XYLT1 cDNA ORF clone, Taeniopygia guttata(zebra finch)

The following XYLT1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the XYLT1 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
OTd02055 XM_002196073.2
Latest version!
Taeniopygia guttata xylosyltransferase I (XYLT1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OTd29052 XM_030284403.1
Latest version!
Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OTd29053 XM_030284404.1
Latest version!
Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OTd29054 XM_030284405.1
Latest version!
Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OTd29055 XM_030284406.1
Latest version!
Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00

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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 OTd02055
    Clone ID Related Accession (Same CDS sequence) XM_002196073.2
    Accession Version XM_002196073.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2502bp)
    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 1432483200000
    Organism Taeniopygia guttata(zebra finch)
    Product xylosyltransferase 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_002197361.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Feb 12, 2013 this sequence version replaced XM_002196073.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Taeniopygia guttata Annotation Release 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 1% of CDS bases ##RefSeq-Attributes-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
    ATGCTCAAAG ATGGCTATTT TTCCCACCGA CCGAAAGAGA AAATGCGAAC AGACAGCAAT 
    AATGAAAATT CAGTTCCCAA GGACTTTGAA ACTATTGATA ACAGTAACTT TGCTCCCAGG
    ACTCAGAGAC AAAAACACCA GTCTGAGCTG GTGAAAAAAC CCCTTAGCAA ACAAAAGGAG
    CACTTGAGAA AGAAACTGGA AGAGGAAAAG ATGAAGGAGA ACTTGCTGCT GGGGAAGAAC
    TCCAACGAGG TGGTGCAGTT CAGCGATCAC CTGGGAAAAA ACAGCAGCAA CAGCAACAAC
    CTGAAGGAGA TTGACAGGTT TCCCACACAG CATCTTTTAC AAAAAATTGA GAACAGCTCC
    CCTGAACTGA AATACGACCA ACCACCCAAG TGTGAGGTGA CGGGCAAGGA GGCGATCTCG
    GCCATGTCCC GCGCCAAGTC CCAGCAGTGT CGCCAGGAGA TCGCGGACGT TTACTGCCAG
    CACAAGCTTG GGAAGCTGAT GCCGGAGCAG GTGACACGCT TCTGTGCCCT GGAGGGAAAA
    GCCAACAACA ATGTTCAGTG GGATGAGGAC TCCGTAGAGT TCATGCCAGC CAACCCAGTC
    AGGATCGCAT TTGTCTTGGT TGTTCATGGC AGAGCTTCCC GGCAGCTCCA GCGCATGTTT
    AAGGCTATTT ACCATAAAGA CCATTTTTAT TACATTCATG TTGACAAGCG ATCCAATTAC
    TTGCACCGGC AAGTGCTGCA GTTTGCCAGC CAGTACCCAA ATGTGAGAGT CACCTCCTGG
    AGAATGGCCA CTATCTGGGG AGGAGCAAGT CTTCTGACCA CCTACCTGCA GACCATGAAG
    GACTTAATGG AGATGAGTGA CTGGCCCTGG GATTTCTTCA TTAACCTCAG TGCTGCCGAC
    TACCCAATCA GGACAAACGA TCAGCTCGTG GCATTCCTGT CCAGATACCG TGACATGAAC
    TTCTTGAAAT CACATGGGAG GGACAATGCA AGATTTATCA GGAAACAGGG GCTGGATCGG
    CTCTTCCTGG AGTGTGACAC GCACATGTGG CGCCTGGGGG ACCGCAAGAT CCCAGAAGGA
    ATCACCGTCG ACGGAGGGTC GGACTGGTTC CTCCTGAACA GGAAGTTTGT GGAATATGTC
    ACTTTTTCCA ATGATGATCT GGTAACAAAG ATGAAGAGGT TTTACTCTTA CACACTGCTT
    CCTGCCGAGT CCTTCTTTCA CACCGTGCTG GAGAACAGCC CGTTCTGTGA CTCCATGGTG
    GACAACAACC TGCGCATCAC CAACTGGAAC AGGAAGCTGG GCTGCAAGTG TCAGTACAAG
    CACATTGTGG ACTGGTGTGG CTGCTCACCC AATGACTTCA AACCAGCTGA CTTCCACCGG
    TTCCAGCAGA CTGCCAGGCC AACTTTCTTC GCCCGCAAGT TTGAGGCCGT GGTGAACCAG
    GAGATCATTG GCCAGCTGGA CTATTACCTG TACGGGAATT ACCCGTCGGG CACGCCGGGG
    CTGCGCTCCT ACTGGGAGAA CGTGTACGAG GAGCCCGACG GGCTGGGCGC CCTCAGCGAC
    GTGGCCCTCA CCATGTTCCA CTCCTTCTCC CGCCTGGGCC TGCGGCGGGC CGAGAGCTCG
    TTCCACACGG CTGGGGACAG CAGCTGCAGA TACTACCCCA TGGGCCATCC AGTTTCCATC
    CACCTTTACT TCCTTGCTGA CCGTTTCCAA GGCTTCCTGA TCAGGCACCA CGCAACCAAT
    CTGGCTGTCA GCAAACTGGA AACTTTGGAA ACGTGGGTGA TGCCCAAGAA AGTCTTCAAG
    ATTGCAAGTC CACCGAGTGA TTTTGGGAGG TTGCAGTTCT CAGAGATTGG CACCGAGTGG
    GATGCCAAGG AAAGGCTTTT CCGGAATTTT GGAGGACTCC TTGGGCCAAC AGACGAGCCA
    GTTGGGATGC AGAAGTGGGG GAAAGGCCCC AACGTCACCG TGACTGTCAT TTGGGTGGAT
    CCCATTAATG TAATTGCAGC AACATATGAT ATTCTTATTG AATCCAGTGC CGAGTTTACT
    CACTACAAAC CACCTCTGAA TTTGCCCCTG CGACCTGGTG TCTGGACAAT AAAAATTCTG
    CACCACTGGG TACAGGTAGC TGAAACCAAA TTCCTCATTA CTCCTCTCAC CTTCTCAAAT
    CAGCAGCCTA TCAAACAAGA GGAAGCCATC AAGCTCCACA GCGGGCCTCC AAAGAACGCC
    TACATGGAGC AGAGCTTCCA GGGCCTGAAC CCGGTGCTGA ACATCCCGGT CAGCGCCGCC
    CGCGCCGACC AGGCCAAGCG CAACGCGGGG CTCGTGGGCG CCCGCCTGGA CGCCTGGGTG
    GACTCTCTGG TCAGCAGCGT CTGGTCGGCC GTGGACGTCT GCAGCGTGGG CCCCACGGCC
    TGCCCCGTGC TGCAGGGCTG TGCCCAGACA GCCTGGAGCT CCCTCAGCCC CGACCCCAAG
    TCCGAGCTGG GCCCCGTCAA ACCCGACGGC CGCCTGAGGT AG

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

    RefSeq XP_002196109.2
    CDS1..2502
    Translation

    Target ORF information:

    RefSeq Version XM_002196073.2
    Organism Taeniopygia guttata(zebra finch)
    Definition Taeniopygia guttata xylosyltransferase I (XYLT1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002196073.2

