LOC102789728 cDNA ORF clone, Neolamprologus brichardi

The following LOC102789728 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC102789728 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
ONe80038 XM_006799225.1
Latest version!
Neolamprologus brichardi activated CDC42 kinase 1-like (LOC102789728), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ONe80036 XM_006799223.1
Latest version!
Neolamprologus brichardi activated CDC42 kinase 1-like (LOC102789728), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONe80037 XM_006799224.1
Latest version!
Neolamprologus brichardi activated CDC42 kinase 1-like (LOC102789728), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 ONe80038
    Clone ID Related Accession (Same CDS sequence) XM_006799225.1
    Accession Version XM_006799225.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2994bp)
    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 2014-02-09
    Organism Neolamprologus brichardi
    Product activated CDC42 kinase 1-like isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006272062.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Neolamprologus brichardi Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 5.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    ATGCAGTGTG AGGAGGGCAC AGAGTGGCTG CTGGAGCTGC TGACAGACGT GCAGCTGCAG 
    CAGTACTTCC TGCGGATCCG TGATGATCTC AACGTCACAC GACTCTCACA CTTTGACTAC
    GTCAAGAATG AAGACCTGGA GAAGATCGGC ATGGGACGCC CAGGTCAGAG GAGGCTCTGG
    GAGGCAGTCA AGAGGAGACG AGCCCTTTAT AAAAGAAAAT CCTGGATGAG CAAGGTGTTT
    CCAGTGAAAC GACCAGACGC TGACACGCAG CAGCCCCACG GGGCATCGTC TGCTGAAGTC
    CCGGCCAGTA GTGAGTCAGG GGCCGCGCTC ACCTGCCTGA TTAGAGAGTC GGAGCTTCAG
    CTGTTCGAGC GGCTTGGAGA CGGGACATTC GGGGTGGTGC GGCGAGGAGA GTGGACTGCA
    CCCAACGGCA GAGTGTTGTC AGTGGCAGTA AAATGCCTGA AATCAAATGT ACTGGACTCA
    GACGGTCTGG ATGATTTCAT CAGAGAGGTG AATGCCATGC ATTCACTGAG CCACCAAAAC
    CTCATCCGCC TGTATGGCAT CGTCCTCACA CAGCCTATGA AGATGGTGAC TGAGCTGGCT
    CCTCTGGGCT CCCTGTTGGA TCGGCTCAGA AAGCGGCAGG GTCACATCCT CATCTCCTCG
    CTGTGTAACT ATGCCGTGCA GGTGGCCTGT GGGATGGCTT ACCTGGAGCA GAAGCGTTTC
    CTCCACAGGG ACCTCGCAGC CCGTAATGTG CTTCTGTCCA CCAATGAAAC TGTGAAGATC
    GGAGACTTTG GCCTAATGAG GGCACTGCCT AAACACACCG ACCAATACGT CATGGAGGAA
    GGCCACAAAA TCCCTTTCCC ATGGTGTGCT CCAGAGTCTC TGAAGTCTCG CACTTTCTCT
    CACGCATCTG ACACCTGGAT GTTTGGGGTC ACCCTTTGGG AGATGTTCAC CCACGGACAG
