGA CATAAGCCTC AAGTGTGAGG CCACCGGCAA ACCCGAAGTG
    CAGTTCCGCT GGACTCGAGA TGGTGTCCAC TTCAAACCCA AGGAGGAGCT GGGTGTGACC
    GTGCACCAGG CGCCCCGCTC CGGCTCCTTC ACCATCACCG GCAACAACAG CAACTTTGCC
    CAGAGGTTCC AGGGCACCTA TCGCTGCTTT GCCAGCAATA AGCTGGGCAC CGCCATGTCC
    CATGAGATCC AGCTCATGGC CGAGGGTGCC CCCAAGTGGC CAAAGGAGAC CGTAAAACCT
    GTCGAGGTAG AGGAAGGGGA GTCAGTGATT CTGCCTTGCC ACCCTCCACC CAGCGCAGAG
    CCTCTCCGGA TCTACTGGAT GAACAGCAAG ATCTTGCATA TAAAACAGGA CGAGCGGGTG
    ACGATGGGCC AGAATGGCAA CCTCTACTTT GCCAACGTGC TCACCTCGGA CAATCACTCA
    GACTACATCT GCCACGCCCA CTTCCCTGGC ACCCGGACCA TCATTCAAAA GGAACCCATT
    GACCTCCGGG TCAAGGCCAC CAACAGCATG ATCGACAGGA AGCCACGCCT GCTCTTTCCC
    ACCAATGCCA GCAGCCACCT GGTGGCCCTG CAGGGGCAGC CGTTGGTCCT GGAGTGCATC
    GCTGAGGGCT TCCCCACGCC CACCATCAAG TGGCTTCGCC CAAGTGGCCA CATGCCAGCC
    GACCGAGTCA CCTACCAGAA CCACAACAAG ACCCTGCACC TGCTGGATAT GGGCGAAGAG
    GACGACGGCG AGTACCGCTG CCTGGCTGAG AACTCACTAG GCAGTGACCG GCACACTTAC
    TACGTCACCG TGGAGGCTGC CCCGTACTGG CTGCACAAGC CCCAGAGCCA TCTGTATGGG
    CCAGGGGAAA CTGCCCGCCT GGACTGCCAA GTGCAGGGCA GGCCCAAACC AGAAGTCACC
    TGGAGAATCA ATGGGATCCC TGTGGAGGAG CTGGGCAAGG ACCAGAAGTA CCGGATCCAG
    CATGGAGCCC TGACCCTGAG CAATGTGCAG CCCAGCGACA CGATGGTCAC CCAGTGCGAG
    GCCCGCAACC GGCATGGGGT CCTGCTGGCC AATGCCTACA TCTATGTTGT CCAGCTACCA
    GCCAAGATCC TGACCCCAGA CAATGAGACC TACTTGGCGG TCGAGGGCAG CACTGCCTAC
    CTTCTGTGCA AGGCCTTCGG AGCCCCTGTG CCCGGCGTCC AGTGGCTGGA CAAGGAAGGA
    AAGACCGTGC TGCAGGACGA ACGCTTCTTC CCCTACACCA ATGGGACCCT GGGCATCCGG
    GACCTCCAGG CCAATGACAC CGGACACTAC TACTGCCAGG CTGCTAATGA CCAAAACAAC
    GTAACCATTG TGGCGAACCT GCAGGTCAAA GATGCCACTC AGATCACACA GGGACCCCAG
    AACGCAATCG AGAAGAAAGG CTCAAGAGTG ACATTCACGT GCCAGGCCTC CTTCGACCCC
    TCCTTGCAGC GCAGCATCAC CTGGCGCAGG GATGGCCGAA ACCTCCAGGA GCTTGGGGAT
    AGTGACAAGT ACTTCATAGA GGACGGGCGC CTGGTCATTC ACAGCTTGGA CTACAGTGAC
    CAAGGCAACT ACAGCTGTGT GGCCAGCACC AAGCTGGATG TGGTGGAAAG CAAGGCGGAG
    CTCCTGGTGG TGGGGAGCCC TGGGCCAGTG CCTCAGTTGG AGCTGTCCGG TCGTCACCTG
