KMT2E cDNA ORF clone, Numida meleagris(helmeted guineafowl)

The following KMT2E gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the KMT2E 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
ONu05136 XM_021384558.1
Latest version!
Numida meleagris lysine methyltransferase 2E (KMT2E), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $1021.30
$1459.00
ONu05136 XM_021384556.1
Latest version!
Numida meleagris lysine methyltransferase 2E (KMT2E), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $1021.30
$1459.00

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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 ONu05136
    Clone ID Related Accession (Same CDS sequence) XM_021384556.1 , XM_021384558.1
    Accession Version XM_021384556.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5445bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-06
    Organism Numida meleagris(helmeted guineafowl)
    Product histone-lysine N-methyltransferase 2E
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034409.1) 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 :: Numida meleagris Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    ATGAGCATAG TGATCCCATT GGGGGTTGAC ACAGCAGATA CTTCTTATTT GGAAATGGCT 
    GCAGGCTCAG AACCAGAATC TGTAGAAGCT AGCCCTGTGG TAGTTGAAAA ATCGAACAGT
    TATCCGCACC AGTTGTATAC CAGCAGCTCG CATTCACACA GCTACATTGG TTTGCCCTAT
    GCAGACCATA ACTATGGTGC TCGGCCTCCT CCAACGCCTC CAGCTTCTCC TCCTCCATCA
    GTAGTTATAA GCAAGAATGA AGTAGGCATA TTTACCACTC CCAACTTTGA TGAAACCTCC
    AGTGCTACTA CCATCAGTAC ATCAGAGGAT GGAAGCTATG GAACTGATAT TACCAGATGC
    ATTTGTGGCT TTACACATGA TGATGGATAT ATGATCTGTT GTGACAAATG CAGTGTCTGG
    CAGCACATTG ACTGCATGGG AATTGACAGA CAGCATATTC CTGACATATA TCTGTGTGAA
    CGTTGTCAAC CAAGGAACTT GGATAAGGAG AGGGCAGTGC TGTTGCAGCG GAGGAAAAGG
    GAAAATATGT CAGATGGGGA TACCAGCGCA ACAGAGAGCG GTGATGAGGT TCCTGTGGAA
    CTGTATACTG CTTTTCAGCA TACACCAACT ACATTTACAA TAGCTTCTCC AAGAGTCACA
    AAGGTCAATG ATAAGAAAAG GAAAAAAAGT GGGGAGAAAG AGCAGAACAT AGCAAAATGT
    AAAAAAGCAT TTCGGGAAGG ATCCAGAAAA TCTTCAAGAG TAAAGGGCTC AGCTCCAGAG
    ATTGATCCTA CTGACAGTTC AAACTTTGGA TGGGAAACTA AAATCAAAGC ATGGATGGAT
    CGTTATGAAG AAGCGAATAA TAACCAGTAC AGTGAAGGTG TTCAGAGGGA GGCACAAAAA
    ATAGCTCTGA GATTAGGCAA TGGAAATGAC AAGAAAGAAG TCAGCACCAG CAATCTGATT
    TTCAAACCTC CAGTAGAGAG TTACGTGCAA AAAAACAAGA AAATTTTAAA AGCTGCCAAA
    GACTTGCCTC CTGATGCACT TATTATTGAA TACAGAGGAA AGTTCATGCT GAGAGAACAA
    TTTGAAGCTA ATGGATATTT CTTTAAAAGG CCATACCCAT TTGTTTTATT TTATTCCAAG
    TTTCATGGGC TAGAAATGTG TGTTGATGCA AGGACTTTTG GAAATGAAGC TCGATTCATC
    AGGCGTTCAT GTACACCAAA TGCGGAGGTG AGGCATGTAA TTGAAGATGG AACGATTCAT
    CTTTATATTT ACTCCATCCA TAACATTCCA AAAGGAGCAG AGATTACAAT AGCATTTGAT
    TTTGATTATG GAAATTGTAA ATACAAAGTG GACTGTGCTT GCCTCAAAGA AAATCCTGAA
    TGTCCGGTTC TCAGACGTTC TGAGCCTACA GAAAACATCA ATACTGGATA TGAAACCAGA
    AGGAAAAAGG GAAAGAAAGA GAAAGATGTT TCAAGAGAAA AGGAGACTCA AAATCAGAAC
    ATCACGTTGG ACTGTGAAGG AGCAGCCACC AAAATGAAAA TCGCAGATAA TAAACAGAGG
    AAGCTCTCTC CCCTCAGGCT GTCAATTTCC AATAACCAGG AGCCAGATTT TATTGATGAT
    ATAGAAGAAA AAACTCCCAT TAGCAATGAA GTAGAAATGG AATCAGAGGA GCAGATTGCA
    GAGAGGAAAA GGAAGATGAC AAGAGAAGAA CGGAAAATGG AAGCCATCTT GCAAGCTTTT
    GCCAGACTAG AAAAAAGAGA AAAAAGAAGA GAACAGGCTT TGGAAAGGAT CAGCACAGCA
    AAAACTGAGG TTAAATCGGA ATGCAAGGAA CCACAGATTC TCAATGACAC TGAATTTATT
    CAGGAACCAG CAAAGGAAGA AGCTGTCACT AAGCCCACCC CAGCCAAGGT TAACAGAGCT
    AAACAGAGAA AAAGCTTCTC TCGAAGTAGA ACTCACATTG GACAACAGCG TAGACGACAC