    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
    ATGCTCAAAG ATGGCTATTT TTCCCACCGA CCGAAAGAGA AAATGCGAAC AGACAGCAAT 
    AATGAAAATT CAGTTCCCAA GGACTTTGAA ACTATTGATA ACAGTAACTT TGCTCCCAGG
    ACTCAGAGAC AAAAACACCA GTCTGAGCTG GTGAAAAAAC CCCTTAGCAA ACAAAAGGAG
    CACTTGAGAA AGAAACTGGA AGAGGAAAAG ATGAAGGAGA ACTTGCTGCT GGGGAAGAAC
    TCCAACGAGG TGGTGCAGTT CAGCGATCAC CTGGGAAAAA ACAGCAGCAA CAGCAACAAC
    CTGAAGGAGA TTGACAGGTT TCCCACACAG CATCTTTTAC AAAAAATTGA GAACAGCTCC
    CCTGAACTGA AATACGACCA ACCACCCAAG TGTGAGGTGA CGGGCAAGGA GGCGATCTCG
    GCCATGTCCC GCGCCAAGTC CCAGCAGTGT CGCCAGGAGA TCGCGGACGT TTACTGCCAG
    CACAAGCTTG GGAAGCTGAT GCCGGAGCAG GTGACACGCT TCTGTGCCCT GGAGGGAAAA
    GCCAACAACA ATGTTCAGTG GGATGAGGAC TCCGTAGAGT TCATGCCAGC CAACCCAGTC
    AGGATCGCAT TTGTCTTGGT TGTTCATGGC AGAGCTTCCC GGCAGCTCCA GCGCATGTTT
    AAGGCTATTT ACCATAAAGA CCATTTTTAT TACATTCATG TTGACAAGCG ATCCAATTAC
    TTGCACCGGC AAGTGCTGCA GTTTGCCAGC CAGTACCCAA ATGTGAGAGT CACCTCCTGG
    AGAATGGCCA CTATCTGGGG AGGAGCAAGT CTTCTGACCA CCTACCTGCA GACCATGAAG
    GACTTAATGG AGATGAGTGA CTGGCCCTGG GATTTCTTCA TTAACCTCAG TGCTGCCGAC
    TACCCAATCA GGACAAACGA TCAGCTCGTG GCATTCCTGT CCAGATACCG TGACATGAAC
    TTCTTGAAAT CACATGGGAG GGACAATGCA AGATTTATCA GGAAACAGGG GCTGGATCGG
    CTCTTCCTGG AGTGTGACAC GCACATGTGG CGCCTGGGGG ACCGCAAGAT CCCAGAAGGA
    ATCACCGTCG ACGGAGGGTC GGACTGGTTC CTCCTGAACA GGAAGTTTGT GGAATATGTC
    ACTTTTTCCA ATGATGATCT GGTAACAAAG ATGAAGAGGT TTTACTCTTA CACACTGCTT
    CCTGCCGAGT CCTTCTTTCA CACCGTGCTG GAGAACAGCC CGTTCTGTGA CTCCATGGTG
    GACAACAACC TGCGCATCAC CAACTGGAAC AGGAAGCTGG GCTGCAAGTG TCAGTACAAG
    CACATTGTGG ACTGGTGTGG CTGCTCACCC AATGACTTCA AACCAGCTGA CTTCCACCGG
    TTCCAGCAGA CTGCCAGGCC AACTTTCTTC GCCCGCAAGT TTGAGGCCGT GGTGAACCAG
    GAGATCATTG GCCAGCTGGA CTATTACCTG TACGGGAATT ACCCGTCGGG CACGCCGGGG
    CTGCGCTCCT ACTGGGAGAA CGTGTACGAG GAGCCCGACG GGCTGGGCGC CCTCAGCGAC
    GTGGCCCTCA CCATGTTCCA CTCCTTCTCC CGCCTGGGCC TGCGGCGGGC CGAGAGCTCG
    TTCCACACGG CTGGGGACAG CAGCTGCAGA TACTACCCCA TGGGCCATCC AGTTTCCATC
    CACCTTTACT TCCTTGCTGA CCGTTTCCAA GGCTTCCTGA TCAGGCACCA CGCAACCAAT
    CTGGCTGTCA GCAAACTGGA AACTTTGGAA ACGTGGGTGA TGCCCAAGAA AGTCTTCAAG
    ATTGCAAGTC CACCGAGTGA TTTTGGGAGG TTGCAGTTCT CAGAGATTGG CACCGAGTGG
    GATGCCAAGG AAAGGCTTTT CCGGAATTTT GGAGGACTCC TTGGGCCAAC AGACGAGCCA
    GTTGGGATGC AGAAGTGGGG GAAAGGCCCC AACGTCACCG TGACTGTCAT TTGGGTGGAT
    CCCATTAATG TAATTGCAGC AACATATGAT ATTCTTATTG AATCCAGTGC CGAGTTTACT
    CACTACAAAC CACCTCTGAA TTTGCCCCTG CGACCTGGTG TCTGGACAAT AAAAATTCTG
    CACCACTGGG TACAGGTAGC TGAAACCAAA TTCCTCATTA CTCCTCTCAC CTTCTCAAAT
    CAGCAGCCTA TCAAACAAGA GGAAGCCATC AAGCTCCACA GCGGGCCTCC AAAGAACGCC
    TACATGGAGC AGAGCTTCCA GGGCCTGAAC CCGGTGCTGA ACATCCCGGT CAGCGCCGCC
    CGCGCCGACC AGGCCAAGCG CAACGCGGGG CTCGTGGGCG CCCGCCTGGA CGCCTGGGTG
    GACTCTCTGG TCAGCAGCGT CTGGTCGGCC GTGGACGTCT GCAGCGTGGG CCCCACGGCC
    TGCCCCGTGC TGCAGGGCTG TGCCCAGACA GCCTGGAGCT CCCTCAGCCC CGACCCCAAG
    TCCGAGCTGG GCCCCGTCAA ACCCGACGGC CGCCTGAGGT AG