    GAGCCGTGGC TGGGTCTGAA TGGGAGCCAG ATCCTTCACA AGGTGGACGT GGAAGCTGAG
    AGGCTGTGTA AACCAGACGA TTGTCCTCAG GATATCTACA ATGTGATGCT GCAGTGCTGG
    AGCCCCAAAC CTGAAGACAG ACCAACTTTC ATTGCCCTCA GAGACTTCCT GCTCGAGACC
    ATGCCCACAG ATATGAGAGC CCTGCAGGAC TTTGAGGAGG AAGACAAGCT CCAGATTACA
    ATGAATGATG TAATCACCAT CATTGAAGGA AGGGCAGAGC ACTACTGGTG GCGAGGTCAG
    AACAGGCGCA CACTGCGTGT CGGTCAGTTT CCCCGTCATG TAGTGACGTC AGTCGCCGGT
    CTTTCCGCCC AGGACATCAG CCGGCCACTT AAACACTCTT TTATACACAC TGGACATGGA
    GACACAGACC CCCAGAGGAG CTGGGGACAC GCAGACCGCA TAGACAGCCT GTACTTGGGG
    AACCCCATGG ACCCTCCTGA TGTCCTGGGA ATGGATTCAG GCATTGCGAG ACCGACCAAA
    CTTCCCAACC GTGCCAAGAA GCTACCTCCC CCTCGTCCAC CCCAACCAGC CGTTCTGCTC
    AAGAAGCCGT TCTACGACTC TGTGATGGAC GATTACGATG ACGAGGAAGA CGCCAGCGCG
    TCGTCTGGGT TGAAGAAGCT GGGAGCATCC CTGGGTCTGA AGCTTCGGCC GTGGGAGGGG
    ACAGGCGTGC GTTCAGCCAA GAGCGAGGTG TCGCTTATTG ACTTCACAGA TGACAGTTTC
    AGCTCTACCA CACCTTCTCC GCTCACTGAG TCTCGGCAGC TGGATGAGGA CACCCTAAAG
    GACACTCCCT CCATTCTGGA CTGGCCTCTC CCCCAGCCAG CGTACGATGA AGTTACTGCA
    GAGCCTGCGG ATCAATCAGA GGACCAGGAA GTGCGGTCCA TATACAAAGG GTTGACTGAA
    GAAGCTTCTT CATCCGCTGG TGGTGGCTTG ACAGGAAGGA GCGAATCCCA GTCAGCTGAC
    CTCTTCCAGG AGCTACAGAG GGAGGTGATG GTGAAGCTGC AGGTTCCAAT GGCAACAGGC
    CGCTCCCTCC CCTCCTCCCC ACTCCCCATG CCTCTGGCTC CTTTGGGCCC GCACCGACAG
    ATCTATCTTC CCCCTCCATC TCCCTCGTCT GCCTCCTCCT TCGCCTCCTG CTTTGAGGAC
    AGGCCTGTGC TGCCTCCTCG CAGTCCCGTC CCTCCTCTGC GTCCCTCCAA ACACAACCTC
    TCCGCCCGTG CCATAAACCC AGAAGCACGC ACCAGCTCCA TTTCACTGGG CAACGATGAT
    GACACACCTC CTCAGATCCC ACCCAGAGAC CACGCCTTTT CTCAGCCAGG CTCCCGCTCC
    TCGTCACCTG TAGCATTGCC ACCTCCTCCT CTCGCCGTCT CGCCCCGTCG GGCATCGGGA
    CTGCTGGGTC CACTCCTGTC CTCCAACTCT CCATCGTCGT CTTCCTCTTT GCCTCAAGCT
    TCATCCCATT CCTCACGCTT AGGACTTCCT GGCTCATCGT ACTCCTCCAC GTCCTTACTG
    GATCCACTCG CCTTTCGTGA GGGGCGTGGC CTTTCCTCAC TGATTGACAG TTCGCAGAGC
    TCTGCCCCCG TTCCACTGCC GGAGAGACCA GCTTTCCTGG AGAGATACGG AGCAGCCAAC
    ATGGCGGCAG TCAAACCTAT GATGCAGCAG CACCCTAGTG GAGCCAAACC GAACACCTCC
    TACAACAACA ATAACGGCCG AGCTGCAGCT CCCAGCATTC AACGGGAACA GAGCATCACA
    CAGGTCCAAG GAGCTGTGCA CGGTGTCACG ATAGAGGAGT GTCAGGCTGC TCTGCAGAGC
    CACGAGTGGA GCATCCCTCA GGCCATAAAC CATTTAAAGG TCGAGCAGCT GTTTCGGCTA
    GGGCTGCGTT CAAGAGCCGA GTGCGAGGAG CTGCTGCAGC ATCACCAGTG GGACCTGGAA
    CATGCCAGCA CGGTCATGCT GGACACATAC GGACCACATC GCAACAGGAA GTGA