    AGAACTGTGA GCATGTGTTC AGATATTCAG CCATCTTCTC CTGATGTGGA AGTAACATCA
    CAACACAATG AAACCGAGAA TGCTGCACTG GTGGCTGAGC CGGAAACGGA AACTGTTGTT
    ACAGAAATGG TTACTGAAAC GGAAGCGCCA GCACTTAATA AATGTCCTAC TAAGTATCCT
    AAAACAAAGA AGCACTTGGT AAATGAATGG TTAAGTGAAA AGAGTGATAA GACAGGGAAG
    CCTACAGACA GTGTTTCAGA AAGGCCTCTT CGTATAACTA CCGACCCTGA AGTTCTGGCT
    ACTCAACTGA ATTCTCTACC AGGTCTCACT TACAGTCCAC ATGTGTATTC TACTCCAAAG
    CACTATATTC GTTTTACTTC ACCATTCCTT TCAGAAAAGA GGAGGAAAAA AGAACCTGTG
    GAAAACATGT CTGGCTCTTG TAAGAAGCGT TGGTTGAAAC AGGCTTTGGA AGAAGAAAAC
    TCAACAGTGA TGGATAGATT TAATTCACCA TCGCTGGAGG GTTCTAGAAG TCCAGCCATC
    AACGGTGAAA ATAAAAGCCC CTTATTACTG AATGACAGCT GTTCCTTAAC AGATCTAACA
    ACACCTCTAA AAAAACGAAG ACTGTACCAG CTGTTGGAGT CTGCATTCTC GGAAACCTCT
    ACACCTACTC CTTCTCCATA TGCCACACCA ACTCATGCTG ATATTGCTGC CTCAGAGCCA
    CTGATGTTTG CTACTCCTCC TAGGGTAAAA ACAGAGGATG AAGCTTGTAG AAATGGTTAC
    AAACCCATTT ATTCGCCAGT TACTCCCGTA ACTCCATGTA TACATGGAAA TGCCATGCAC
    TTTGAGAATA TTTCCTCACC TGACAGTTCC CCAGAAATAA AAAGGCGAGC TTACAGTCAA
    GAGGGATATG ACAGAGCATC GATTCTAGCA CTGAATTCTT TCAGAAATTC CAACCTGACA
    GAAGTGGGCC TGCAGGAAAT AAAGACTATT GGATATTCCA GTCCAAGAAA TAGGACTGAT
    GTCACACGGC AGTGCACAGG AGAAATGGAA TCTGTGTCAG ACCTCCAGCT GGGACTCGAA
    GTAATTGAGC AAAGTGCACT GCATAAAAAC CTGGAAGCCC CTACACACGA TAGGACTGAT
    TCAAGCAGCC AATTAGAAAC TGCTCATTGT GGACGGGGCA CCATTTATTC TTCCTGGGTA
    AAAAGTCCCG ACAGGACAGG TGTAAATTTC TCAATGAATT CTAATTTGAG GGACTTGACC
    CCTTCACATC AGTTGGAGGT AGGAGGTGGA TTCAGAATAA GCGAGTCAAA GTGCCTGATT
    CAAGACGATG CTAGAGGCAT GTTCATGGAA GCATCTGTTT TTTGTACTTC AGAAGATGGA
    ATTGCATCTG GCTTTGGAAG GACTGTCAAT AATGACAACT TGATGGATGG AAATTGCACA
    CCCCAGAATC CTCCACAGAA GAAAAAGGTA TCCTTGCTAG AATACCGTAA GAGGCAACGA
    GAAGCTAGAA AAAGTGGCTC GAAGACAGAA AACTTTCCCC TTGTTACTGT ATCTCCTCAT
    GCTGCTGGTG CAGGAAACAT AAGTAGTAAC AGTGGTGCTA ATGATGGGTT TAACAACAGT
    GGTGAAAATG GGGAGCAAAC TGATAACGCT GCGAGCCTGC CTGTACCACT GCCAACTGCC
    GTTTATAGTG CAGCTCCAGA AGACGCTGGA AACAACAGTG CAATCAAGGA AGCTTCTTCC
    AGTGAGAAGA ACGAGCCTGA GGTTCAGTGG ACTGCATCAA CCTCTGTGGA ACAAGTGAGA
    GAACGAAGTT ATCATAGAGC TTTGCTTCTC AGTGATCATA GGAAAGACAA GGACTGTGAA
    CCTGATCCTG AAAATTCGGA GCCTACTTCT GAATGTCCAT CCCCAGATAC TTCACAGAAG
    ACGTGTAGGA GTCCTTCAAA AGCAAGCAAG CCCTCTTCGC CGAGTCCTGT AGTTTCAGCA
    CCATCACTGG GAAAAACACC TGCAAAGCCA GATTCACACT GGGAGACTGC AGCTAATGCA
    CCAGAGGCCG AAGGTGCGAA TCATCCGAAA TCGGAGCTGC AACAAAAACA GCTGACAAAT
    AACGTCCAAG CACTTTCAAA AACTCATCCA TCTCAGTCAC ATCTGCGCAG TTCTGCTGAG
    CAACTTTCAC ATTCACAGAA GTTGCCTTCT GCACCTTTGA AGCTCCATTG TCCCCCTTCA
    CCTCATGTAG AAAATCCCCC GAAGCCATCG ACGCCCCACG CGCCCGTGCA GCACGGTTAT
    CTGTCGCCAA AGCCTCACTC GCAGCAGCTG GGATCTCCGT ACAGACCTCA TCATCCACAG
    TCACCTCAAG TCGGAACGCC CCAGAGGGAA ACGCACCGCG GTTTCTATCC AGCAGCGCCA
    ACCCTTCAGC CCAGTAATCA GCAGCAGGCC AGCGGACCGC TGTTCACTCA GACGACTTCA
    GGACAATCCT CGGCTTCGTA CAGCCAGTTC AACCAACAGA ATTTGAACAG CAATGCGCCG
    CCTCCCCCGC CTCCCCCACC CCCTTCTTCC ACTTACTATC AGAACCAGCA GCCCTCTGGA
    AACTTTCAGA GTTACAGTCA GCTGAAGGGT AGCATCCCCC AACAGACTGT GTTTTCATCC
    GGACCAAATC AAGCACTTCC TGGCTCTGCG GGTCAGCAGA CGGTGCCGGG ACACCACGTA
    ACTGCAGGGC ATTTCTTGCC CTCTCAGAAC CCCAGTATTC ATCACCAGGC TTCAGCATCT
    GCCGCTCCTC CTCCGCCGCC GCCGCCTCCT GCTCCGGGCC CTCACCTGGT TCAGCAGCAG
    AGCACCCATC AGCAGCATTC TGTAGCACAC GTCGTCGGCC CGGTTCACGC TGTGGCAGTG
    GCTCCTGGGT CTCACATCCA CTCTCAAGCT GCCGCTCACC ATCTGCCACC GCCGCCTCCG
    CCTCCGGGCC CCATCCCCCA CCACCAGCCT CCTCATCCTC CAGCCGGACA CCAAGGTTTG
    CAAGCACAAC ACCAGCACGT TGTAAACTCT GCTCCTCCTC CCCCCCCGCC TCCCCCCTCC