    CTGAAGCAGA GCCAGGTGCA CCTGTCTTGG AGTCCCGCTG ACGACCACAA CTCCCCCATT
    GAGAAGTATG ACATTGAATT TGAAGACAAG GAGATGGCAC CTGAGAAATG GTACAGTCTG
    GGCAAGGTGC CTGGAAACCA GACCTCCACC ACCCTCAAGC TCTCACCCTA TGTCCACTAC
    ACCTTTAGAG TTACTGCCAT CAACAAATAC GGCCCCGGGG AGCCCAGCCC GGCTTCTGAG
    ACTGTGGTCA CACCTGAGGC AGCCCCGGAG AAGAACCCCG TGGACGTGAG GGGGGAAGGC
    AATGAGACCA ACAACATGGT CATCACTTGG AAGCCGCTCA GGTGGATGGA CTGGAATGCC
    CCCCATGTTC AGTATCGCGT GCAGTGGCGC CCTCAGGGGC TGCGGGGCGC CTGGCAGGAA
    CAGATCGTGA ATGACCCCTT CCTAGTGGTG TCCAACACGT CCACCTTTGT ACCCTATGAG
    ATCAAGGTCC AGGCCATCAA CAGCCAGGGC AAAGGCCCCG AGCCCCAGGT CACCATTGGC
    TACTCTGGAG AAGACTACCC CCAGGCAAGC CCTCAGCTGG AAGACGTCAA GATCCTCAAC
    TCGAGCACCG TGCTGGTCAA GTGGTGGCCC TTGGACCCAG CCCAGGTCAA GGGTCACCTC
    CGCGGATATA ATGTGACATA CTGGTGGGAG GGCAGTCAGA GGAAGCACAG CAAGAGGCAT
    GTCCACAAAG GCCACGTGGT GGTGCCTGCC AACACCACCA GCACCATCCT GGGAGGCCTG
    CGGCCCTACA GCTCCTACCA TCTGGAGGTG CAGGCTTTTA ATGGCCGGGG CCTGGGACCC
    GCCAGCAAGA TGACCTTCAG CACCCCAGAG GGCGTGCCCG GCCACCCTGA GGCATTGCAC
    CTGGAGTGCC AGTCGAACAC CAGTCTGCTG CTGCACTGGC AGCCTCCGCT CAGTCACAAT
    GGCGTGCTCA CTGGCTACGT GCTCTCTTAC CACTCACTGG ATGATGGGGT CATGGAGCAG
    TTGTCCTTCA ACCTTTCGGA CCCTGAGCTG CGGATGCACA ACCTGACCAA CCTCAGCCCC
    CACCTGAGGT ACCGCTTCCA GCTTCAGGCC ACCACTAAGG AGGGCCCTGG TGAGGCCATT
    GTGCAAGAAG GAGGCACGAT GGCCTTATCT GGGACTCTGG ATTTTGGCAA TATCTCGGCC
    ATGGCTGGAG AGAATTACAG CGTGGTCTCC TGGGTCCCCA AGGAGGGCCA GTGCAACTTT
    GGGTTCCAGA TCTCGTTCAA AGCCCGGGGA GAAGAGAAGA TGGGTGCTTA TCTACCGCCA
    CAGTACGTCA GCTACAACCA GAGGTCCTAC ACGCAGTGGG ACTTGCAGCC TGATACCGAC
    TACGACATCT GTCTACTCAA GAACACGGTG CTCCTACACC AGATGGCTGT GAAGACGAAC
    GGCACTGGCC GAATGAGACT CCCTCCTCCT GGCTTTGCCA CTGAGGGCTG GTTTATCGGC
    TTCATCAGCG CCATCATTCT CTTGCTCCTC ATCTTGCTCA TCCTCTGCTT TATCAAGCGC
    AGCAAGGGTG GCAAGTACTC AGTGAAGGAT AAAGAGGACA CCCAGGTGGA CTCCGAGGCC
    CGGCCGATGA AGGACGAGAC CTTTGGCGAG TACAGCGACA ACGAGGAGAA GGCCTTCGGC
    AGCAGCCAGC CATCCCTCAA TGGAGACATC AAGCCCCTGG GCAGCGACGA CAGCCTGGCT