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

    CloneID OTd29052
    Clone ID Related Accession (Same CDS sequence) XM_030284403.1
    Accession Version XM_030284403.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2754bp)
    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 1565193600000
    Organism Taeniopygia guttata(zebra finch)
    Product xylosyltransferase 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_044226.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Taeniopygia guttata Annotation Release 104 Annotation Version :: 104 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGATTGAACC TCCTAGTCCC
    TACACCAGCT TGGAGACTCA GGATGGCTAT TTTTCCCACC GACCGAAAGA GAAAATGCGA
    ACAGACAGCA ATAATGAAAA TTCAGTTCCC AAGGACTTTG AAACTATTGA TAACAGTAAC
    TTTGCTCCCA GGACTCAGAG ACAAAAACAC CAGTCTGAGC TGGTGAAAAA ACCCCTTAGC
    AAACAAAAGG AGCACTTGAG AAAGAAACTG GAAGAGGAAA AGATGAAGGA GAACTTGCTG
    CTGGGGAAGA ACTCCAACGA GGTGGTGCAG TTCAGCGATC ACCTGGGAAA AAACAGCAGC
    AACAGCAACA ACCTGAAGGA GATTGACAGG TTTCCCACAC AGCATCTTTT ACAAAAAATT
    GAGAACAGCT CCCCTGAACT GAAATACGAC CAACCACCCA AGTGTGAGGT GACGGGCAAG
    GAGGCGATCT CGGCCATGTC CCGCGCCAAG TCCCAGCAGT GTCGCCAGGA GATCGCGGAC
    GTTTACTGCC AGCACAAGCT TGGGAAGCTG ATGCCGGAGC AGGTGACACG CTTCTGTGCC
    CTGGAGGGAA AAGCCAACAA CAATGTTCAG TGGGATGAGG ACTCCGTAGA GTTCATGCCA
    GCCAACCCAG TCAGGATCGC ATTTGTCTTG GTTGTTCATG GCAGAGCTTC CCGGCAGCTC
    CAGCGCATGT TTAAGGCTAT TTACCATAAA GACCATTTTT ATTACATTCA TGTTGACAAG
    CGATCCAATT ACTTGCACCG GCAAGTGCTG CAGTTTGCCA GCCAGTACCC AAATGTGAGA
    GTCACCTCCT GGAGAATGGC CACTATCTGG GGAGGAGCAA GTCTTCTGAC CACCTACCTG
    CAGACCATGA AGGACTTAAT GGAGATGAGT GACTGGCCCT GGGATTTCTT CATTAACCTC
    AGTGCTGCCG ACTACCCAAT CAGGACAAAC GATCAGCTCG TGGCATTCCT GTCCAGATAC
    CGTGACATGA ACTTCTTGAA ATCACATGGG AGGGACAATG CAAGATTTAT CAGGAAACAG
    GGGCTGGATC GGCTCTTCCT GGAGTGTGAC ACGCACATGT GGCGCCTGGG GGACCGCAAG
    ATCCCAGAAG GAATCACCGT CGACGGAGGG TCGGACTGGT TCCTCCTGAA CAGGAAGTTT
    GTGGAATATG TCACTTTTTC CAATGATGAT CTGGTAACAA AGATGAAGAG GTTTTACTCT
    TACACACTGC TTCCTGCCGA GTCCTTCTTT CACACCGTGC TGGAGAACAG CCCGTTCTGT
    GACTCCATGG TGGACAACAA CCTGCGCATC ACCAACTGGA ACAGGAAGCT GGGCTGCAAG
    TGTCAGTACA AGCACATTGT GGACTGGTGT GGCTGCTCAC CCAATGACTT CAAACCAGCT
    GACTTCCACC GGTTCCAGCA GACTGCCAGG CCAACTTTCT TCGCCCGCAA GTTTGAGGCC
    GTGGTGAACC AGGAGATCAT TGGCCAGCTG GACTATTACC TGTACGGGAA TTACCCGTCG
    GGCACGCCGG GGCTGCGCTC CTACTGGGAG AACGTGTACG AGGAGCCCGA CGGGCTGGGC
    GCCCTCAGCG ACGTGGCCCT CACCATGTTC CACTCCTTCT CCCGCCTGGG CCTGCGGCGG
    GCCGAGAGCT CGTTCCACAC GGCTGGGGAC AGCAGCTGCA GATACTACCC CATGGGCCAT
    CCAGTTTCCA TCCACCTTTA CTTCCTTGCT GACCGTTTCC AAGGCTTCCT GATCAGGCAC
    CACGCAACCA ATCTGGCTGT CAGCAAACTG GAAACTTTGG AAACGTGGGT GATGCCCAAG
    AAAGTCTTCA AGATTGCAAG TCCACCGAGT GATTTTGGGA GGTTGCAGTT CTCAGAGATT
    GGCACCGAGT GGGATGCCAA GGAAAGGCTT TTCCGGAATT TTGGAGGACT CCTTGGGCCA
    ACAGACGAGC CAGTTGGGAT GCAGAAGTGG GGGAAAGGCC CCAACGTCAC CGTGACTGTC
    ATTTGGGTGG ATCCCATTAA TGTAATTGCA GCAACATATG ATATTCTTAT TGAATCCAGT
    GCCGAGTTTA CTCACTACAA ACCACCTCTG AATTTGCCCC TGCGACCTGG TGTCTGGACA
    ATAAAAATTC TGCACCACTG GGTACAGGTA GCTGAAACCA AATTCCTCAT TACTCCTCTC
    ACCTTCTCAA ATCAGCAGCC TATCAAACAA GAGGAAGCCA TCAAGCTCCA CAGCGGGCCT
    CCAAAGAACG CCTACATGGA GCAGAGCTTC CAGGGCCTGA ACCCGGTGCT GAACATCCCG
    GTCAGCGCCG CCCGCGCCGA CCAGGCCAAG CGCAACGCGG GGCTCGTGGG CGCCCGCCTG
    GACGCCTGGG TGGACTCTCT GGTCAGCAGC GTCTGGTCGG CCGTGGACGT CTGCAGCGTG
    GGCCCCACGG CCTGCCCCGT GCTGCAGGGC TGTGCCCAGA CAGCCTGGAG CTCCCTCAGC
    CCCGACCCCA AGTCCGAGCT GGGCCCCGTC AAACCCGACG GCCGCCTGAG GTAG

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

    RefSeq XP_030140263.1
    CDS337..3090
    Translation

    Target ORF information:

    RefSeq Version XM_030284403.1
    Organism Taeniopygia guttata(zebra finch)
    Definition Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030284403.1