    AACGTTATAG GCTCGGGGCA CCACCCAGCA TCGGCACAAG GGTTACACCA CCCATCGCAT
    CAAGGACCCC CTCATTTTCC TTCAGGCGCT CACACGAGCG TGTCCTCCTA TTCCTCGCAA
    GCCCCCCACC ACACGACGTT AGGACCCGGA CCTCAACATC AGCCTGCTGG AACAGGGCCT
    CATTGTCCGC TCCCCGGTCA GGGTCCTCAC ATCCAACCTC AAGGACCAAA CAGTGTTGCA
    ACCCCCACCG CTTCAGGGTT CTGCCCGCAC CCTGGCTCAG TAACGCTCCC GCACGCAGTG
    CAAGGACCGC AGCAGGCGTC ACCGGTGCCC GGACAGATCC CCATTCACAG AGCACAGGTG
    CCACCGACCT TTCAGAACAA TTACCATGGT TCAGGGTGGC ATTAA

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

    RefSeq XP_021240231.1
    CDS541..5985
    Translation

    Target ORF information:

    RefSeq Version XM_021384556.1
    Organism Numida meleagris(helmeted guineafowl)
    Definition Numida meleagris lysine methyltransferase 2E (KMT2E), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021384556.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    ATGAGCATAG TGATCCCATT GGGGGTTGAC ACAGCAGATA CTTCTTATTT GGAAATGGCT 
    GCAGGCTCAG AACCAGAATC TGTAGAAGCT AGCCCTGTGG TAGTTGAAAA ATCGAACAGT
    TATCCGCACC AGTTGTATAC CAGCAGCTCG CATTCACACA GCTACATTGG TTTGCCCTAT
    GCAGACCATA ACTATGGTGC TCGGCCTCCT CCAACGCCTC CAGCTTCTCC TCCTCCATCA
    GTAGTTATAA GCAAGAATGA AGTAGGCATA TTTACCACTC CCAACTTTGA TGAAACCTCC
    AGTGCTACTA CCATCAGTAC ATCAGAGGAT GGAAGCTATG GAACTGATAT TACCAGATGC
    ATTTGTGGCT TTACACATGA TGATGGATAT ATGATCTGTT GTGACAAATG CAGTGTCTGG
    CAGCACATTG ACTGCATGGG AATTGACAGA CAGCATATTC CTGACATATA TCTGTGTGAA
    CGTTGTCAAC CAAGGAACTT GGATAAGGAG AGGGCAGTGC TGTTGCAGCG GAGGAAAAGG
    GAAAATATGT CAGATGGGGA TACCAGCGCA ACAGAGAGCG GTGATGAGGT TCCTGTGGAA
    CTGTATACTG CTTTTCAGCA TACACCAACT ACATTTACAA TAGCTTCTCC AAGAGTCACA
    AAGGTCAATG ATAAGAAAAG GAAAAAAAGT GGGGAGAAAG AGCAGAACAT AGCAAAATGT
    AAAAAAGCAT TTCGGGAAGG ATCCAGAAAA TCTTCAAGAG TAAAGGGCTC AGCTCCAGAG
    ATTGATCCTA CTGACAGTTC AAACTTTGGA TGGGAAACTA AAATCAAAGC ATGGATGGAT
    CGTTATGAAG AAGCGAATAA TAACCAGTAC AGTGAAGGTG TTCAGAGGGA GGCACAAAAA
    ATAGCTCTGA GATTAGGCAA TGGAAATGAC AAGAAAGAAG TCAGCACCAG CAATCTGATT
    TTCAAACCTC CAGTAGAGAG TTACGTGCAA AAAAACAAGA AAATTTTAAA AGCTGCCAAA
    GACTTGCCTC CTGATGCACT TATTATTGAA TACAGAGGAA AGTTCATGCT GAGAGAACAA
    TTTGAAGCTA ATGGATATTT CTTTAAAAGG CCATACCCAT TTGTTTTATT TTATTCCAAG
    TTTCATGGGC TAGAAATGTG TGTTGATGCA AGGACTTTTG GAAATGAAGC TCGATTCATC
    AGGCGTTCAT GTACACCAAA TGCGGAGGTG AGGCATGTAA TTGAAGATGG AACGATTCAT
    CTTTATATTT ACTCCATCCA TAACATTCCA AAAGGAGCAG AGATTACAAT AGCATTTGAT
    TTTGATTATG GAAATTGTAA ATACAAAGTG GACTGTGCTT GCCTCAAAGA AAATCCTGAA
    TGTCCGGTTC TCAGACGTTC TGAGCCTACA GAAAACATCA ATACTGGATA TGAAACCAGA
    AGGAAAAAGG GAAAGAAAGA GAAAGATGTT TCAAGAGAAA AGGAGACTCA AAATCAGAAC
    ATCACGTTGG ACTGTGAAGG AGCAGCCACC AAAATGAAAA TCGCAGATAA TAAACAGAGG
    AAGCTCTCTC CCCTCAGGCT GTCAATTTCC AATAACCAGG AGCCAGATTT TATTGATGAT
    ATAGAAGAAA AAACTCCCAT TAGCAATGAA GTAGAAATGG AATCAGAGGA GCAGATTGCA
    GAGAGGAAAA GGAAGATGAC AAGAGAAGAA CGGAAAATGG AAGCCATCTT GCAAGCTTTT
    GCCAGACTAG AAAAAAGAGA AAAAAGAAGA GAACAGGCTT TGGAAAGGAT CAGCACAGCA
    AAAACTGAGG TTAAATCGGA ATGCAAGGAA CCACAGATTC TCAATGACAC TGAATTTATT
    CAGGAACCAG CAAAGGAAGA AGCTGTCACT AAGCCCACCC CAGCCAAGGT TAACAGAGCT
    AAACAGAGAA AAAGCTTCTC TCGAAGTAGA ACTCACATTG GACAACAGCG TAGACGACAC
    AGAACTGTGA GCATGTGTTC AGATATTCAG CCATCTTCTC CTGATGTGGA AGTAACATCA
    CAACACAATG AAACCGAGAA TGCTGCACTG GTGGCTGAGC CGGAAACGGA AACTGTTGTT
    ACAGAAATGG TTACTGAAAC GGAAGCGCCA GCACTTAATA AATGTCCTAC TAAGTATCCT
    AAAACAAAGA AGCACTTGGT AAATGAATGG TTAAGTGAAA AGAGTGATAA GACAGGGAAG