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

    RefSeq XP_006799288.1
    CDS74..3067
    Translation

    Target ORF information:

    RefSeq Version XM_006799225.1
    Organism Neolamprologus brichardi
    Definition Neolamprologus brichardi activated CDC42 kinase 1-like (LOC102789728), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006799225.1

    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
    ATGCAGTGTG AGGAGGGCAC AGAGTGGCTG CTGGAGCTGC TGACAGACGT GCAGCTGCAG 
    CAGTACTTCC TGCGGATCCG TGATGATCTC AACGTCACAC GACTCTCACA CTTTGACTAC
    GTCAAGAATG AAGACCTGGA GAAGATCGGC ATGGGACGCC CAGGTCAGAG GAGGCTCTGG
    GAGGCAGTCA AGAGGAGACG AGCCCTTTAT AAAAGAAAAT CCTGGATGAG CAAGGTGTTT
    CCAGTGAAAC GACCAGACGC TGACACGCAG CAGCCCCACG GGGCATCGTC TGCTGAAGTC
    CCGGCCAGTA GTGAGTCAGG GGCCGCGCTC ACCTGCCTGA TTAGAGAGTC GGAGCTTCAG
    CTGTTCGAGC GGCTTGGAGA CGGGACATTC GGGGTGGTGC GGCGAGGAGA GTGGACTGCA
    CCCAACGGCA GAGTGTTGTC AGTGGCAGTA AAATGCCTGA AATCAAATGT ACTGGACTCA
    GACGGTCTGG ATGATTTCAT CAGAGAGGTG AATGCCATGC ATTCACTGAG CCACCAAAAC
    CTCATCCGCC TGTATGGCAT CGTCCTCACA CAGCCTATGA AGATGGTGAC TGAGCTGGCT
    CCTCTGGGCT CCCTGTTGGA TCGGCTCAGA AAGCGGCAGG GTCACATCCT CATCTCCTCG
    CTGTGTAACT ATGCCGTGCA GGTGGCCTGT GGGATGGCTT ACCTGGAGCA GAAGCGTTTC
    CTCCACAGGG ACCTCGCAGC CCGTAATGTG CTTCTGTCCA CCAATGAAAC TGTGAAGATC
    GGAGACTTTG GCCTAATGAG GGCACTGCCT AAACACACCG ACCAATACGT CATGGAGGAA
    GGCCACAAAA TCCCTTTCCC ATGGTGTGCT CCAGAGTCTC TGAAGTCTCG CACTTTCTCT
    CACGCATCTG ACACCTGGAT GTTTGGGGTC ACCCTTTGGG AGATGTTCAC CCACGGACAG
    GAGCCGTGGC TGGGTCTGAA TGGGAGCCAG ATCCTTCACA AGGTGGACGT GGAAGCTGAG
    AGGCTGTGTA AACCAGACGA TTGTCCTCAG GATATCTACA ATGTGATGCT GCAGTGCTGG
    AGCCCCAAAC CTGAAGACAG ACCAACTTTC ATTGCCCTCA GAGACTTCCT GCTCGAGACC
    ATGCCCACAG ATATGAGAGC CCTGCAGGAC TTTGAGGAGG AAGACAAGCT CCAGATTACA
    ATGAATGATG TAATCACCAT CATTGAAGGA AGGGCAGAGC ACTACTGGTG GCGAGGTCAG
    AACAGGCGCA CACTGCGTGT CGGTCAGTTT CCCCGTCATG TAGTGACGTC AGTCGCCGGT
    CTTTCCGCCC AGGACATCAG CCGGCCACTT AAACACTCTT TTATACACAC TGGACATGGA
    GACACAGACC CCCAGAGGAG CTGGGGACAC GCAGACCGCA TAGACAGCCT GTACTTGGGG
    AACCCCATGG ACCCTCCTGA TGTCCTGGGA ATGGATTCAG GCATTGCGAG ACCGACCAAA
    CTTCCCAACC GTGCCAAGAA GCTACCTCCC CCTCGTCCAC CCCAACCAGC CGTTCTGCTC
    AAGAAGCCGT TCTACGACTC TGTGATGGAC GATTACGATG ACGAGGAAGA CGCCAGCGCG
    TCGTCTGGGT TGAAGAAGCT GGGAGCATCC CTGGGTCTGA AGCTTCGGCC GTGGGAGGGG
    ACAGGCGTGC GTTCAGCCAA GAGCGAGGTG TCGCTTATTG ACTTCACAGA TGACAGTTTC
    AGCTCTACCA CACCTTCTCC GCTCACTGAG TCTCGGCAGC TGGATGAGGA CACCCTAAAG
    GACACTCCCT CCATTCTGGA CTGGCCTCTC CCCCAGCCAG CGTACGATGA AGTTACTGCA
    GAGCCTGCGG ATCAATCAGA GGACCAGGAA GTGCGGTCCA TATACAAAGG GTTGACTGAA
    GAAGCTTCTT CATCCGCTGG TGGTGGCTTG ACAGGAAGGA GCGAATCCCA GTCAGCTGAC
    CTCTTCCAGG AGCTACAGAG GGAGGTGATG GTGAAGCTGC AGGTTCCAAT GGCAACAGGC
    CGCTCCCTCC CCTCCTCCCC ACTCCCCATG CCTCTGGCTC CTTTGGGCCC GCACCGACAG
    ATCTATCTTC CCCCTCCATC TCCCTCGTCT GCCTCCTCCT TCGCCTCCTG CTTTGAGGAC
    AGGCCTGTGC TGCCTCCTCG CAGTCCCGTC CCTCCTCTGC GTCCCTCCAA ACACAACCTC
    TCCGCCCGTG CCATAAACCC AGAAGCACGC ACCAGCTCCA TTTCACTGGG CAACGATGAT
    GACACACCTC CTCAGATCCC ACCCAGAGAC CACGCCTTTT CTCAGCCAGG CTCCCGCTCC
    TCGTCACCTG TAGCATTGCC ACCTCCTCCT CTCGCCGTCT CGCCCCGTCG GGCATCGGGA
    CTGCTGGGTC CACTCCTGTC CTCCAACTCT CCATCGTCGT CTTCCTCTTT GCCTCAAGCT
    TCATCCCATT CCTCACGCTT AGGACTTCCT GGCTCATCGT ACTCCTCCAC GTCCTTACTG
    GATCCACTCG CCTTTCGTGA GGGGCGTGGC CTTTCCTCAC TGATTGACAG TTCGCAGAGC
    TCTGCCCCCG TTCCACTGCC GGAGAGACCA GCTTTCCTGG AGAGATACGG AGCAGCCAAC
    ATGGCGGCAG TCAAACCTAT GATGCAGCAG CACCCTAGTG GAGCCAAACC GAACACCTCC
    TACAACAACA ATAACGGCCG AGCTGCAGCT CCCAGCATTC AACGGGAACA GAGCATCACA
    CAGGTCCAAG GAGCTGTGCA CGGTGTCACG ATAGAGGAGT GTCAGGCTGC TCTGCAGAGC
    CACGAGTGGA GCATCCCTCA GGCCATAAAC CATTTAAAGG TCGAGCAGCT GTTTCGGCTA
    GGGCTGCGTT CAAGAGCCGA GTGCGAGGAG CTGCTGCAGC ATCACCAGTG GGACCTGGAA
    CATGCCAGCA CGGTCATGCT GGACACATAC GGACCACATC GCAACAGGAA GTGA