    GACTATGGGG GCAGCGTGGA CGTCCAGTTC AACGAGGACG GCTCTTTCAT TGGCCAGTAC
    AGCGGCAAGA AGGAGAAGGA GGCGGCAGGA GGCAACGACA GCTCAGGGGC TGCCTCCCCC
    ATCAACCCTG CAGGGACCCT GGAGTAG

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

    CloneID OPt18670
    Clone ID Related Accession (Same CDS sequence) XM_006915291.2 , XM_006915291.3
    Accession Version XM_006915291.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3747bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2018-05-06
    Organism Pteropus alecto(black flying fox)
    Product neural cell adhesion molecule L1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006438082.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On May 7, 2018 this sequence version replaced XM_006915291.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Pteropus alecto Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATTGAT GGAGCCACCT GTCATCACGG ATCAGTCTCC ACGGCGCCTG
    GTTGTCTTCC CCACAGATGA CATAAGCCTC AAGTGTGAGG CCACCGGCAA ACCCGAAGTG
    CAGTTCCGCT GGACTCGAGA TGGTGTCCAC TTCAAACCCA AGGAGGAGCT GGGTGTGACC
    GTGCACCAGG CGCCCCGCTC CGGCTCCTTC ACCATCACCG GCAACAACAG CAACTTTGCC
    CAGAGGTTCC AGGGCACCTA TCGCTGCTTT GCCAGCAATA AGCTGGGCAC CGCCATGTCC
    CATGAGATCC AGCTCATGGC CGAGGGTGCC CCCAAGTGGC CAAAGGAGAC CGTAAAACCT
    GTCGAGGTAG AGGAAGGGGA GTCAGTGATT CTGCCTTGCC ACCCTCCACC CAGCGCAGAG
    CCTCTCCGGA TCTACTGGAT GAACAGCAAG ATCTTGCATA TAAAACAGGA CGAGCGGGTG
    ACGATGGGCC AGAATGGCAA CCTCTACTTT GCCAACGTGC TCACCTCGGA CAATCACTCA
    GACTACATCT GCCACGCCCA CTTCCCTGGC ACCCGGACCA TCATTCAAAA GGAACCCATT
    GACCTCCGGG TCAAGGCCAC CAACAGCATG ATCGACAGGA AGCCACGCCT GCTCTTTCCC
    ACCAATGCCA GCAGCCACCT GGTGGCCCTG CAGGGGCAGC CGTTGGTCCT GGAGTGCATC
    GCTGAGGGCT TCCCCACGCC CACCATCAAG TGGCTTCGCC CAAGTGGCCA CATGCCAGCC
    GACCGAGTCA CCTACCAGAA CCACAACAAG ACCCTGCACC TGCTGGATAT GGGCGAAGAG
    GACGACGGCG AGTACCGCTG CCTGGCTGAG AACTCACTAG GCAGTGACCG GCACACTTAC
    TACGTCACCG TGGAGGCTGC CCCGTACTGG CTGCACAAGC CCCAGAGCCA TCTGTATGGG