    CCTACAGACA GTGTTTCAGA AAGGCCTCTT CGTATAACTA CCGACCCTGA AGTTCTGGCT
    ACTCAACTGA ATTCTCTACC AGGTCTCACT TACAGTCCAC ATGTGTATTC TACTCCAAAG
    CACTATATTC GTTTTACTTC ACCATTCCTT TCAGAAAAGA GGAGGAAAAA AGAACCTGTG
    GAAAACATGT CTGGCTCTTG TAAGAAGCGT TGGTTGAAAC AGGCTTTGGA AGAAGAAAAC
    TCAACAGTGA TGGATAGATT TAATTCACCA TCGCTGGAGG GTTCTAGAAG TCCAGCCATC
    AACGGTGAAA ATAAAAGCCC CTTATTACTG AATGACAGCT GTTCCTTAAC AGATCTAACA
    ACACCTCTAA AAAAACGAAG ACTGTACCAG CTGTTGGAGT CTGCATTCTC GGAAACCTCT
    ACACCTACTC CTTCTCCATA TGCCACACCA ACTCATGCTG ATATTGCTGC CTCAGAGCCA
    CTGATGTTTG CTACTCCTCC TAGGGTAAAA ACAGAGGATG AAGCTTGTAG AAATGGTTAC
    AAACCCATTT ATTCGCCAGT TACTCCCGTA ACTCCATGTA TACATGGAAA TGCCATGCAC
    TTTGAGAATA TTTCCTCACC TGACAGTTCC CCAGAAATAA AAAGGCGAGC TTACAGTCAA
    GAGGGATATG ACAGAGCATC GATTCTAGCA CTGAATTCTT TCAGAAATTC CAACCTGACA
    GAAGTGGGCC TGCAGGAAAT AAAGACTATT GGATATTCCA GTCCAAGAAA TAGGACTGAT
    GTCACACGGC AGTGCACAGG AGAAATGGAA TCTGTGTCAG ACCTCCAGCT GGGACTCGAA
    GTAATTGAGC AAAGTGCACT GCATAAAAAC CTGGAAGCCC CTACACACGA TAGGACTGAT
    TCAAGCAGCC AATTAGAAAC TGCTCATTGT GGACGGGGCA CCATTTATTC TTCCTGGGTA
    AAAAGTCCCG ACAGGACAGG TGTAAATTTC TCAATGAATT CTAATTTGAG GGACTTGACC
    CCTTCACATC AGTTGGAGGT AGGAGGTGGA TTCAGAATAA GCGAGTCAAA GTGCCTGATT
    CAAGACGATG CTAGAGGCAT GTTCATGGAA GCATCTGTTT TTTGTACTTC AGAAGATGGA
    ATTGCATCTG GCTTTGGAAG GACTGTCAAT AATGACAACT TGATGGATGG AAATTGCACA
    CCCCAGAATC CTCCACAGAA GAAAAAGGTA TCCTTGCTAG AATACCGTAA GAGGCAACGA
    GAAGCTAGAA AAAGTGGCTC GAAGACAGAA AACTTTCCCC TTGTTACTGT ATCTCCTCAT
    GCTGCTGGTG CAGGAAACAT AAGTAGTAAC AGTGGTGCTA ATGATGGGTT TAACAACAGT
    GGTGAAAATG GGGAGCAAAC TGATAACGCT GCGAGCCTGC CTGTACCACT GCCAACTGCC
    GTTTATAGTG CAGCTCCAGA AGACGCTGGA AACAACAGTG CAATCAAGGA AGCTTCTTCC
    AGTGAGAAGA ACGAGCCTGA GGTTCAGTGG ACTGCATCAA CCTCTGTGGA ACAAGTGAGA
    GAACGAAGTT ATCATAGAGC TTTGCTTCTC AGTGATCATA GGAAAGACAA GGACTGTGAA
    CCTGATCCTG AAAATTCGGA GCCTACTTCT GAATGTCCAT CCCCAGATAC TTCACAGAAG
    ACGTGTAGGA GTCCTTCAAA AGCAAGCAAG CCCTCTTCGC CGAGTCCTGT AGTTTCAGCA
    CCATCACTGG GAAAAACACC TGCAAAGCCA GATTCACACT GGGAGACTGC AGCTAATGCA
    CCAGAGGCCG AAGGTGCGAA TCATCCGAAA TCGGAGCTGC AACAAAAACA GCTGACAAAT
    AACGTCCAAG CACTTTCAAA AACTCATCCA TCTCAGTCAC ATCTGCGCAG TTCTGCTGAG
    CAACTTTCAC ATTCACAGAA GTTGCCTTCT GCACCTTTGA AGCTCCATTG TCCCCCTTCA
    CCTCATGTAG AAAATCCCCC GAAGCCATCG ACGCCCCACG CGCCCGTGCA GCACGGTTAT
    CTGTCGCCAA AGCCTCACTC GCAGCAGCTG GGATCTCCGT ACAGACCTCA TCATCCACAG
    TCACCTCAAG TCGGAACGCC CCAGAGGGAA ACGCACCGCG GTTTCTATCC AGCAGCGCCA
    ACCCTTCAGC CCAGTAATCA GCAGCAGGCC AGCGGACCGC TGTTCACTCA GACGACTTCA
    GGACAATCCT CGGCTTCGTA CAGCCAGTTC AACCAACAGA ATTTGAACAG CAATGCGCCG
    CCTCCCCCGC CTCCCCCACC CCCTTCTTCC ACTTACTATC AGAACCAGCA GCCCTCTGGA
    AACTTTCAGA GTTACAGTCA GCTGAAGGGT AGCATCCCCC AACAGACTGT GTTTTCATCC
    GGACCAAATC AAGCACTTCC TGGCTCTGCG GGTCAGCAGA CGGTGCCGGG ACACCACGTA
    ACTGCAGGGC ATTTCTTGCC CTCTCAGAAC CCCAGTATTC ATCACCAGGC TTCAGCATCT
    GCCGCTCCTC CTCCGCCGCC GCCGCCTCCT GCTCCGGGCC CTCACCTGGT TCAGCAGCAG
    AGCACCCATC AGCAGCATTC TGTAGCACAC GTCGTCGGCC CGGTTCACGC TGTGGCAGTG
    GCTCCTGGGT CTCACATCCA CTCTCAAGCT GCCGCTCACC ATCTGCCACC GCCGCCTCCG
    CCTCCGGGCC CCATCCCCCA CCACCAGCCT CCTCATCCTC CAGCCGGACA CCAAGGTTTG
    CAAGCACAAC ACCAGCACGT TGTAAACTCT GCTCCTCCTC CCCCCCCGCC TCCCCCCTCC
    AACGTTATAG GCTCGGGGCA CCACCCAGCA TCGGCACAAG GGTTACACCA CCCATCGCAT
    CAAGGACCCC CTCATTTTCC TTCAGGCGCT CACACGAGCG TGTCCTCCTA TTCCTCGCAA
    GCCCCCCACC ACACGACGTT AGGACCCGGA CCTCAACATC AGCCTGCTGG AACAGGGCCT