    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
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGATTGAACC TCCTAGTCCC
    TACACCAGCT TGGAGACTCA GGATGGCTAT TTTTCCCACC GACCGAAAGA GAAAATGCGA
    ACAGACAGCA ATAATGAAAA TTCAGTTCCC AAGGACTTTG AAACTATTGA TAACAGTAAC
    TTTGCTCCCA GGACTCAGAG ACAAAAACAC CAGTCTGAGC TGGTGAAAAA ACCCCTTAGC
    AAACAAAAGG AGCACTTGAG AAAGAAACTG GAAGAGGAAA AGATGAAGGA GAACTTGCTG
    CTGGGGAAGA ACTCCAACGA GGTGGTGCAG TTCAGCGATC ACCTGGGAAA AAACAGCAGC
    AACAGCAACA ACCTGAAGGA GATTGACAGG TTTCCCACAC AGCATCTTTT ACAAAAAATT
    GAGAACAGCT CCCCTGAACT GAAATACGAC CAACCACCCA AGTGTGAGGT GACGGGCAAG
    GAGGCGATCT CGGCCATGTC CCGCGCCAAG TCCCAGCAGT GTCGCCAGGA GATCGCGGAC
    GTTTACTGCC AGCACAAGCT TGGGAAGCTG ATGCCGGAGC AGGTGACACG CTTCTGTGCC
    CTGGAGGGAA AAGCCAACAA CAATGTTCAG TGGGATGAGG ACTCCGTAGA GTTCATGCCA
    GCCAACCCAG TCAGGATCGC ATTTGTCTTG GTTGTTCATG GCAGAGCTTC CCGGCAGCTC
    CAGCGCATGT TTAAGGCTAT TTACCATAAA GACCATTTTT ATTACATTCA TGTTGACAAG
    CGATCCAATT ACTTGCACCG GCAAGTGCTG CAGTTTGCCA GCCAGTACCC AAATGTGAGA
    GTCACCTCCT GGAGAATGGC CACTATCTGG GGAGGAGCAA GTCTTCTGAC CACCTACCTG
    CAGACCATGA AGGACTTAAT GGAGATGAGT GACTGGCCCT GGGATTTCTT CATTAACCTC
    AGTGCTGCCG ACTACCCAAT CAGGACAAAC GATCAGCTCG TGGCATTCCT GTCCAGATAC
    CGTGACATGA ACTTCTTGAA ATCACATGGG AGGGACAATG CAAGATTTAT CAGGAAACAG
    GGGCTGGATC GGCTCTTCCT GGAGTGTGAC ACGCACATGT GGCGCCTGGG GGACCGCAAG
    ATCCCAGAAG GAATCACCGT CGACGGAGGG TCGGACTGGT TCCTCCTGAA CAGGAAGTTT
    GTGGAATATG TCACTTTTTC CAATGATGAT CTGGTAACAA AGATGAAGAG GTTTTACTCT
    TACACACTGC TTCCTGCCGA GTCCTTCTTT CACACCGTGC TGGAGAACAG CCCGTTCTGT
    GACTCCATGG TGGACAACAA CCTGCGCATC ACCAACTGGA ACAGGAAGCT GGGCTGCAAG
    TGTCAGTACA AGCACATTGT GGACTGGTGT GGCTGCTCAC CCAATGACTT CAAACCAGCT
    GACTTCCACC GGTTCCAGCA GACTGCCAGG CCAACTTTCT TCGCCCGCAA GTTTGAGGCC
    GTGGTGAACC AGGAGATCAT TGGCCAGCTG GACTATTACC TGTACGGGAA TTACCCGTCG
    GGCACGCCGG GGCTGCGCTC CTACTGGGAG AACGTGTACG AGGAGCCCGA CGGGCTGGGC
    GCCCTCAGCG ACGTGGCCCT CACCATGTTC CACTCCTTCT CCCGCCTGGG CCTGCGGCGG
    GCCGAGAGCT CGTTCCACAC GGCTGGGGAC AGCAGCTGCA GATACTACCC CATGGGCCAT
    CCAGTTTCCA TCCACCTTTA CTTCCTTGCT GACCGTTTCC AAGGCTTCCT GATCAGGCAC
    CACGCAACCA ATCTGGCTGT CAGCAAACTG GAAACTTTGG AAACGTGGGT GATGCCCAAG
    AAAGTCTTCA AGATTGCAAG TCCACCGAGT GATTTTGGGA GGTTGCAGTT CTCAGAGATT
    GGCACCGAGT GGGATGCCAA GGAAAGGCTT TTCCGGAATT TTGGAGGACT CCTTGGGCCA
    ACAGACGAGC CAGTTGGGAT GCAGAAGTGG GGGAAAGGCC CCAACGTCAC CGTGACTGTC
    ATTTGGGTGG ATCCCATTAA TGTAATTGCA GCAACATATG ATATTCTTAT TGAATCCAGT
    GCCGAGTTTA CTCACTACAA ACCACCTCTG AATTTGCCCC TGCGACCTGG TGTCTGGACA
    ATAAAAATTC TGCACCACTG GGTACAGGTA GCTGAAACCA AATTCCTCAT TACTCCTCTC
    ACCTTCTCAA ATCAGCAGCC TATCAAACAA GAGGAAGCCA TCAAGCTCCA CAGCGGGCCT
    CCAAAGAACG CCTACATGGA GCAGAGCTTC CAGGGCCTGA ACCCGGTGCT GAACATCCCG
    GTCAGCGCCG CCCGCGCCGA CCAGGCCAAG CGCAACGCGG GGCTCGTGGG CGCCCGCCTG
    GACGCCTGGG TGGACTCTCT GGTCAGCAGC GTCTGGTCGG CCGTGGACGT CTGCAGCGTG
    GGCCCCACGG CCTGCCCCGT GCTGCAGGGC TGTGCCCAGA CAGCCTGGAG CTCCCTCAGC
    CCCGACCCCA AGTCCGAGCT GGGCCCCGTC AAACCCGACG GCCGCCTGAG GTAG

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

    CloneID OTd29053
    Clone ID Related Accession (Same CDS sequence) XM_030284404.1
    Accession Version XM_030284404.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2751bp)
    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 1565193600000
    Organism Taeniopygia guttata(zebra finch)
    Product xylosyltransferase 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_044226.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Taeniopygia guttata Annotation Release 104 Annotation Version :: 104 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGATTGAACC TCCTAGTCCC
    TACACCAGCT TGGAGACTCA GGATGGCTAT TTTTCCCACC GACCGAAAGA GAAAATGCGA
    ACAGACAGCA ATAATGAAAA TTCAGTTCCC AAGGACTTTG AAACTATTGA TAACAGTAAC
    TTTGCTCCCA GGACTCAGAG ACAAAAACAC CAGTCTGAGC TGGTGAAAAA ACCCCTTAGC
    AAACAAAAGG AGCACTTGAG AAAGAAACTG GAAGAGGAAA AGATGAAGGA GAACTTGCTG
    CTGGGGAAGA ACTCCAACGA GGTGGTGCAG TTCAGCGATC ACCTGGGAAA AAACAGCAGC
    AACAGCAACA ACCTGAAGGA GATTGACAGG TTTCCCACAC AGCATCTTTT ACAAAAAATT
    GAGAACAGCT CCCCTGAACT GAAATACGAC CAACCACCCA AGTGTGAGGT GACGGGCAAG
    GAGGCGATCT CGGCCATGTC CCGCGCCAAG TCCCAGCAGT GTCGCCAGGA GATCGCGGAC
    GTTTACTGCC AGCACAAGCT TGGGAAGCTG ATGCCGGAGC AGGTGACACG CTTCTGTGCC
    CTGGAGGGAA AAGCCAACAA CAATGTTCAG TGGGATGAGG ACTCCGTAGA GTTCATGCCA
    GCCAACCCAG TCAGGATCGC ATTTGTCTTG GTTGTTCATG GCAGAGCTTC CCGGCAGCTC
    CAGCGCATGT TTAAGGCTAT TTACCATAAA GACCATTTTT ATTACATTCA TGTTGACAAG
    CGATCCAATT ACTTGCACCG GCAAGTGCTG CAGTTTGCCA GCCAGTACCC AAATGTGAGA
    GTCACCTCCT GGAGAATGGC CACTATCTGG GGAGGAGCAA GTCTTCTGAC CACCTACCTG
    CAGACCATGA AGGACTTAAT GGAGATGAGT GACTGGCCCT GGGATTTCTT CATTAACCTC
    AGTGCTGCCG ACTACCCAAT CAGGACAAAC GATCAGCTCG TGGCATTCCT GTCCAGATAC
    CGTGACATGA ACTTCTTGAA ATCACATGGG AGGGACAATG CAAGATTTAT CAGGAAACAG
    GGGCTGGATC GGCTCTTCCT GGAGTGTGAC ACGCACATGT GGCGCCTGGG GGACCGCAAG
    ATCCCAGAAG GAATCACCGT CGACGGAGGG TCGGACTGGT TCCTCCTGAA CAGGAAGTTT
    GTGGAATATG TCACTTTTTC CAATGATGAT CTGGTAACAA AGATGAAGAG GTTTTACTCT
    TACACACTGC TTCCTGCCGA GTCCTTCTTT CACACCGTGC TGGAGAACAG CCCGTTCTGT
    GACTCCATGG TGGACAACAA CCTGCGCATC ACCAACTGGA ACAGGAAGCT GGGCTGCAAG
    TGTCAGTACA AGCACATTGT GGACTGGTGT GGCTGCTCAC CCAATGACTT CAAACCAGCT
    GACTTCCACC GGTTCCAGAC TGCCAGGCCA ACTTTCTTCG CCCGCAAGTT TGAGGCCGTG
    GTGAACCAGG AGATCATTGG CCAGCTGGAC TATTACCTGT ACGGGAATTA CCCGTCGGGC
    ACGCCGGGGC TGCGCTCCTA CTGGGAGAAC GTGTACGAGG AGCCCGACGG GCTGGGCGCC
    CTCAGCGACG TGGCCCTCAC CATGTTCCAC TCCTTCTCCC GCCTGGGCCT GCGGCGGGCC
    GAGAGCTCGT TCCACACGGC TGGGGACAGC AGCTGCAGAT ACTACCCCAT GGGCCATCCA
    GTTTCCATCC ACCTTTACTT CCTTGCTGAC CGTTTCCAAG GCTTCCTGAT CAGGCACCAC
    GCAACCAATC TGGCTGTCAG CAAACTGGAA ACTTTGGAAA CGTGGGTGAT GCCCAAGAAA
    GTCTTCAAGA TTGCAAGTCC ACCGAGTGAT TTTGGGAGGT TGCAGTTCTC AGAGATTGGC
    ACCGAGTGGG ATGCCAAGGA AAGGCTTTTC CGGAATTTTG GAGGACTCCT TGGGCCAACA
    GACGAGCCAG TTGGGATGCA GAAGTGGGGG AAAGGCCCCA ACGTCACCGT GACTGTCATT
    TGGGTGGATC CCATTAATGT AATTGCAGCA ACATATGATA TTCTTATTGA ATCCAGTGCC
    GAGTTTACTC ACTACAAACC ACCTCTGAAT TTGCCCCTGC GACCTGGTGT CTGGACAATA
    AAAATTCTGC ACCACTGGGT ACAGGTAGCT GAAACCAAAT TCCTCATTAC TCCTCTCACC
    TTCTCAAATC AGCAGCCTAT CAAACAAGAG GAAGCCATCA AGCTCCACAG CGGGCCTCCA
    AAGAACGCCT ACATGGAGCA GAGCTTCCAG GGCCTGAACC CGGTGCTGAA CATCCCGGTC
    AGCGCCGCCC GCGCCGACCA GGCCAAGCGC AACGCGGGGC TCGTGGGCGC CCGCCTGGAC
    GCCTGGGTGG ACTCTCTGGT CAGCAGCGTC TGGTCGGCCG TGGACGTCTG CAGCGTGGGC
    CCCACGGCCT GCCCCGTGCT GCAGGGCTGT GCCCAGACAG CCTGGAGCTC CCTCAGCCCC
    GACCCCAAGT CCGAGCTGGG CCCCGTCAAA CCCGACGGCC GCCTGAGGTA G