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

    CloneID ONe80036
    Clone ID Related Accession (Same CDS sequence) XM_006799223.1
    Accession Version XM_006799223.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3093bp)
    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 2014-02-09
    Organism Neolamprologus brichardi
    Product activated CDC42 kinase 1-like isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006272062.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Neolamprologus brichardi Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 5.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    ATGGGGGAGA GCTATATGTA CCAGCGACTC CCCTACACCA GAGGAGAGGG GGAGGGGGAG 
    GACGAAGAGG CGGGAGACAG GAGTGTCGGT GGACAAATGA TGCAGTGTGA GGAGGGCACA
    GAGTGGCTGC TGGAGCTGCT GACAGACGTG CAGCTGCAGC AGTACTTCCT GCGGATCCGT
    GATGATCTCA ACGTCACACG ACTCTCACAC TTTGACTACG TCAAGAATGA AGACCTGGAG
    AAGATCGGCA TGGGACGCCC AGGTCAGAGG AGGCTCTGGG AGGCAGTCAA GAGGAGACGA
    GCCCTTTATA AAAGAAAATC CTGGATGAGC AAGGTGTTTC CAGTGAAACG ACCAGACGCT
    GACACGCAGC AGCCCCACGG GGCATCGTCT GCTGAAGTCC CGGCCAGTAG TGAGTCAGGG
    GCCGCGCTCA CCTGCCTGAT TAGAGAGTCG GAGCTTCAGC TGTTCGAGCG GCTTGGAGAC
    GGGACATTCG GGGTGGTGCG GCGAGGAGAG TGGACTGCAC CCAACGGCAG AGTGTTGTCA
    GTGGCAGTAA AATGCCTGAA ATCAAATGTA CTGGACTCAG ACGGTCTGGA TGATTTCATC
    AGAGAGGTGA ATGCCATGCA TTCACTGAGC CACCAAAACC TCATCCGCCT GTATGGCATC
    GTCCTCACAC AGCCTATGAA GATGGTGACT GAGCTGGCTC CTCTGGGCTC CCTGTTGGAT
    CGGCTCAGAA AGCGGCAGGG TCACATCCTC ATCTCCTCGC TGTGTAACTA TGCCGTGCAG
    GTGGCCTGTG GGATGGCTTA CCTGGAGCAG AAGCGTTTCC TCCACAGGGA CCTCGCAGCC
    CGTAATGTGC TTCTGTCCAC CAATGAAACT GTGAAGATCG GAGACTTTGG CCTAATGAGG
    GCACTGCCTA AACACACCGA CCAATACGTC ATGGAGGAAG GCCACAAAAT CCCTTTCCCA
    TGGTGTGCTC CAGAGTCTCT GAAGTCTCGC ACTTTCTCTC ACGCATCTGA CACCTGGATG
    TTTGGGGTCA CCCTTTGGGA GATGTTCACC CACGGACAGG AGCCGTGGCT GGGTCTGAAT
    GGGAGCCAGA TCCTTCACAA GGTGGACGTG GAAGCTGAGA GGCTGTGTAA ACCAGACGAT
    TGTCCTCAGG ATATCTACAA TGTGATGCTG CAGTGCTGGA GCCCCAAACC TGAAGACAGA
    CCAACTTTCA TTGCCCTCAG AGACTTCCTG CTCGAGACCA TGCCCACAGA TATGAGAGCC
    CTGCAGGACT TTGAGGAGGA AGACAAGCTC CAGATTACAA TGAATGATGT AATCACCATC
    ATTGAAGGAA GGGCAGAGCA CTACTGGTGG CGAGGTCAGA ACAGGCGCAC ACTGCGTGTC
    GGTCAGTTTC CCCGTCATGT AGTGACGTCA GTCGCCGGTC TTTCCGCCCA GGACATCAGC
    CGGCCACTTA AACACTCTTT TATACACACT GGACATGGAG ACACAGACCC CCAGAGGAGC
    TGGGGACACG CAGACCGCAT AGACAGCCTG TACTTGGGGA ACCCCATGGA CCCTCCTGAT
    GTCCTGGGAA TGGATTCAGG CATTGCGAGA CCGACCAAAC TTCCCAACCG TGCCAAGAAG
    CTACCTCCCC CTCGTCCACC CCAACCAGCC GTTCTGCTCA AGAAGCCGTT CTACGACTCT
    GTGATGGACG ATTACGATGA CGAGGAAGAC GCCAGCGCGT CGTCTGGGTT GAAGAAGCTG
    GGAGCATCCC TGGGTCTGAA GCTTCGGCCG TGGGAGGGGA CAGGCGTGCG TTCAGCCAAG
    AGCGAGGTGT CGCTTATTGA CTTCACAGAT GACAGTTTCA GCTCTACCAC ACCTTCTCCG
    CTCACTGAGT CTCGGCAGCT GGATGAGGAC ACCCTAAAGG ACACTCCCTC CATTCTGGAC
    TGGCCTCTCC CCCAGCCAGC GTACGATGAA GTTACTGCAG AGCCTGCGGA TCAATCAGAG
    GACCAGGAAG TGCGGTCCAT ATACAAAGGG TTGACTGAAG AAGCTTCTTC ATCCGCTGGT
    GGTGGCTTGA CAGGAAGGAG CGAATCCCAG TCAGCTGACC TCTTCCAGGA GCTACAGAGG
    GAGGTGATGG TGAAGCTGCA GGTTCCAATG GCAACAGGCC GCTCCCTCCC CTCCTCCCCA
    CTCCCCATGC CTCTGGCTCC TTTGGGCCCG CACCGACAGA TCTATCTTCC CCCTCCATCT
    CCCTCGTCTG CCTCCTCCTT CGCCTCCTGC TTTGAGGACA GGCCTGTGCT GCCTCCTCGC
    AGTCCCGTCC CTCCTCTGCG TCCCTCCAAA CACAACCTCT CCGCCCGTGC CATAAACCCA
    GAAGCACGCA CCAGCTCCAT TTCACTGGGC AACGATGATG ACACACCTCC TCAGATCCCA
    CCCAGAGACC ACGCCTTTTC TCAGCCAGGC TCCCGCTCCT CGTCACCTGT AGCATTGCCA
    CCTCCTCCTC TCGCCGTCTC GCCCCGTCGG GCATCGGGAC TGCTGGGTCC ACTCCTGTCC
    TCCAACTCTC CATCGTCGTC TTCCTCTTTG CCTCAAGCTT CATCCCATTC CTCACGCTTA
    GGACTTCCTG GCTCATCGTA CTCCTCCACG TCCTTACTGG ATCCACTCGC CTTTCGTGAG
    GGGCGTGGCC TTTCCTCACT GATTGACAGT TCGCAGAGCT CTGCCCCCGT TCCACTGCCG
    GAGAGACCAG CTTTCCTGGA GAGATACGGA GCAGCCAACA TGGCGGCAGT CAAACCTATG
    ATGCAGCAGC ACCCTAGTGG AGCCAAACCG AACACCTCCT ACAACAACAA TAACGGCCGA
    GCTGCAGCTC CCAGCATTCA ACGGGAACAG AGCATCACAC AGGTCCAAGG AGCTGTGCAC
    GGTGTCACGA TAGAGGAGTG TCAGGCTGCT CTGCAGAGCC ACGAGTGGAG CATCCCTCAG
    GCCATAAACC ATTTAAAGGT CGAGCAGCTG TTTCGGCTAG GGCTGCGTTC AAGAGCCGAG
    TGCGAGGAGC TGCTGCAGCA TCACCAGTGG GACCTGGAAC ATGCCAGCAC GGTCATGCTG
    GACACATACG GACCACATCG CAACAGGAAG TGA