    CATTGTCCGC TCCCCGGTCA GGGTCCTCAC ATCCAACCTC AAGGACCAAA CAGTGTTGCA
    ACCCCCACCG CTTCAGGGTT CTGCCCGCAC CCTGGCTCAG TAACGCTCCC GCACGCAGTG
    CAAGGACCGC AGCAGGCGTC ACCGGTGCCC GGACAGATCC CCATTCACAG AGCACAGGTG
    CCACCGACCT TTCAGAACAA TTACCATGGT TCAGGGTGGC ATTAA

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

    CloneID ONu05136
    Clone ID Related Accession (Same CDS sequence) XM_021384556.1 , XM_021384558.1
    Accession Version XM_021384558.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5445bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-06-06
    Organism Numida meleagris(helmeted guineafowl)
    Product histone-lysine N-methyltransferase 2E
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034409.1) 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 :: Numida meleagris Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    ATGAGCATAG TGATCCCATT GGGGGTTGAC ACAGCAGATA CTTCTTATTT GGAAATGGCT 
    GCAGGCTCAG AACCAGAATC TGTAGAAGCT AGCCCTGTGG TAGTTGAAAA ATCGAACAGT
    TATCCGCACC AGTTGTATAC CAGCAGCTCG CATTCACACA GCTACATTGG TTTGCCCTAT
    GCAGACCATA ACTATGGTGC TCGGCCTCCT CCAACGCCTC CAGCTTCTCC TCCTCCATCA
    GTAGTTATAA GCAAGAATGA AGTAGGCATA TTTACCACTC CCAACTTTGA TGAAACCTCC
    AGTGCTACTA CCATCAGTAC ATCAGAGGAT GGAAGCTATG GAACTGATAT TACCAGATGC
    ATTTGTGGCT TTACACATGA TGATGGATAT ATGATCTGTT GTGACAAATG CAGTGTCTGG
    CAGCACATTG ACTGCATGGG AATTGACAGA CAGCATATTC CTGACATATA TCTGTGTGAA
    CGTTGTCAAC CAAGGAACTT GGATAAGGAG AGGGCAGTGC TGTTGCAGCG GAGGAAAAGG
    GAAAATATGT CAGATGGGGA TACCAGCGCA ACAGAGAGCG GTGATGAGGT TCCTGTGGAA
    CTGTATACTG CTTTTCAGCA TACACCAACT ACATTTACAA TAGCTTCTCC AAGAGTCACA
    AAGGTCAATG ATAAGAAAAG GAAAAAAAGT GGGGAGAAAG AGCAGAACAT AGCAAAATGT
    AAAAAAGCAT TTCGGGAAGG ATCCAGAAAA TCTTCAAGAG TAAAGGGCTC AGCTCCAGAG
    ATTGATCCTA CTGACAGTTC AAACTTTGGA TGGGAAACTA AAATCAAAGC ATGGATGGAT
    CGTTATGAAG AAGCGAATAA TAACCAGTAC AGTGAAGGTG TTCAGAGGGA GGCACAAAAA
    ATAGCTCTGA GATTAGGCAA TGGAAATGAC AAGAAAGAAG TCAGCACCAG CAATCTGATT
    TTCAAACCTC CAGTAGAGAG TTACGTGCAA AAAAACAAGA AAATTTTAAA AGCTGCCAAA
    GACTTGCCTC CTGATGCACT TATTATTGAA TACAGAGGAA AGTTCATGCT GAGAGAACAA
    TTTGAAGCTA ATGGATATTT CTTTAAAAGG CCATACCCAT TTGTTTTATT TTATTCCAAG
    TTTCATGGGC TAGAAATGTG TGTTGATGCA AGGACTTTTG GAAATGAAGC TCGATTCATC
    AGGCGTTCAT GTACACCAAA TGCGGAGGTG AGGCATGTAA TTGAAGATGG AACGATTCAT
    CTTTATATTT ACTCCATCCA TAACATTCCA AAAGGAGCAG AGATTACAAT AGCATTTGAT
    TTTGATTATG GAAATTGTAA ATACAAAGTG GACTGTGCTT GCCTCAAAGA AAATCCTGAA
    TGTCCGGTTC TCAGACGTTC TGAGCCTACA GAAAACATCA ATACTGGATA TGAAACCAGA
    AGGAAAAAGG GAAAGAAAGA GAAAGATGTT TCAAGAGAAA AGGAGACTCA AAATCAGAAC
    ATCACGTTGG ACTGTGAAGG AGCAGCCACC AAAATGAAAA TCGCAGATAA TAAACAGAGG
    AAGCTCTCTC CCCTCAGGCT GTCAATTTCC AATAACCAGG AGCCAGATTT TATTGATGAT
    ATAGAAGAAA AAACTCCCAT TAGCAATGAA GTAGAAATGG AATCAGAGGA GCAGATTGCA
    GAGAGGAAAA GGAAGATGAC AAGAGAAGAA CGGAAAATGG AAGCCATCTT GCAAGCTTTT
    GCCAGACTAG AAAAAAGAGA AAAAAGAAGA GAACAGGCTT TGGAAAGGAT CAGCACAGCA
    AAAACTGAGG TTAAATCGGA ATGCAAGGAA CCACAGATTC TCAATGACAC TGAATTTATT
    CAGGAACCAG CAAAGGAAGA AGCTGTCACT AAGCCCACCC CAGCCAAGGT TAACAGAGCT
    AAACAGAGAA AAAGCTTCTC TCGAAGTAGA ACTCACATTG GACAACAGCG TAGACGACAC
    AGAACTGTGA GCATGTGTTC AGATATTCAG CCATCTTCTC CTGATGTGGA AGTAACATCA
    CAACACAATG AAACCGAGAA TGCTGCACTG GTGGCTGAGC CGGAAACGGA AACTGTTGTT
    ACAGAAATGG TTACTGAAAC GGAAGCGCCA GCACTTAATA AATGTCCTAC TAAGTATCCT
    AAAACAAAGA AGCACTTGGT AAATGAATGG TTAAGTGAAA AGAGTGATAA GACAGGGAAG
    CCTACAGACA GTGTTTCAGA AAGGCCTCTT CGTATAACTA CCGACCCTGA AGTTCTGGCT