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

    RefSeq XP_030140264.1
    CDS339..3089
    Translation

    Target ORF information:

    RefSeq Version XM_030284404.1
    Organism Taeniopygia guttata(zebra finch)
    Definition Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030284404.1

    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
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGATTGAACC TCCTAGTCCC
    TACACCAGCT TGGAGACTCA GGATGGCTAT TTTTCCCACC GACCGAAAGA GAAAATGCGA
    ACAGACAGCA ATAATGAAAA TTCAGTTCCC AAGGACTTTG AAACTATTGA TAACAGTAAC
    TTTGCTCCCA GGACTCAGAG ACAAAAACAC CAGTCTGAGC TGGTGAAAAA ACCCCTTAGC
    AAACAAAAGG AGCACTTGAG AAAGAAACTG GAAGAGGAAA AGATGAAGGA GAACTTGCTG
    CTGGGGAAGA ACTCCAACGA GGTGGTGCAG TTCAGCGATC ACCTGGGAAA AAACAGCAGC
    AACAGCAACA ACCTGAAGGA GATTGACAGG TTTCCCACAC AGCATCTTTT ACAAAAAATT
    GAGAACAGCT CCCCTGAACT GAAATACGAC CAACCACCCA AGTGTGAGGT GACGGGCAAG
    GAGGCGATCT CGGCCATGTC CCGCGCCAAG TCCCAGCAGT GTCGCCAGGA GATCGCGGAC
    GTTTACTGCC AGCACAAGCT TGGGAAGCTG ATGCCGGAGC AGGTGACACG CTTCTGTGCC
    CTGGAGGGAA AAGCCAACAA CAATGTTCAG TGGGATGAGG ACTCCGTAGA GTTCATGCCA
    GCCAACCCAG TCAGGATCGC ATTTGTCTTG GTTGTTCATG GCAGAGCTTC CCGGCAGCTC
    CAGCGCATGT TTAAGGCTAT TTACCATAAA GACCATTTTT ATTACATTCA TGTTGACAAG
    CGATCCAATT ACTTGCACCG GCAAGTGCTG CAGTTTGCCA GCCAGTACCC AAATGTGAGA
    GTCACCTCCT GGAGAATGGC CACTATCTGG GGAGGAGCAA GTCTTCTGAC CACCTACCTG
    CAGACCATGA AGGACTTAAT GGAGATGAGT GACTGGCCCT GGGATTTCTT CATTAACCTC
    AGTGCTGCCG ACTACCCAAT CAGGACAAAC GATCAGCTCG TGGCATTCCT GTCCAGATAC
    CGTGACATGA ACTTCTTGAA ATCACATGGG AGGGACAATG CAAGATTTAT CAGGAAACAG
    GGGCTGGATC GGCTCTTCCT GGAGTGTGAC ACGCACATGT GGCGCCTGGG GGACCGCAAG
    ATCCCAGAAG GAATCACCGT CGACGGAGGG TCGGACTGGT TCCTCCTGAA CAGGAAGTTT
    GTGGAATATG TCACTTTTTC CAATGATGAT CTGGTAACAA AGATGAAGAG GTTTTACTCT
    TACACACTGC TTCCTGCCGA GTCCTTCTTT CACACCGTGC TGGAGAACAG CCCGTTCTGT
    GACTCCATGG TGGACAACAA CCTGCGCATC ACCAACTGGA ACAGGAAGCT GGGCTGCAAG
    TGTCAGTACA AGCACATTGT GGACTGGTGT GGCTGCTCAC CCAATGACTT CAAACCAGCT
    GACTTCCACC GGTTCCAGAC TGCCAGGCCA ACTTTCTTCG CCCGCAAGTT TGAGGCCGTG
    GTGAACCAGG AGATCATTGG CCAGCTGGAC TATTACCTGT ACGGGAATTA CCCGTCGGGC
    ACGCCGGGGC TGCGCTCCTA CTGGGAGAAC GTGTACGAGG AGCCCGACGG GCTGGGCGCC
    CTCAGCGACG TGGCCCTCAC CATGTTCCAC TCCTTCTCCC GCCTGGGCCT GCGGCGGGCC
    GAGAGCTCGT TCCACACGGC TGGGGACAGC AGCTGCAGAT ACTACCCCAT GGGCCATCCA
    GTTTCCATCC ACCTTTACTT CCTTGCTGAC CGTTTCCAAG GCTTCCTGAT CAGGCACCAC
    GCAACCAATC TGGCTGTCAG CAAACTGGAA ACTTTGGAAA CGTGGGTGAT GCCCAAGAAA
    GTCTTCAAGA TTGCAAGTCC ACCGAGTGAT TTTGGGAGGT TGCAGTTCTC AGAGATTGGC
    ACCGAGTGGG ATGCCAAGGA AAGGCTTTTC CGGAATTTTG GAGGACTCCT TGGGCCAACA
    GACGAGCCAG TTGGGATGCA GAAGTGGGGG AAAGGCCCCA ACGTCACCGT GACTGTCATT
    TGGGTGGATC CCATTAATGT AATTGCAGCA ACATATGATA TTCTTATTGA ATCCAGTGCC
    GAGTTTACTC ACTACAAACC ACCTCTGAAT TTGCCCCTGC GACCTGGTGT CTGGACAATA
    AAAATTCTGC ACCACTGGGT ACAGGTAGCT GAAACCAAAT TCCTCATTAC TCCTCTCACC
    TTCTCAAATC AGCAGCCTAT CAAACAAGAG GAAGCCATCA AGCTCCACAG CGGGCCTCCA
    AAGAACGCCT ACATGGAGCA GAGCTTCCAG GGCCTGAACC CGGTGCTGAA CATCCCGGTC
    AGCGCCGCCC GCGCCGACCA GGCCAAGCGC AACGCGGGGC TCGTGGGCGC CCGCCTGGAC
    GCCTGGGTGG ACTCTCTGGT CAGCAGCGTC TGGTCGGCCG TGGACGTCTG CAGCGTGGGC
    CCCACGGCCT GCCCCGTGCT GCAGGGCTGT GCCCAGACAG CCTGGAGCTC CCTCAGCCCC
    GACCCCAAGT CCGAGCTGGG CCCCGTCAAA CCCGACGGCC GCCTGAGGTA G