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

    RefSeq XP_006799286.1
    CDS571..3663
    Translation

    Target ORF information:

    RefSeq Version XM_006799223.1
    Organism Neolamprologus brichardi
    Definition Neolamprologus brichardi activated CDC42 kinase 1-like (LOC102789728), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006799223.1

    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
    ATGGGGGAGA GCTATATGTA CCAGCGACTC CCCTACACCA GAGGAGAGGG GGAGGGGGAG 
    GACGAAGAGG CGGGAGACAG GAGTGTCGGT GGACAAATGA TGCAGTGTGA GGAGGGCACA
    GAGTGGCTGC TGGAGCTGCT GACAGACGTG CAGCTGCAGC AGTACTTCCT GCGGATCCGT
    GATGATCTCA ACGTCACACG ACTCTCACAC TTTGACTACG TCAAGAATGA AGACCTGGAG
    AAGATCGGCA TGGGACGCCC AGGTCAGAGG AGGCTCTGGG AGGCAGTCAA GAGGAGACGA
    GCCCTTTATA AAAGAAAATC CTGGATGAGC AAGGTGTTTC CAGTGAAACG ACCAGACGCT
    GACACGCAGC AGCCCCACGG GGCATCGTCT GCTGAAGTCC CGGCCAGTAG TGAGTCAGGG
    GCCGCGCTCA CCTGCCTGAT TAGAGAGTCG GAGCTTCAGC TGTTCGAGCG GCTTGGAGAC
    GGGACATTCG GGGTGGTGCG GCGAGGAGAG TGGACTGCAC CCAACGGCAG AGTGTTGTCA
    GTGGCAGTAA AATGCCTGAA ATCAAATGTA CTGGACTCAG ACGGTCTGGA TGATTTCATC
    AGAGAGGTGA ATGCCATGCA TTCACTGAGC CACCAAAACC TCATCCGCCT GTATGGCATC
    GTCCTCACAC AGCCTATGAA GATGGTGACT GAGCTGGCTC CTCTGGGCTC CCTGTTGGAT
    CGGCTCAGAA AGCGGCAGGG TCACATCCTC ATCTCCTCGC TGTGTAACTA TGCCGTGCAG
    GTGGCCTGTG GGATGGCTTA CCTGGAGCAG AAGCGTTTCC TCCACAGGGA CCTCGCAGCC
    CGTAATGTGC TTCTGTCCAC CAATGAAACT GTGAAGATCG GAGACTTTGG CCTAATGAGG
    GCACTGCCTA AACACACCGA CCAATACGTC ATGGAGGAAG GCCACAAAAT CCCTTTCCCA
    TGGTGTGCTC CAGAGTCTCT GAAGTCTCGC ACTTTCTCTC ACGCATCTGA CACCTGGATG
    TTTGGGGTCA CCCTTTGGGA GATGTTCACC CACGGACAGG AGCCGTGGCT GGGTCTGAAT
    GGGAGCCAGA TCCTTCACAA GGTGGACGTG GAAGCTGAGA GGCTGTGTAA ACCAGACGAT
    TGTCCTCAGG ATATCTACAA TGTGATGCTG CAGTGCTGGA GCCCCAAACC TGAAGACAGA
    CCAACTTTCA TTGCCCTCAG AGACTTCCTG CTCGAGACCA TGCCCACAGA TATGAGAGCC
    CTGCAGGACT TTGAGGAGGA AGACAAGCTC CAGATTACAA TGAATGATGT AATCACCATC
    ATTGAAGGAA GGGCAGAGCA CTACTGGTGG CGAGGTCAGA ACAGGCGCAC ACTGCGTGTC
    GGTCAGTTTC CCCGTCATGT AGTGACGTCA GTCGCCGGTC TTTCCGCCCA GGACATCAGC
    CGGCCACTTA AACACTCTTT TATACACACT GGACATGGAG ACACAGACCC CCAGAGGAGC
    TGGGGACACG CAGACCGCAT AGACAGCCTG TACTTGGGGA ACCCCATGGA CCCTCCTGAT
    GTCCTGGGAA TGGATTCAGG CATTGCGAGA CCGACCAAAC TTCCCAACCG TGCCAAGAAG
    CTACCTCCCC CTCGTCCACC CCAACCAGCC GTTCTGCTCA AGAAGCCGTT CTACGACTCT
    GTGATGGACG ATTACGATGA CGAGGAAGAC GCCAGCGCGT CGTCTGGGTT GAAGAAGCTG
    GGAGCATCCC TGGGTCTGAA GCTTCGGCCG TGGGAGGGGA CAGGCGTGCG TTCAGCCAAG
    AGCGAGGTGT CGCTTATTGA CTTCACAGAT GACAGTTTCA GCTCTACCAC ACCTTCTCCG
    CTCACTGAGT CTCGGCAGCT GGATGAGGAC ACCCTAAAGG ACACTCCCTC CATTCTGGAC
    TGGCCTCTCC CCCAGCCAGC GTACGATGAA GTTACTGCAG AGCCTGCGGA TCAATCAGAG
    GACCAGGAAG TGCGGTCCAT ATACAAAGGG TTGACTGAAG AAGCTTCTTC ATCCGCTGGT
    GGTGGCTTGA CAGGAAGGAG CGAATCCCAG TCAGCTGACC TCTTCCAGGA GCTACAGAGG
    GAGGTGATGG TGAAGCTGCA GGTTCCAATG GCAACAGGCC GCTCCCTCCC CTCCTCCCCA
    CTCCCCATGC CTCTGGCTCC TTTGGGCCCG CACCGACAGA TCTATCTTCC CCCTCCATCT
    CCCTCGTCTG CCTCCTCCTT CGCCTCCTGC TTTGAGGACA GGCCTGTGCT GCCTCCTCGC
    AGTCCCGTCC CTCCTCTGCG TCCCTCCAAA CACAACCTCT CCGCCCGTGC CATAAACCCA
    GAAGCACGCA CCAGCTCCAT TTCACTGGGC AACGATGATG ACACACCTCC TCAGATCCCA
    CCCAGAGACC ACGCCTTTTC TCAGCCAGGC TCCCGCTCCT CGTCACCTGT AGCATTGCCA
    CCTCCTCCTC TCGCCGTCTC GCCCCGTCGG GCATCGGGAC TGCTGGGTCC ACTCCTGTCC
    TCCAACTCTC CATCGTCGTC TTCCTCTTTG CCTCAAGCTT CATCCCATTC CTCACGCTTA
    GGACTTCCTG GCTCATCGTA CTCCTCCACG TCCTTACTGG ATCCACTCGC CTTTCGTGAG
    GGGCGTGGCC TTTCCTCACT GATTGACAGT TCGCAGAGCT CTGCCCCCGT TCCACTGCCG
    GAGAGACCAG CTTTCCTGGA GAGATACGGA GCAGCCAACA TGGCGGCAGT CAAACCTATG
    ATGCAGCAGC ACCCTAGTGG AGCCAAACCG AACACCTCCT ACAACAACAA TAACGGCCGA
    GCTGCAGCTC CCAGCATTCA ACGGGAACAG AGCATCACAC AGGTCCAAGG AGCTGTGCAC
    GGTGTCACGA TAGAGGAGTG TCAGGCTGCT CTGCAGAGCC ACGAGTGGAG CATCCCTCAG
    GCCATAAACC ATTTAAAGGT CGAGCAGCTG TTTCGGCTAG GGCTGCGTTC AAGAGCCGAG
    TGCGAGGAGC TGCTGCAGCA TCACCAGTGG GACCTGGAAC ATGCCAGCAC GGTCATGCTG
    GACACATACG GACCACATCG CAACAGGAAG TGA