    ACTCAACTGA ATTCTCTACC AGGTCTCACT TACAGTCCAC ATGTGTATTC TACTCCAAAG
    CACTATATTC GTTTTACTTC ACCATTCCTT TCAGAAAAGA GGAGGAAAAA AGAACCTGTG
    GAAAACATGT CTGGCTCTTG TAAGAAGCGT TGGTTGAAAC AGGCTTTGGA AGAAGAAAAC
    TCAACAGTGA TGGATAGATT TAATTCACCA TCGCTGGAGG GTTCTAGAAG TCCAGCCATC
    AACGGTGAAA ATAAAAGCCC CTTATTACTG AATGACAGCT GTTCCTTAAC AGATCTAACA
    ACACCTCTAA AAAAACGAAG ACTGTACCAG CTGTTGGAGT CTGCATTCTC GGAAACCTCT
    ACACCTACTC CTTCTCCATA TGCCACACCA ACTCATGCTG ATATTGCTGC CTCAGAGCCA
    CTGATGTTTG CTACTCCTCC TAGGGTAAAA ACAGAGGATG AAGCTTGTAG AAATGGTTAC
    AAACCCATTT ATTCGCCAGT TACTCCCGTA ACTCCATGTA TACATGGAAA TGCCATGCAC
    TTTGAGAATA TTTCCTCACC TGACAGTTCC CCAGAAATAA AAAGGCGAGC TTACAGTCAA
    GAGGGATATG ACAGAGCATC GATTCTAGCA CTGAATTCTT TCAGAAATTC CAACCTGACA
    GAAGTGGGCC TGCAGGAAAT AAAGACTATT GGATATTCCA GTCCAAGAAA TAGGACTGAT
    GTCACACGGC AGTGCACAGG AGAAATGGAA TCTGTGTCAG ACCTCCAGCT GGGACTCGAA
    GTAATTGAGC AAAGTGCACT GCATAAAAAC CTGGAAGCCC CTACACACGA TAGGACTGAT
    TCAAGCAGCC AATTAGAAAC TGCTCATTGT GGACGGGGCA CCATTTATTC TTCCTGGGTA
    AAAAGTCCCG ACAGGACAGG TGTAAATTTC TCAATGAATT CTAATTTGAG GGACTTGACC
    CCTTCACATC AGTTGGAGGT AGGAGGTGGA TTCAGAATAA GCGAGTCAAA GTGCCTGATT
    CAAGACGATG CTAGAGGCAT GTTCATGGAA GCATCTGTTT TTTGTACTTC AGAAGATGGA
    ATTGCATCTG GCTTTGGAAG GACTGTCAAT AATGACAACT TGATGGATGG AAATTGCACA
    CCCCAGAATC CTCCACAGAA GAAAAAGGTA TCCTTGCTAG AATACCGTAA GAGGCAACGA
    GAAGCTAGAA AAAGTGGCTC GAAGACAGAA AACTTTCCCC TTGTTACTGT ATCTCCTCAT
    GCTGCTGGTG CAGGAAACAT AAGTAGTAAC AGTGGTGCTA ATGATGGGTT TAACAACAGT
    GGTGAAAATG GGGAGCAAAC TGATAACGCT GCGAGCCTGC CTGTACCACT GCCAACTGCC
    GTTTATAGTG CAGCTCCAGA AGACGCTGGA AACAACAGTG CAATCAAGGA AGCTTCTTCC
    AGTGAGAAGA ACGAGCCTGA GGTTCAGTGG ACTGCATCAA CCTCTGTGGA ACAAGTGAGA
    GAACGAAGTT ATCATAGAGC TTTGCTTCTC AGTGATCATA GGAAAGACAA GGACTGTGAA
    CCTGATCCTG AAAATTCGGA GCCTACTTCT GAATGTCCAT CCCCAGATAC TTCACAGAAG
    ACGTGTAGGA GTCCTTCAAA AGCAAGCAAG CCCTCTTCGC CGAGTCCTGT AGTTTCAGCA
    CCATCACTGG GAAAAACACC TGCAAAGCCA GATTCACACT GGGAGACTGC AGCTAATGCA
    CCAGAGGCCG AAGGTGCGAA TCATCCGAAA TCGGAGCTGC AACAAAAACA GCTGACAAAT
    AACGTCCAAG CACTTTCAAA AACTCATCCA TCTCAGTCAC ATCTGCGCAG TTCTGCTGAG
    CAACTTTCAC ATTCACAGAA GTTGCCTTCT GCACCTTTGA AGCTCCATTG TCCCCCTTCA
    CCTCATGTAG AAAATCCCCC GAAGCCATCG ACGCCCCACG CGCCCGTGCA GCACGGTTAT
    CTGTCGCCAA AGCCTCACTC GCAGCAGCTG GGATCTCCGT ACAGACCTCA TCATCCACAG
    TCACCTCAAG TCGGAACGCC CCAGAGGGAA ACGCACCGCG GTTTCTATCC AGCAGCGCCA
    ACCCTTCAGC CCAGTAATCA GCAGCAGGCC AGCGGACCGC TGTTCACTCA GACGACTTCA
    GGACAATCCT CGGCTTCGTA CAGCCAGTTC AACCAACAGA ATTTGAACAG CAATGCGCCG
    CCTCCCCCGC CTCCCCCACC CCCTTCTTCC ACTTACTATC AGAACCAGCA GCCCTCTGGA
    AACTTTCAGA GTTACAGTCA GCTGAAGGGT AGCATCCCCC AACAGACTGT GTTTTCATCC
    GGACCAAATC AAGCACTTCC TGGCTCTGCG GGTCAGCAGA CGGTGCCGGG ACACCACGTA
    ACTGCAGGGC ATTTCTTGCC CTCTCAGAAC CCCAGTATTC ATCACCAGGC TTCAGCATCT
    GCCGCTCCTC CTCCGCCGCC GCCGCCTCCT GCTCCGGGCC CTCACCTGGT TCAGCAGCAG
    AGCACCCATC AGCAGCATTC TGTAGCACAC GTCGTCGGCC CGGTTCACGC TGTGGCAGTG
    GCTCCTGGGT CTCACATCCA CTCTCAAGCT GCCGCTCACC ATCTGCCACC GCCGCCTCCG
    CCTCCGGGCC CCATCCCCCA CCACCAGCCT CCTCATCCTC CAGCCGGACA CCAAGGTTTG
    CAAGCACAAC ACCAGCACGT TGTAAACTCT GCTCCTCCTC CCCCCCCGCC TCCCCCCTCC
    AACGTTATAG GCTCGGGGCA CCACCCAGCA TCGGCACAAG GGTTACACCA CCCATCGCAT
    CAAGGACCCC CTCATTTTCC TTCAGGCGCT CACACGAGCG TGTCCTCCTA TTCCTCGCAA
    GCCCCCCACC ACACGACGTT AGGACCCGGA CCTCAACATC AGCCTGCTGG AACAGGGCCT
    CATTGTCCGC TCCCCGGTCA GGGTCCTCAC ATCCAACCTC AAGGACCAAA CAGTGTTGCA