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

    CloneID OTd29054
    Clone ID Related Accession (Same CDS sequence) XM_030284405.1
    Accession Version XM_030284405.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2715bp)
    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 1565193600000
    Organism Taeniopygia guttata(zebra finch)
    Product xylosyltransferase 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_044226.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Taeniopygia guttata Annotation Release 104 Annotation Version :: 104 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGGATGGCTA TTTTTCCCAC
    CGACCGAAAG AGAAAATGCG AACAGACAGC AATAATGAAA ATTCAGTTCC CAAGGACTTT
    GAAACTATTG ATAACAGTAA CTTTGCTCCC AGGACTCAGA GACAAAAACA CCAGTCTGAG
    CTGGTGAAAA AACCCCTTAG CAAACAAAAG GAGCACTTGA GAAAGAAACT GGAAGAGGAA
    AAGATGAAGG AGAACTTGCT GCTGGGGAAG AACTCCAACG AGGTGGTGCA GTTCAGCGAT
    CACCTGGGAA AAAACAGCAG CAACAGCAAC AACCTGAAGG AGATTGACAG GTTTCCCACA
    CAGCATCTTT TACAAAAAAT TGAGAACAGC TCCCCTGAAC TGAAATACGA CCAACCACCC
    AAGTGTGAGG TGACGGGCAA GGAGGCGATC TCGGCCATGT CCCGCGCCAA GTCCCAGCAG
    TGTCGCCAGG AGATCGCGGA CGTTTACTGC CAGCACAAGC TTGGGAAGCT GATGCCGGAG
    CAGGTGACAC GCTTCTGTGC CCTGGAGGGA AAAGCCAACA ACAATGTTCA GTGGGATGAG
    GACTCCGTAG AGTTCATGCC AGCCAACCCA GTCAGGATCG CATTTGTCTT GGTTGTTCAT
    GGCAGAGCTT CCCGGCAGCT CCAGCGCATG TTTAAGGCTA TTTACCATAA AGACCATTTT
    TATTACATTC ATGTTGACAA GCGATCCAAT TACTTGCACC GGCAAGTGCT GCAGTTTGCC
    AGCCAGTACC CAAATGTGAG AGTCACCTCC TGGAGAATGG CCACTATCTG GGGAGGAGCA
    AGTCTTCTGA CCACCTACCT GCAGACCATG AAGGACTTAA TGGAGATGAG TGACTGGCCC
    TGGGATTTCT TCATTAACCT CAGTGCTGCC GACTACCCAA TCAGGACAAA CGATCAGCTC
    GTGGCATTCC TGTCCAGATA CCGTGACATG AACTTCTTGA AATCACATGG GAGGGACAAT
    GCAAGATTTA TCAGGAAACA GGGGCTGGAT CGGCTCTTCC TGGAGTGTGA CACGCACATG
    TGGCGCCTGG GGGACCGCAA GATCCCAGAA GGAATCACCG TCGACGGAGG GTCGGACTGG
    TTCCTCCTGA ACAGGAAGTT TGTGGAATAT GTCACTTTTT CCAATGATGA TCTGGTAACA
    AAGATGAAGA GGTTTTACTC TTACACACTG CTTCCTGCCG AGTCCTTCTT TCACACCGTG
    CTGGAGAACA GCCCGTTCTG TGACTCCATG GTGGACAACA ACCTGCGCAT CACCAACTGG
    AACAGGAAGC TGGGCTGCAA GTGTCAGTAC AAGCACATTG TGGACTGGTG TGGCTGCTCA
    CCCAATGACT TCAAACCAGC TGACTTCCAC CGGTTCCAGC AGACTGCCAG GCCAACTTTC
    TTCGCCCGCA AGTTTGAGGC CGTGGTGAAC CAGGAGATCA TTGGCCAGCT GGACTATTAC
    CTGTACGGGA ATTACCCGTC GGGCACGCCG GGGCTGCGCT CCTACTGGGA GAACGTGTAC
    GAGGAGCCCG ACGGGCTGGG CGCCCTCAGC GACGTGGCCC TCACCATGTT CCACTCCTTC
    TCCCGCCTGG GCCTGCGGCG GGCCGAGAGC TCGTTCCACA CGGCTGGGGA CAGCAGCTGC
    AGATACTACC CCATGGGCCA TCCAGTTTCC ATCCACCTTT ACTTCCTTGC TGACCGTTTC
    CAAGGCTTCC TGATCAGGCA CCACGCAACC AATCTGGCTG TCAGCAAACT GGAAACTTTG
    GAAACGTGGG TGATGCCCAA GAAAGTCTTC AAGATTGCAA GTCCACCGAG TGATTTTGGG
    AGGTTGCAGT TCTCAGAGAT TGGCACCGAG TGGGATGCCA AGGAAAGGCT TTTCCGGAAT
    TTTGGAGGAC TCCTTGGGCC AACAGACGAG CCAGTTGGGA TGCAGAAGTG GGGGAAAGGC
    CCCAACGTCA CCGTGACTGT CATTTGGGTG GATCCCATTA ATGTAATTGC AGCAACATAT
    GATATTCTTA TTGAATCCAG TGCCGAGTTT ACTCACTACA AACCACCTCT GAATTTGCCC
    CTGCGACCTG GTGTCTGGAC AATAAAAATT CTGCACCACT GGGTACAGGT AGCTGAAACC
    AAATTCCTCA TTACTCCTCT CACCTTCTCA AATCAGCAGC CTATCAAACA AGAGGAAGCC
    ATCAAGCTCC ACAGCGGGCC TCCAAAGAAC GCCTACATGG AGCAGAGCTT CCAGGGCCTG
    AACCCGGTGC TGAACATCCC GGTCAGCGCC GCCCGCGCCG ACCAGGCCAA GCGCAACGCG
    GGGCTCGTGG GCGCCCGCCT GGACGCCTGG GTGGACTCTC TGGTCAGCAG CGTCTGGTCG
    GCCGTGGACG TCTGCAGCGT GGGCCCCACG GCCTGCCCCG TGCTGCAGGG CTGTGCCCAG
    ACAGCCTGGA GCTCCCTCAG CCCCGACCCC AAGTCCGAGC TGGGCCCCGT CAAACCCGAC
    GGCCGCCTGA GGTAG