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

    CloneID ONe80037
    Clone ID Related Accession (Same CDS sequence) XM_006799224.1
    Accession Version XM_006799224.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3090bp)
    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 2014-02-09
    Organism Neolamprologus brichardi
    Product activated CDC42 kinase 1-like isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_006272062.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Neolamprologus brichardi Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 5.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    ATGGGGGAGA GCTATATGTA CCAGCGACTC CCCTACACCA GAGGAGAGGG GGAGGGGGAG 
    GACGAAGAGG CGGGAGACAG GAGTGTCGGT GGACAAATGA TGCAGTGTGA GGAGGGCACA
    GAGTGGCTGC TGGAGCTGCT GACAGACGTG CAGCTGCAGC AGTACTTCCT GCGGATCCGT
    GATGATCTCA ACGTCACACG ACTCTCACAC TTTGACTACG TCAAGAATGA AGACCTGGAG
    AAGATCGGCA TGGGACGCCC AGGTCAGAGG AGGCTCTGGG AGGCAGTCAA GAGGAGACGA
    GCCCTTTATA AAAGAAAATC CTGGATGAGC AAGGTGTTTC CAGTGAAACG ACCAGACGCT
    GACACGCAGC AGCCCCACGG GGCATCGTCT GCTGAAGTCC CGGCCAGTAG TGAGTCAGGG
    GCCGCGCTCA CCTGCCTGAT TAGAGAGTCG GAGCTTCAGC TGTTCGAGCG GCTTGGAGAC
    GGGACATTCG GGGTGGTGCG GCGAGGAGAG TGGACTGCAC CCAACGGCAG AGTGTTGTCA
    GTGGCAGTAA AATGCCTGAA ATCAAATGTA CTGGACTCAG ACGGTCTGGA TGATTTCATC
    AGAGAGGTGA ATGCCATGCA TTCACTGAGC CACCAAAACC TCATCCGCCT GTATGGCATC
    GTCCTCACAC AGCCTATGAA GATGGTGACT GAGCTGGCTC CTCTGGGCTC CCTGTTGGAT
    CGGCTCAGAA AGCGGCAGGG TCACATCCTC ATCTCCTCGC TGTGTAACTA TGCCGTGCAG
    GTGGCCTGTG GGATGGCTTA CCTGGAGCAG AAGCGTTTCC TCCACAGGGA CCTCGCAGCC
    CGTAATGTGC TTCTGTCCAC CAATGAAACT GTGAAGATCG GAGACTTTGG CCTAATGAGG
    GCACTGCCTA AACACACCGA CCAATACGTC ATGGAGGAAG GCCACAAAAT CCCTTTCCCA
    TGGTGTGCTC CAGAGTCTCT GAAGTCTCGC ACTTTCTCTC ACGCATCTGA CACCTGGATG
    TTTGGGGTCA CCCTTTGGGA GATGTTCACC CACGGACAGG AGCCGTGGCT GGGTCTGAAT
    GGGAGCCAGA TCCTTCACAA GGTGGACGTG GAAGCTGAGA GGCTGTGTAA ACCAGACGAT
    TGTCCTCAGG ATATCTACAA TGTGATGCTG CAGTGCTGGA GCCCCAAACC TGAAGACAGA
    CCAACTTTCA TTGCCCTCAG AGACTTCCTG CTCGAGACCA TGCCCACAGA TATGAGAGCC
    CTGCAGGACT TTGAGGAGGA AGACAAGCTC CAGATTACAA TGAATGATGT AATCACCATC
    ATTGAAGGAA GGGCAGAGCA CTACTGGTGG CGAGGTCAGA ACAGGCGCAC ACTGCGTGTC
    GGTCAGTTTC CCCGTCATGT AGTGACGTCA GTCGCCGGTC TTTCCGCCCA GGACATCAGC