    ACCCCCACCG CTTCAGGGTT CTGCCCGCAC CCTGGCTCAG TAACGCTCCC GCACGCAGTG
    CAAGGACCGC AGCAGGCGTC ACCGGTGCCC GGACAGATCC CCATTCACAG AGCACAGGTG
    CCACCGACCT TTCAGAACAA TTACCATGGT TCAGGGTGGC ATTAA

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

    RefSeq XP_021240233.1
    CDS480..5924
    Translation

    Target ORF information:

    RefSeq Version XM_021384558.1
    Organism Numida meleagris(helmeted guineafowl)
    Definition Numida meleagris lysine methyltransferase 2E (KMT2E), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021384558.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    ATGAGCATAG TGATCCCATT GGGGGTTGAC ACAGCAGATA CTTCTTATTT GGAAATGGCT 
    GCAGGCTCAG AACCAGAATC TGTAGAAGCT AGCCCTGTGG TAGTTGAAAA ATCGAACAGT
    TATCCGCACC AGTTGTATAC CAGCAGCTCG CATTCACACA GCTACATTGG TTTGCCCTAT
    GCAGACCATA ACTATGGTGC TCGGCCTCCT CCAACGCCTC CAGCTTCTCC TCCTCCATCA
    GTAGTTATAA GCAAGAATGA AGTAGGCATA TTTACCACTC CCAACTTTGA TGAAACCTCC
    AGTGCTACTA CCATCAGTAC ATCAGAGGAT GGAAGCTATG GAACTGATAT TACCAGATGC
    ATTTGTGGCT TTACACATGA TGATGGATAT ATGATCTGTT GTGACAAATG CAGTGTCTGG
    CAGCACATTG ACTGCATGGG AATTGACAGA CAGCATATTC CTGACATATA TCTGTGTGAA
    CGTTGTCAAC CAAGGAACTT GGATAAGGAG AGGGCAGTGC TGTTGCAGCG GAGGAAAAGG
    GAAAATATGT CAGATGGGGA TACCAGCGCA ACAGAGAGCG GTGATGAGGT TCCTGTGGAA
    CTGTATACTG CTTTTCAGCA TACACCAACT ACATTTACAA TAGCTTCTCC AAGAGTCACA
    AAGGTCAATG ATAAGAAAAG GAAAAAAAGT GGGGAGAAAG AGCAGAACAT AGCAAAATGT
    AAAAAAGCAT TTCGGGAAGG ATCCAGAAAA TCTTCAAGAG TAAAGGGCTC AGCTCCAGAG
    ATTGATCCTA CTGACAGTTC AAACTTTGGA TGGGAAACTA AAATCAAAGC ATGGATGGAT
    CGTTATGAAG AAGCGAATAA TAACCAGTAC AGTGAAGGTG TTCAGAGGGA GGCACAAAAA
    ATAGCTCTGA GATTAGGCAA TGGAAATGAC AAGAAAGAAG TCAGCACCAG CAATCTGATT
    TTCAAACCTC CAGTAGAGAG TTACGTGCAA AAAAACAAGA AAATTTTAAA AGCTGCCAAA
    GACTTGCCTC CTGATGCACT TATTATTGAA TACAGAGGAA AGTTCATGCT GAGAGAACAA
    TTTGAAGCTA ATGGATATTT CTTTAAAAGG CCATACCCAT TTGTTTTATT TTATTCCAAG
    TTTCATGGGC TAGAAATGTG TGTTGATGCA AGGACTTTTG GAAATGAAGC TCGATTCATC
    AGGCGTTCAT GTACACCAAA TGCGGAGGTG AGGCATGTAA TTGAAGATGG AACGATTCAT
    CTTTATATTT ACTCCATCCA TAACATTCCA AAAGGAGCAG AGATTACAAT AGCATTTGAT
    TTTGATTATG GAAATTGTAA ATACAAAGTG GACTGTGCTT GCCTCAAAGA AAATCCTGAA
    TGTCCGGTTC TCAGACGTTC TGAGCCTACA GAAAACATCA ATACTGGATA TGAAACCAGA
    AGGAAAAAGG GAAAGAAAGA GAAAGATGTT TCAAGAGAAA AGGAGACTCA AAATCAGAAC
    ATCACGTTGG ACTGTGAAGG AGCAGCCACC AAAATGAAAA TCGCAGATAA TAAACAGAGG
    AAGCTCTCTC CCCTCAGGCT GTCAATTTCC AATAACCAGG AGCCAGATTT TATTGATGAT
    ATAGAAGAAA AAACTCCCAT TAGCAATGAA GTAGAAATGG AATCAGAGGA GCAGATTGCA
    GAGAGGAAAA GGAAGATGAC AAGAGAAGAA CGGAAAATGG AAGCCATCTT GCAAGCTTTT
    GCCAGACTAG AAAAAAGAGA AAAAAGAAGA GAACAGGCTT TGGAAAGGAT CAGCACAGCA
    AAAACTGAGG TTAAATCGGA ATGCAAGGAA CCACAGATTC TCAATGACAC TGAATTTATT
    CAGGAACCAG CAAAGGAAGA AGCTGTCACT AAGCCCACCC CAGCCAAGGT TAACAGAGCT
    AAACAGAGAA AAAGCTTCTC TCGAAGTAGA ACTCACATTG GACAACAGCG TAGACGACAC
    AGAACTGTGA GCATGTGTTC AGATATTCAG CCATCTTCTC CTGATGTGGA AGTAACATCA
    CAACACAATG AAACCGAGAA TGCTGCACTG GTGGCTGAGC CGGAAACGGA AACTGTTGTT
    ACAGAAATGG TTACTGAAAC GGAAGCGCCA GCACTTAATA AATGTCCTAC TAAGTATCCT
    AAAACAAAGA AGCACTTGGT AAATGAATGG TTAAGTGAAA AGAGTGATAA GACAGGGAAG
    CCTACAGACA GTGTTTCAGA AAGGCCTCTT CGTATAACTA CCGACCCTGA AGTTCTGGCT
    ACTCAACTGA ATTCTCTACC AGGTCTCACT TACAGTCCAC ATGTGTATTC TACTCCAAAG
    CACTATATTC GTTTTACTTC ACCATTCCTT TCAGAAAAGA GGAGGAAAAA AGAACCTGTG
    GAAAACATGT CTGGCTCTTG TAAGAAGCGT TGGTTGAAAC AGGCTTTGGA AGAAGAAAAC