    CCAGGGGAAA CTGCCCGCCT GGACTGCCAA GTGCAGGGCA GGCCCAAACC AGAAGTCACC
    TGGAGAATCA ATGGGATCCC TGTGGAGGAG CTGGGCAAGG ACCAGAAGTA CCGGATCCAG
    CATGGAGCCC TGACCCTGAG CAATGTGCAG CCCAGCGACA CGATGGTCAC CCAGTGCGAG
    GCCCGCAACC GGCATGGGGT CCTGCTGGCC AATGCCTACA TCTATGTTGT CCAGCTACCA
    GCCAAGATCC TGACCCCAGA CAATGAGACC TACTTGGCGG TCGAGGGCAG CACTGCCTAC
    CTTCTGTGCA AGGCCTTCGG AGCCCCTGTG CCCGGCGTCC AGTGGCTGGA CAAGGAAGGA
    AAGACCGTGC TGCAGGACGA ACGCTTCTTC CCCTACACCA ATGGGACCCT GGGCATCCGG
    GACCTCCAGG CCAATGACAC CGGACACTAC TACTGCCAGG CTGCTAATGA CCAAAACAAC
    GTAACCATTG TGGCGAACCT GCAGGTCAAA GATGCCACTC AGATCACACA GGGACCCCAG
    AACGCAATCG AGAAGAAAGG CTCAAGAGTG ACATTCACGT GCCAGGCCTC CTTCGACCCC
    TCCTTGCAGC GCAGCATCAC CTGGCGCAGG GATGGCCGAA ACCTCCAGGA GCTTGGGGAT
    AGTGACAAGT ACTTCATAGA GGACGGGCGC CTGGTCATTC ACAGCTTGGA CTACAGTGAC
    CAAGGCAACT ACAGCTGTGT GGCCAGCACC AAGCTGGATG TGGTGGAAAG CAAGGCGGAG
    CTCCTGGTGG TGGGGAGCCC TGGGCCAGTG CCTCAGTTGG AGCTGTCCGG TCGTCACCTG
    CTGAAGCAGA GCCAGGTGCA CCTGTCTTGG AGTCCCGCTG ACGACCACAA CTCCCCCATT
    GAGAAGTATG ACATTGAATT TGAAGACAAG GAGATGGCAC CTGAGAAATG GTACAGTCTG
    GGCAAGGTGC CTGGAAACCA GACCTCCACC ACCCTCAAGC TCTCACCCTA TGTCCACTAC
    ACCTTTAGAG TTACTGCCAT CAACAAATAC GGCCCCGGGG AGCCCAGCCC GGCTTCTGAG
    ACTGTGGTCA CACCTGAGGC AGCCCCGGAG AAGAACCCCG TGGACGTGAG GGGGGAAGGC
    AATGAGACCA ACAACATGGT CATCACTTGG AAGCCGCTCA GGTGGATGGA CTGGAATGCC
    CCCCATGTTC AGTATCGCGT GCAGTGGCGC CCTCAGGGGC TGCGGGGCGC CTGGCAGGAA
    CAGATCGTGA ATGACCCCTT CCTAGTGGTG TCCAACACGT CCACCTTTGT ACCCTATGAG
    ATCAAGGTCC AGGCCATCAA CAGCCAGGGC AAAGGCCCCG AGCCCCAGGT CACCATTGGC
    TACTCTGGAG AAGACTACCC CCAGGCAAGC CCTCAGCTGG AAGACGTCAA GATCCTCAAC
    TCGAGCACCG TGCTGGTCAA GTGGTGGCCC TTGGACCCAG CCCAGGTCAA GGGTCACCTC
    CGCGGATATA ATGTGACATA CTGGTGGGAG GGCAGTCAGA GGAAGCACAG CAAGAGGCAT
    GTCCACAAAG GCCACGTGGT GGTGCCTGCC AACACCACCA GCACCATCCT GGGAGGCCTG
    CGGCCCTACA GCTCCTACCA TCTGGAGGTG CAGGCTTTTA ATGGCCGGGG CCTGGGACCC
    GCCAGCAAGA TGACCTTCAG CACCCCAGAG GGCGTGCCCG GCCACCCTGA GGCATTGCAC