    CGGCCACTTA AACACTCTTT TATACACACT GGACATGGAG ACACAGACCC CCAGAGGAGC
    TGGGGACACG CAGACCGCAT AGACAGCCTG TACTTGGGGA ACCCCATGGA CCCTCCTGAT
    GTCCTGGGAA TGGATTCAGG CATTGCGAGA CCGACCAAAC TTCCCAACCG TGCCAAGAAG
    CTACCTCCCC CTCGTCCACC CCAACCAGCC GTTCTGCTCA AGAAGCCGTT CTACGACTCT
    GTGATGGACG ATTACGATGA CGAGGAAGAC GCCAGCGCGT CGTCTGGGTT GAAGAAGCTG
    GGAGCATCCC TGGGTCTGAA GCTTCGGCCG TGGGAGGGGA CAGGCGTGCG TTCAGCCAAG
    AGCGAGGTGT CGCTTATTGA CTTCACAGAT GACAGTTTCA GCTCTACCAC ACCTTCTCCG
    CTCACTGAGT CTCGGCAGCT GGATGAGGAC ACCCTAAAGG ACACTCCCTC CATTCTGGAC
    TGGCCTCTCC CCCAGCCAGC GTACGATGAA GTTACTGCAG AGCCTGCGGA TCAATCAGAG
    GACCAGGAAG TGCGGTCCAT ATACAAAGGG TTGACTGAAG AAGCTTCTTC ATCCGCTGGT
    GGTGGCTTGA CAGGAAGGAG CGAATCCCAG TCAGCTGACC TCTTCCAGGA GCTACAGAGG
    GAGGTGATGG TGAAGCTGCA GGTTCCAATG GCAACAGGCC GCTCCCTCCC CTCCTCCCCA
    CTCCCCATGC CTCTGGCTCC TTTGGGCCCG CACCGACAGA TCTATCTTCC CCCTCCATCT
    CCCTCGTCTG CCTCCTCCTT CGCCTCCTGC TTTGAGGACA GGCCTGTGCT GCCTCCTCGC
    AGTCCCGTCC CTCCTCTGCG TCCCTCCAAA CACAACCTCT CCGCCCGTGC CATAAACCCA
    GAAGCACGCA CCAGCTCCAT TTCACTGGGC AACGATGATG ACACACCTCC TCAGATCCCA
    CCCAGAGACC ACGCCTTTTC TCAGCCAGGC TCCCGCTCCT CGTCACCTGT AGCATTGCCA
    CCTCCTCCTC TCGCCGTCTC GCCCCGTCGG GCATCGGGAC TGCTGGGTCC ACTCCTGTCC
    TCCAACTCTC CATCGTCGTC TTCCTCTTTG CCTCAAGCTT CATCCCATTC CTCACGCTTA
    GGACTTCCTG GCTCATCGTA CTCCTCCACG TCCTTACTGG ATCCACTCGC CTTTCGTGAG
    GGGCGTGGCC TTTCCTCACT GATTGACAGT TCGCAGAGCT CTGCCCCCGT TCCACTGCCG
    GAGAGACCAG CTTTCCTGGA GAGATACGGA GCAGCCAACA TGGCGGCAGT CAAACCTATG
    ATGCAGCAGC ACCCTAGTGG AGCCAAACCG AACACCTCCT ACAACAACAA TAACGGCCGA
    GCTGCAGCTC CCAGCATTCA ACGGGAACAG AGCATCACAC AGGTCCAAGG AGCTGTGCAC
    GGTGTCACGA TAGAGGAGTG TCAGGCTGCT CTGCAGAGCC ACGAGTGGAG CATCCCTCAG
    GCCATAAACC ATTTAAAGGT CGAGCAGCTG TTTCGGCTAG GGCTGCGTTC AAGAGCCGAG
    TGCGAGGAGC TGCTGCAGCA TCACCAGTGG GACCTGGAAC ATGCCAGCAC GGTCATGCTG
    GACACATACG GACCACATCG CAACAGGTAA

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

    RefSeq XP_006799287.1
    CDS571..3660
    Translation

    Target ORF information:

    RefSeq Version XM_006799224.1
    Organism Neolamprologus brichardi
    Definition Neolamprologus brichardi activated CDC42 kinase 1-like (LOC102789728), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006799224.1