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

    RefSeq XP_030140265.1
    CDS336..3050
    Translation

    Target ORF information:

    RefSeq Version XM_030284405.1
    Organism Taeniopygia guttata(zebra finch)
    Definition Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030284405.1

    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
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGGATGGCTA TTTTTCCCAC
    CGACCGAAAG AGAAAATGCG AACAGACAGC AATAATGAAA ATTCAGTTCC CAAGGACTTT
    GAAACTATTG ATAACAGTAA CTTTGCTCCC AGGACTCAGA GACAAAAACA CCAGTCTGAG
    CTGGTGAAAA AACCCCTTAG CAAACAAAAG GAGCACTTGA GAAAGAAACT GGAAGAGGAA
    AAGATGAAGG AGAACTTGCT GCTGGGGAAG AACTCCAACG AGGTGGTGCA GTTCAGCGAT
    CACCTGGGAA AAAACAGCAG CAACAGCAAC AACCTGAAGG AGATTGACAG GTTTCCCACA
    CAGCATCTTT TACAAAAAAT TGAGAACAGC TCCCCTGAAC TGAAATACGA CCAACCACCC
    AAGTGTGAGG TGACGGGCAA GGAGGCGATC TCGGCCATGT CCCGCGCCAA GTCCCAGCAG
    TGTCGCCAGG AGATCGCGGA CGTTTACTGC CAGCACAAGC TTGGGAAGCT GATGCCGGAG
    CAGGTGACAC GCTTCTGTGC CCTGGAGGGA AAAGCCAACA ACAATGTTCA GTGGGATGAG
    GACTCCGTAG AGTTCATGCC AGCCAACCCA GTCAGGATCG CATTTGTCTT GGTTGTTCAT
    GGCAGAGCTT CCCGGCAGCT CCAGCGCATG TTTAAGGCTA TTTACCATAA AGACCATTTT
    TATTACATTC ATGTTGACAA GCGATCCAAT TACTTGCACC GGCAAGTGCT GCAGTTTGCC
    AGCCAGTACC CAAATGTGAG AGTCACCTCC TGGAGAATGG CCACTATCTG GGGAGGAGCA
    AGTCTTCTGA CCACCTACCT GCAGACCATG AAGGACTTAA TGGAGATGAG TGACTGGCCC
    TGGGATTTCT TCATTAACCT CAGTGCTGCC GACTACCCAA TCAGGACAAA CGATCAGCTC
    GTGGCATTCC TGTCCAGATA CCGTGACATG AACTTCTTGA AATCACATGG GAGGGACAAT
    GCAAGATTTA TCAGGAAACA GGGGCTGGAT CGGCTCTTCC TGGAGTGTGA CACGCACATG
    TGGCGCCTGG GGGACCGCAA GATCCCAGAA GGAATCACCG TCGACGGAGG GTCGGACTGG
    TTCCTCCTGA ACAGGAAGTT TGTGGAATAT GTCACTTTTT CCAATGATGA TCTGGTAACA
    AAGATGAAGA GGTTTTACTC TTACACACTG CTTCCTGCCG AGTCCTTCTT TCACACCGTG
    CTGGAGAACA GCCCGTTCTG TGACTCCATG GTGGACAACA ACCTGCGCAT CACCAACTGG
    AACAGGAAGC TGGGCTGCAA GTGTCAGTAC AAGCACATTG TGGACTGGTG TGGCTGCTCA
    CCCAATGACT TCAAACCAGC TGACTTCCAC CGGTTCCAGC AGACTGCCAG GCCAACTTTC
    TTCGCCCGCA AGTTTGAGGC CGTGGTGAAC CAGGAGATCA TTGGCCAGCT GGACTATTAC
    CTGTACGGGA ATTACCCGTC GGGCACGCCG GGGCTGCGCT CCTACTGGGA GAACGTGTAC
    GAGGAGCCCG ACGGGCTGGG CGCCCTCAGC GACGTGGCCC TCACCATGTT CCACTCCTTC
    TCCCGCCTGG GCCTGCGGCG GGCCGAGAGC TCGTTCCACA CGGCTGGGGA CAGCAGCTGC
    AGATACTACC CCATGGGCCA TCCAGTTTCC ATCCACCTTT ACTTCCTTGC TGACCGTTTC
    CAAGGCTTCC TGATCAGGCA CCACGCAACC AATCTGGCTG TCAGCAAACT GGAAACTTTG
    GAAACGTGGG TGATGCCCAA GAAAGTCTTC AAGATTGCAA GTCCACCGAG TGATTTTGGG
    AGGTTGCAGT TCTCAGAGAT TGGCACCGAG TGGGATGCCA AGGAAAGGCT TTTCCGGAAT
    TTTGGAGGAC TCCTTGGGCC AACAGACGAG CCAGTTGGGA TGCAGAAGTG GGGGAAAGGC
    CCCAACGTCA CCGTGACTGT CATTTGGGTG GATCCCATTA ATGTAATTGC AGCAACATAT
    GATATTCTTA TTGAATCCAG TGCCGAGTTT ACTCACTACA AACCACCTCT GAATTTGCCC
    CTGCGACCTG GTGTCTGGAC AATAAAAATT CTGCACCACT GGGTACAGGT AGCTGAAACC
    AAATTCCTCA TTACTCCTCT CACCTTCTCA AATCAGCAGC CTATCAAACA AGAGGAAGCC
    ATCAAGCTCC ACAGCGGGCC TCCAAAGAAC GCCTACATGG AGCAGAGCTT CCAGGGCCTG
    AACCCGGTGC TGAACATCCC GGTCAGCGCC GCCCGCGCCG ACCAGGCCAA GCGCAACGCG
    GGGCTCGTGG GCGCCCGCCT GGACGCCTGG GTGGACTCTC TGGTCAGCAG CGTCTGGTCG
    GCCGTGGACG TCTGCAGCGT GGGCCCCACG GCCTGCCCCG TGCTGCAGGG CTGTGCCCAG
    ACAGCCTGGA GCTCCCTCAG CCCCGACCCC AAGTCCGAGC TGGGCCCCGT CAAACCCGAC
    GGCCGCCTGA GGTAG