    CTGGAGTGCC AGTCGAACAC CAGTCTGCTG CTGCACTGGC AGCCTCCGCT CAGTCACAAT
    GGCGTGCTCA CTGGCTACGT GCTCTCTTAC CACTCACTGG ATGATGGGGT CATGGAGCAG
    TTGTCCTTCA ACCTTTCGGA CCCTGAGCTG CGGATGCACA ACCTGACCAA CCTCAGCCCC
    CACCTGAGGT ACCGCTTCCA GCTTCAGGCC ACCACTAAGG AGGGCCCTGG TGAGGCCATT
    GTGCAAGAAG GAGGCACGAT GGCCTTATCT GGGACTCTGG ATTTTGGCAA TATCTCGGCC
    ATGGCTGGAG AGAATTACAG CGTGGTCTCC TGGGTCCCCA AGGAGGGCCA GTGCAACTTT
    GGGTTCCAGA TCTCGTTCAA AGCCCGGGGA GAAGAGAAGA TGGGTGCTTA TCTACCGCCA
    CAGTACGTCA GCTACAACCA GAGGTCCTAC ACGCAGTGGG ACTTGCAGCC TGATACCGAC
    TACGACATCT GTCTACTCAA GAACACGGTG CTCCTACACC AGATGGCTGT GAAGACGAAC
    GGCACTGGCC GAATGAGACT CCCTCCTCCT GGCTTTGCCA CTGAGGGCTG GTTTATCGGC
    TTCATCAGCG CCATCATTCT CTTGCTCCTC ATCTTGCTCA TCCTCTGCTT TATCAAGCGC
    AGCAAGGGTG GCAAGTACTC AGTGAAGGAT AAAGAGGACA CCCAGGTGGA CTCCGAGGCC
    CGGCCGATGA AGGACGAGAC CTTTGGCGAG TACAGCGACA ACGAGGAGAA GGCCTTCGGC
    AGCAGCCAGC CATCCCTCAA TGGAGACATC AAGCCCCTGG GCAGCGACGA CAGCCTGGCT
    GACTATGGGG GCAGCGTGGA CGTCCAGTTC AACGAGGACG GCTCTTTCAT TGGCCAGTAC
    AGCGGCAAGA AGGAGAAGGA GGCGGCAGGA GGCAACGACA GCTCAGGGGC TGCCTCCCCC
    ATCAACCCTG CAGGGACCCT GGAGTAG

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

    RefSeq XP_006915353.1
    CDS106..3852
    Translation

    Target ORF information:

    RefSeq Version XM_006915291.3
    Organism Pteropus alecto(black flying fox)
    Definition Pteropus alecto L1 cell adhesion molecule (L1CAM), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006915291.3

    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
    ATGGCCGTGG CGCTGCGGTA CTTGTGGCCT CTCCTCCTGT GCAGCCCCTG CCTGCTCATC 
    CAGATCCCCG AGGAATTGAT GGAGCCACCT GTCATCACGG ATCAGTCTCC ACGGCGCCTG
    GTTGTCTTCC CCACAGATGA CATAAGCCTC AAGTGTGAGG CCACCGGCAA ACCCGAAGTG
    CAGTTCCGCT GGACTCGAGA TGGTGTCCAC TTCAAACCCA AGGAGGAGCT GGGTGTGACC
    GTGCACCAGG CGCCCCGCTC CGGCTCCTTC ACCATCACCG GCAACAACAG CAACTTTGCC
    CAGAGGTTCC AGGGCACCTA TCGCTGCTTT GCCAGCAATA AGCTGGGCAC CGCCATGTCC