    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
    ATGGGGGAGA GCTATATGTA CCAGCGACTC CCCTACACCA GAGGAGAGGG GGAGGGGGAG 
    GACGAAGAGG CGGGAGACAG GAGTGTCGGT GGACAAATGA TGCAGTGTGA GGAGGGCACA
    GAGTGGCTGC TGGAGCTGCT GACAGACGTG CAGCTGCAGC AGTACTTCCT GCGGATCCGT
    GATGATCTCA ACGTCACACG ACTCTCACAC TTTGACTACG TCAAGAATGA AGACCTGGAG
    AAGATCGGCA TGGGACGCCC AGGTCAGAGG AGGCTCTGGG AGGCAGTCAA GAGGAGACGA
    GCCCTTTATA AAAGAAAATC CTGGATGAGC AAGGTGTTTC CAGTGAAACG ACCAGACGCT
    GACACGCAGC AGCCCCACGG GGCATCGTCT GCTGAAGTCC CGGCCAGTAG TGAGTCAGGG
    GCCGCGCTCA CCTGCCTGAT TAGAGAGTCG GAGCTTCAGC TGTTCGAGCG GCTTGGAGAC
    GGGACATTCG GGGTGGTGCG GCGAGGAGAG TGGACTGCAC CCAACGGCAG AGTGTTGTCA
    GTGGCAGTAA AATGCCTGAA ATCAAATGTA CTGGACTCAG ACGGTCTGGA TGATTTCATC
    AGAGAGGTGA ATGCCATGCA TTCACTGAGC CACCAAAACC TCATCCGCCT GTATGGCATC
    GTCCTCACAC AGCCTATGAA GATGGTGACT GAGCTGGCTC CTCTGGGCTC CCTGTTGGAT
    CGGCTCAGAA AGCGGCAGGG TCACATCCTC ATCTCCTCGC TGTGTAACTA TGCCGTGCAG
    GTGGCCTGTG GGATGGCTTA CCTGGAGCAG AAGCGTTTCC TCCACAGGGA CCTCGCAGCC
    CGTAATGTGC TTCTGTCCAC CAATGAAACT GTGAAGATCG GAGACTTTGG CCTAATGAGG
    GCACTGCCTA AACACACCGA CCAATACGTC ATGGAGGAAG GCCACAAAAT CCCTTTCCCA
    TGGTGTGCTC CAGAGTCTCT GAAGTCTCGC ACTTTCTCTC ACGCATCTGA CACCTGGATG
    TTTGGGGTCA CCCTTTGGGA GATGTTCACC CACGGACAGG AGCCGTGGCT GGGTCTGAAT
    GGGAGCCAGA TCCTTCACAA GGTGGACGTG GAAGCTGAGA GGCTGTGTAA ACCAGACGAT
    TGTCCTCAGG ATATCTACAA TGTGATGCTG CAGTGCTGGA GCCCCAAACC TGAAGACAGA
    CCAACTTTCA TTGCCCTCAG AGACTTCCTG CTCGAGACCA TGCCCACAGA TATGAGAGCC
    CTGCAGGACT TTGAGGAGGA AGACAAGCTC CAGATTACAA TGAATGATGT AATCACCATC
    ATTGAAGGAA GGGCAGAGCA CTACTGGTGG CGAGGTCAGA ACAGGCGCAC ACTGCGTGTC
    GGTCAGTTTC CCCGTCATGT AGTGACGTCA GTCGCCGGTC TTTCCGCCCA GGACATCAGC
    CGGCCACTTA AACACTCTTT TATACACACT GGACATGGAG ACACAGACCC CCAGAGGAGC
    TGGGGACACG CAGACCGCAT AGACAGCCTG TACTTGGGGA ACCCCATGGA CCCTCCTGAT
    GTCCTGGGAA TGGATTCAGG CATTGCGAGA CCGACCAAAC TTCCCAACCG TGCCAAGAAG
    CTACCTCCCC CTCGTCCACC CCAACCAGCC GTTCTGCTCA AGAAGCCGTT CTACGACTCT
    GTGATGGACG ATTACGATGA CGAGGAAGAC GCCAGCGCGT CGTCTGGGTT GAAGAAGCTG
    GGAGCATCCC TGGGTCTGAA GCTTCGGCCG TGGGAGGGGA CAGGCGTGCG TTCAGCCAAG
    AGCGAGGTGT CGCTTATTGA CTTCACAGAT GACAGTTTCA GCTCTACCAC ACCTTCTCCG
    CTCACTGAGT CTCGGCAGCT GGATGAGGAC ACCCTAAAGG ACACTCCCTC CATTCTGGAC
    TGGCCTCTCC CCCAGCCAGC GTACGATGAA GTTACTGCAG AGCCTGCGGA TCAATCAGAG
    GACCAGGAAG TGCGGTCCAT ATACAAAGGG TTGACTGAAG AAGCTTCTTC ATCCGCTGGT
    GGTGGCTTGA CAGGAAGGAG CGAATCCCAG TCAGCTGACC TCTTCCAGGA GCTACAGAGG
    GAGGTGATGG TGAAGCTGCA GGTTCCAATG GCAACAGGCC GCTCCCTCCC CTCCTCCCCA
    CTCCCCATGC CTCTGGCTCC TTTGGGCCCG CACCGACAGA TCTATCTTCC CCCTCCATCT
    CCCTCGTCTG CCTCCTCCTT CGCCTCCTGC TTTGAGGACA GGCCTGTGCT GCCTCCTCGC
    AGTCCCGTCC CTCCTCTGCG TCCCTCCAAA CACAACCTCT CCGCCCGTGC CATAAACCCA
    GAAGCACGCA CCAGCTCCAT TTCACTGGGC AACGATGATG ACACACCTCC TCAGATCCCA
    CCCAGAGACC ACGCCTTTTC TCAGCCAGGC TCCCGCTCCT CGTCACCTGT AGCATTGCCA
    CCTCCTCCTC TCGCCGTCTC GCCCCGTCGG GCATCGGGAC TGCTGGGTCC ACTCCTGTCC
    TCCAACTCTC CATCGTCGTC TTCCTCTTTG CCTCAAGCTT CATCCCATTC CTCACGCTTA
    GGACTTCCTG GCTCATCGTA CTCCTCCACG TCCTTACTGG ATCCACTCGC CTTTCGTGAG
    GGGCGTGGCC TTTCCTCACT GATTGACAGT TCGCAGAGCT CTGCCCCCGT TCCACTGCCG
    GAGAGACCAG CTTTCCTGGA GAGATACGGA GCAGCCAACA TGGCGGCAGT CAAACCTATG
    ATGCAGCAGC ACCCTAGTGG AGCCAAACCG AACACCTCCT ACAACAACAA TAACGGCCGA
    GCTGCAGCTC CCAGCATTCA ACGGGAACAG AGCATCACAC AGGTCCAAGG AGCTGTGCAC
    GGTGTCACGA TAGAGGAGTG TCAGGCTGCT CTGCAGAGCC ACGAGTGGAG CATCCCTCAG
    GCCATAAACC ATTTAAAGGT CGAGCAGCTG TTTCGGCTAG GGCTGCGTTC AAGAGCCGAG
    TGCGAGGAGC TGCTGCAGCA TCACCAGTGG GACCTGGAAC ATGCCAGCAC GGTCATGCTG
    GACACATACG GACCACATCG CAACAGGTAA

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