    TCAACAGTGA TGGATAGATT TAATTCACCA TCGCTGGAGG GTTCTAGAAG TCCAGCCATC
    AACGGTGAAA ATAAAAGCCC CTTATTACTG AATGACAGCT GTTCCTTAAC AGATCTAACA
    ACACCTCTAA AAAAACGAAG ACTGTACCAG CTGTTGGAGT CTGCATTCTC GGAAACCTCT
    ACACCTACTC CTTCTCCATA TGCCACACCA ACTCATGCTG ATATTGCTGC CTCAGAGCCA
    CTGATGTTTG CTACTCCTCC TAGGGTAAAA ACAGAGGATG AAGCTTGTAG AAATGGTTAC
    AAACCCATTT ATTCGCCAGT TACTCCCGTA ACTCCATGTA TACATGGAAA TGCCATGCAC
    TTTGAGAATA TTTCCTCACC TGACAGTTCC CCAGAAATAA AAAGGCGAGC TTACAGTCAA
    GAGGGATATG ACAGAGCATC GATTCTAGCA CTGAATTCTT TCAGAAATTC CAACCTGACA
    GAAGTGGGCC TGCAGGAAAT AAAGACTATT GGATATTCCA GTCCAAGAAA TAGGACTGAT
    GTCACACGGC AGTGCACAGG AGAAATGGAA TCTGTGTCAG ACCTCCAGCT GGGACTCGAA
    GTAATTGAGC AAAGTGCACT GCATAAAAAC CTGGAAGCCC CTACACACGA TAGGACTGAT
    TCAAGCAGCC AATTAGAAAC TGCTCATTGT GGACGGGGCA CCATTTATTC TTCCTGGGTA
    AAAAGTCCCG ACAGGACAGG TGTAAATTTC TCAATGAATT CTAATTTGAG GGACTTGACC
    CCTTCACATC AGTTGGAGGT AGGAGGTGGA TTCAGAATAA GCGAGTCAAA GTGCCTGATT
    CAAGACGATG CTAGAGGCAT GTTCATGGAA GCATCTGTTT TTTGTACTTC AGAAGATGGA
    ATTGCATCTG GCTTTGGAAG GACTGTCAAT AATGACAACT TGATGGATGG AAATTGCACA
    CCCCAGAATC CTCCACAGAA GAAAAAGGTA TCCTTGCTAG AATACCGTAA GAGGCAACGA
    GAAGCTAGAA AAAGTGGCTC GAAGACAGAA AACTTTCCCC TTGTTACTGT ATCTCCTCAT
    GCTGCTGGTG CAGGAAACAT AAGTAGTAAC AGTGGTGCTA ATGATGGGTT TAACAACAGT
    GGTGAAAATG GGGAGCAAAC TGATAACGCT GCGAGCCTGC CTGTACCACT GCCAACTGCC
    GTTTATAGTG CAGCTCCAGA AGACGCTGGA AACAACAGTG CAATCAAGGA AGCTTCTTCC
    AGTGAGAAGA ACGAGCCTGA GGTTCAGTGG ACTGCATCAA CCTCTGTGGA ACAAGTGAGA
    GAACGAAGTT ATCATAGAGC TTTGCTTCTC AGTGATCATA GGAAAGACAA GGACTGTGAA
    CCTGATCCTG AAAATTCGGA GCCTACTTCT GAATGTCCAT CCCCAGATAC TTCACAGAAG
    ACGTGTAGGA GTCCTTCAAA AGCAAGCAAG CCCTCTTCGC CGAGTCCTGT AGTTTCAGCA
    CCATCACTGG GAAAAACACC TGCAAAGCCA GATTCACACT GGGAGACTGC AGCTAATGCA
    CCAGAGGCCG AAGGTGCGAA TCATCCGAAA TCGGAGCTGC AACAAAAACA GCTGACAAAT
    AACGTCCAAG CACTTTCAAA AACTCATCCA TCTCAGTCAC ATCTGCGCAG TTCTGCTGAG
    CAACTTTCAC ATTCACAGAA GTTGCCTTCT GCACCTTTGA AGCTCCATTG TCCCCCTTCA
    CCTCATGTAG AAAATCCCCC GAAGCCATCG ACGCCCCACG CGCCCGTGCA GCACGGTTAT
    CTGTCGCCAA AGCCTCACTC GCAGCAGCTG GGATCTCCGT ACAGACCTCA TCATCCACAG
    TCACCTCAAG TCGGAACGCC CCAGAGGGAA ACGCACCGCG GTTTCTATCC AGCAGCGCCA
    ACCCTTCAGC CCAGTAATCA GCAGCAGGCC AGCGGACCGC TGTTCACTCA GACGACTTCA
    GGACAATCCT CGGCTTCGTA CAGCCAGTTC AACCAACAGA ATTTGAACAG CAATGCGCCG
    CCTCCCCCGC CTCCCCCACC CCCTTCTTCC ACTTACTATC AGAACCAGCA GCCCTCTGGA
    AACTTTCAGA GTTACAGTCA GCTGAAGGGT AGCATCCCCC AACAGACTGT GTTTTCATCC
    GGACCAAATC AAGCACTTCC TGGCTCTGCG GGTCAGCAGA CGGTGCCGGG ACACCACGTA
    ACTGCAGGGC ATTTCTTGCC CTCTCAGAAC CCCAGTATTC ATCACCAGGC TTCAGCATCT
    GCCGCTCCTC CTCCGCCGCC GCCGCCTCCT GCTCCGGGCC CTCACCTGGT TCAGCAGCAG
    AGCACCCATC AGCAGCATTC TGTAGCACAC GTCGTCGGCC CGGTTCACGC TGTGGCAGTG
    GCTCCTGGGT CTCACATCCA CTCTCAAGCT GCCGCTCACC ATCTGCCACC GCCGCCTCCG
    CCTCCGGGCC CCATCCCCCA CCACCAGCCT CCTCATCCTC CAGCCGGACA CCAAGGTTTG
    CAAGCACAAC ACCAGCACGT TGTAAACTCT GCTCCTCCTC CCCCCCCGCC TCCCCCCTCC
    AACGTTATAG GCTCGGGGCA CCACCCAGCA TCGGCACAAG GGTTACACCA CCCATCGCAT
    CAAGGACCCC CTCATTTTCC TTCAGGCGCT CACACGAGCG TGTCCTCCTA TTCCTCGCAA
    GCCCCCCACC ACACGACGTT AGGACCCGGA CCTCAACATC AGCCTGCTGG AACAGGGCCT
    CATTGTCCGC TCCCCGGTCA GGGTCCTCAC ATCCAACCTC AAGGACCAAA CAGTGTTGCA
    ACCCCCACCG CTTCAGGGTT CTGCCCGCAC CCTGGCTCAG TAACGCTCCC GCACGCAGTG
    CAAGGACCGC AGCAGGCGTC ACCGGTGCCC GGACAGATCC CCATTCACAG AGCACAGGTG
    CCACCGACCT TTCAGAACAA TTACCATGGT TCAGGGTGGC ATTAA

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