    CATGAGATCC AGCTCATGGC CGAGGGTGCC CCCAAGTGGC CAAAGGAGAC CGTAAAACCT
    GTCGAGGTAG AGGAAGGGGA GTCAGTGATT CTGCCTTGCC ACCCTCCACC CAGCGCAGAG
    CCTCTCCGGA TCTACTGGAT GAACAGCAAG ATCTTGCATA TAAAACAGGA CGAGCGGGTG
    ACGATGGGCC AGAATGGCAA CCTCTACTTT GCCAACGTGC TCACCTCGGA CAATCACTCA
    GACTACATCT GCCACGCCCA CTTCCCTGGC ACCCGGACCA TCATTCAAAA GGAACCCATT
    GACCTCCGGG TCAAGGCCAC CAACAGCATG ATCGACAGGA AGCCACGCCT GCTCTTTCCC
    ACCAATGCCA GCAGCCACCT GGTGGCCCTG CAGGGGCAGC CGTTGGTCCT GGAGTGCATC
    GCTGAGGGCT TCCCCACGCC CACCATCAAG TGGCTTCGCC CAAGTGGCCA CATGCCAGCC
    GACCGAGTCA CCTACCAGAA CCACAACAAG ACCCTGCACC TGCTGGATAT GGGCGAAGAG
    GACGACGGCG AGTACCGCTG CCTGGCTGAG AACTCACTAG GCAGTGACCG GCACACTTAC
    TACGTCACCG TGGAGGCTGC CCCGTACTGG CTGCACAAGC CCCAGAGCCA TCTGTATGGG
    CCAGGGGAAA CTGCCCGCCT GGACTGCCAA GTGCAGGGCA GGCCCAAACC AGAAGTCACC
    TGGAGAATCA ATGGGATCCC TGTGGAGGAG CTGGGCAAGG ACCAGAAGTA CCGGATCCAG
    CATGGAGCCC TGACCCTGAG CAATGTGCAG CCCAGCGACA CGATGGTCAC CCAGTGCGAG
    GCCCGCAACC GGCATGGGGT CCTGCTGGCC AATGCCTACA TCTATGTTGT CCAGCTACCA
    GCCAAGATCC TGACCCCAGA CAATGAGACC TACTTGGCGG TCGAGGGCAG CACTGCCTAC
    CTTCTGTGCA AGGCCTTCGG AGCCCCTGTG CCCGGCGTCC AGTGGCTGGA CAAGGAAGGA
    AAGACCGTGC TGCAGGACGA ACGCTTCTTC CCCTACACCA ATGGGACCCT GGGCATCCGG
    GACCTCCAGG CCAATGACAC CGGACACTAC TACTGCCAGG CTGCTAATGA CCAAAACAAC
    GTAACCATTG TGGCGAACCT GCAGGTCAAA GATGCCACTC AGATCACACA GGGACCCCAG
    AACGCAATCG AGAAGAAAGG CTCAAGAGTG ACATTCACGT GCCAGGCCTC CTTCGACCCC
    TCCTTGCAGC GCAGCATCAC CTGGCGCAGG GATGGCCGAA ACCTCCAGGA GCTTGGGGAT
    AGTGACAAGT ACTTCATAGA GGACGGGCGC CTGGTCATTC ACAGCTTGGA CTACAGTGAC
    CAAGGCAACT ACAGCTGTGT GGCCAGCACC AAGCTGGATG TGGTGGAAAG CAAGGCGGAG
    CTCCTGGTGG TGGGGAGCCC TGGGCCAGTG CCTCAGTTGG AGCTGTCCGG TCGTCACCTG
    CTGAAGCAGA GCCAGGTGCA CCTGTCTTGG AGTCCCGCTG ACGACCACAA CTCCCCCATT
    GAGAAGTATG ACATTGAATT TGAAGACAAG GAGATGGCAC CTGAGAAATG GTACAGTCTG
    GGCAAGGTGC CTGGAAACCA GACCTCCACC ACCCTCAAGC TCTCACCCTA TGTCCACTAC
    ACCTTTAGAG TTACTGCCAT CAACAAATAC GGCCCCGGGG AGCCCAGCCC GGCTTCTGAG
    ACTGTGGTCA CACCTGAGGC AGCCCCGGAG AAGAACCCCG TGGACGTGAG GGGGGAAGGC
    AATGAGACCA ACAACATGGT CATCACTTGG AAGCCGCTCA GGTGGATGGA CTGGAATGCC
    CCCCATGTTC AGTATCGCGT GCAGTGGCGC CCTCAGGGGC TGCGGGGCGC CTGGCAGGAA
    CAGATCGTGA ATGACCCCTT CCTAGTGGTG TCCAACACGT CCACCTTTGT ACCCTATGAG
    ATCAAGGTCC AGGCCATCAA CAGCCAGGGC AAAGGCCCCG AGCCCCAGGT CACCATTGGC
    TACTCTGGAG AAGACTACCC CCAGGCAAGC CCTCAGCTGG AAGACGTCAA GATCCTCAAC
    TCGAGCACCG TGCTGGTCAA GTGGTGGCCC TTGGACCCAG CCCAGGTCAA GGGTCACCTC
    CGCGGATATA ATGTGACATA CTGGTGGGAG GGCAGTCAGA GGAAGCACAG CAAGAGGCAT
    GTCCACAAAG GCCACGTGGT GGTGCCTGCC AACACCACCA GCACCATCCT GGGAGGCCTG
    CGGCCCTACA GCTCCTACCA TCTGGAGGTG CAGGCTTTTA ATGGCCGGGG CCTGGGACCC
    GCCAGCAAGA TGACCTTCAG CACCCCAGAG GGCGTGCCCG GCCACCCTGA GGCATTGCAC
    CTGGAGTGCC AGTCGAACAC CAGTCTGCTG CTGCACTGGC AGCCTCCGCT CAGTCACAAT
    GGCGTGCTCA CTGGCTACGT GCTCTCTTAC CACTCACTGG ATGATGGGGT CATGGAGCAG
    TTGTCCTTCA ACCTTTCGGA CCCTGAGCTG CGGATGCACA ACCTGACCAA CCTCAGCCCC
    CACCTGAGGT ACCGCTTCCA GCTTCAGGCC ACCACTAAGG AGGGCCCTGG TGAGGCCATT
    GTGCAAGAAG GAGGCACGAT GGCCTTATCT GGGACTCTGG ATTTTGGCAA TATCTCGGCC
    ATGGCTGGAG AGAATTACAG CGTGGTCTCC TGGGTCCCCA AGGAGGGCCA GTGCAACTTT
    GGGTTCCAGA TCTCGTTCAA AGCCCGGGGA GAAGAGAAGA TGGGTGCTTA TCTACCGCCA
    CAGTACGTCA GCTACAACCA GAGGTCCTAC ACGCAGTGGG ACTTGCAGCC TGATACCGAC
    TACGACATCT GTCTACTCAA GAACACGGTG CTCCTACACC AGATGGCTGT GAAGACGAAC
    GGCACTGGCC GAATGAGACT CCCTCCTCCT GGCTTTGCCA CTGAGGGCTG GTTTATCGGC
    TTCATCAGCG CCATCATTCT CTTGCTCCTC ATCTTGCTCA TCCTCTGCTT TATCAAGCGC
    AGCAAGGGTG GCAAGTACTC AGTGAAGGAT AAAGAGGACA CCCAGGTGGA CTCCGAGGCC
    CGGCCGATGA AGGACGAGAC CTTTGGCGAG TACAGCGACA ACGAGGAGAA GGCCTTCGGC
    AGCAGCCAGC CATCCCTCAA TGGAGACATC AAGCCCCTGG GCAGCGACGA CAGCCTGGCT
    GACTATGGGG GCAGCGTGGA CGTCCAGTTC AACGAGGACG GCTCTTTCAT TGGCCAGTAC
    AGCGGCAAGA AGGAGAAGGA GGCGGCAGGA GGCAACGACA GCTCAGGGGC TGCCTCCCCC
    ATCAACCCTG CAGGGACCCT GGAGTAG

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