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

    CloneID OTd29055
    Clone ID Related Accession (Same CDS sequence) XM_030284406.1
    Accession Version XM_030284406.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2712bp)
    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 1565193600000
    Organism Taeniopygia guttata(zebra finch)
    Product xylosyltransferase 1 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_044226.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Taeniopygia guttata Annotation Release 104 Annotation Version :: 104 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGGATGGCTA TTTTTCCCAC
    CGACCGAAAG AGAAAATGCG AACAGACAGC AATAATGAAA ATTCAGTTCC CAAGGACTTT
    GAAACTATTG ATAACAGTAA CTTTGCTCCC AGGACTCAGA GACAAAAACA CCAGTCTGAG
    CTGGTGAAAA AACCCCTTAG CAAACAAAAG GAGCACTTGA GAAAGAAACT GGAAGAGGAA
    AAGATGAAGG AGAACTTGCT GCTGGGGAAG AACTCCAACG AGGTGGTGCA GTTCAGCGAT
    CACCTGGGAA AAAACAGCAG CAACAGCAAC AACCTGAAGG AGATTGACAG GTTTCCCACA
    CAGCATCTTT TACAAAAAAT TGAGAACAGC TCCCCTGAAC TGAAATACGA CCAACCACCC
    AAGTGTGAGG TGACGGGCAA GGAGGCGATC TCGGCCATGT CCCGCGCCAA GTCCCAGCAG
    TGTCGCCAGG AGATCGCGGA CGTTTACTGC CAGCACAAGC TTGGGAAGCT GATGCCGGAG
    CAGGTGACAC GCTTCTGTGC CCTGGAGGGA AAAGCCAACA ACAATGTTCA GTGGGATGAG
    GACTCCGTAG AGTTCATGCC AGCCAACCCA GTCAGGATCG CATTTGTCTT GGTTGTTCAT
    GGCAGAGCTT CCCGGCAGCT CCAGCGCATG TTTAAGGCTA TTTACCATAA AGACCATTTT
    TATTACATTC ATGTTGACAA GCGATCCAAT TACTTGCACC GGCAAGTGCT GCAGTTTGCC
    AGCCAGTACC CAAATGTGAG AGTCACCTCC TGGAGAATGG CCACTATCTG GGGAGGAGCA
    AGTCTTCTGA CCACCTACCT GCAGACCATG AAGGACTTAA TGGAGATGAG TGACTGGCCC
    TGGGATTTCT TCATTAACCT CAGTGCTGCC GACTACCCAA TCAGGACAAA CGATCAGCTC
    GTGGCATTCC TGTCCAGATA CCGTGACATG AACTTCTTGA AATCACATGG GAGGGACAAT
    GCAAGATTTA TCAGGAAACA GGGGCTGGAT CGGCTCTTCC TGGAGTGTGA CACGCACATG
    TGGCGCCTGG GGGACCGCAA GATCCCAGAA GGAATCACCG TCGACGGAGG GTCGGACTGG
    TTCCTCCTGA ACAGGAAGTT TGTGGAATAT GTCACTTTTT CCAATGATGA TCTGGTAACA
    AAGATGAAGA GGTTTTACTC TTACACACTG CTTCCTGCCG AGTCCTTCTT TCACACCGTG
    CTGGAGAACA GCCCGTTCTG TGACTCCATG GTGGACAACA ACCTGCGCAT CACCAACTGG
    AACAGGAAGC TGGGCTGCAA GTGTCAGTAC AAGCACATTG TGGACTGGTG TGGCTGCTCA
    CCCAATGACT TCAAACCAGC TGACTTCCAC CGGTTCCAGA CTGCCAGGCC AACTTTCTTC
    GCCCGCAAGT TTGAGGCCGT GGTGAACCAG GAGATCATTG GCCAGCTGGA CTATTACCTG
    TACGGGAATT ACCCGTCGGG CACGCCGGGG CTGCGCTCCT ACTGGGAGAA CGTGTACGAG
    GAGCCCGACG GGCTGGGCGC CCTCAGCGAC GTGGCCCTCA CCATGTTCCA CTCCTTCTCC
    CGCCTGGGCC TGCGGCGGGC CGAGAGCTCG TTCCACACGG CTGGGGACAG CAGCTGCAGA
    TACTACCCCA TGGGCCATCC AGTTTCCATC CACCTTTACT TCCTTGCTGA CCGTTTCCAA
    GGCTTCCTGA TCAGGCACCA CGCAACCAAT CTGGCTGTCA GCAAACTGGA AACTTTGGAA
    ACGTGGGTGA TGCCCAAGAA AGTCTTCAAG ATTGCAAGTC CACCGAGTGA TTTTGGGAGG
    TTGCAGTTCT CAGAGATTGG CACCGAGTGG GATGCCAAGG AAAGGCTTTT CCGGAATTTT
    GGAGGACTCC TTGGGCCAAC AGACGAGCCA GTTGGGATGC AGAAGTGGGG GAAAGGCCCC
    AACGTCACCG TGACTGTCAT TTGGGTGGAT CCCATTAATG TAATTGCAGC AACATATGAT
    ATTCTTATTG AATCCAGTGC CGAGTTTACT CACTACAAAC CACCTCTGAA TTTGCCCCTG
    CGACCTGGTG TCTGGACAAT AAAAATTCTG CACCACTGGG TACAGGTAGC TGAAACCAAA
    TTCCTCATTA CTCCTCTCAC CTTCTCAAAT CAGCAGCCTA TCAAACAAGA GGAAGCCATC
    AAGCTCCACA GCGGGCCTCC AAAGAACGCC TACATGGAGC AGAGCTTCCA GGGCCTGAAC
    CCGGTGCTGA ACATCCCGGT CAGCGCCGCC CGCGCCGACC AGGCCAAGCG CAACGCGGGG
    CTCGTGGGCG CCCGCCTGGA CGCCTGGGTG GACTCTCTGG TCAGCAGCGT CTGGTCGGCC
    GTGGACGTCT GCAGCGTGGG CCCCACGGCC TGCCCCGTGC TGCAGGGCTG TGCCCAGACA
    GCCTGGAGCT CCCTCAGCCC CGACCCCAAG TCCGAGCTGG GCCCCGTCAA ACCCGACGGC
    CGCCTGAGGT AG

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

    RefSeq XP_030140266.1
    CDS338..3049
    Translation

    Target ORF information:

    RefSeq Version XM_030284406.1
    Organism Taeniopygia guttata(zebra finch)
    Definition Taeniopygia guttata xylosyltransferase 1 (XYLT1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030284406.1

    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
    ATGGTGGCGG CTCCGTGCGC CCGGCGGCTG GCGCGGCGCT CCCGCTCGGC GCTGGTGGCG 
    GCGCTCACCG TGCTGCTCCT GCAGACCCTC CTCGTCTGGA ATTTCAGCTC CCTCGACGCC
    GGCGAGGAGC AGCGCGGCGG CCGCGAGAAG CGAGACCGCG GCGGAGAGCA GCGGGGGCAG
    CCGCAGCGGC GCGGACCCGC CGCCCCGCAC GGCAAGGCGA TGGATGGCTA TTTTTCCCAC
    CGACCGAAAG AGAAAATGCG AACAGACAGC AATAATGAAA ATTCAGTTCC CAAGGACTTT
    GAAACTATTG ATAACAGTAA CTTTGCTCCC AGGACTCAGA GACAAAAACA CCAGTCTGAG
    CTGGTGAAAA AACCCCTTAG CAAACAAAAG GAGCACTTGA GAAAGAAACT GGAAGAGGAA
    AAGATGAAGG AGAACTTGCT GCTGGGGAAG AACTCCAACG AGGTGGTGCA GTTCAGCGAT
    CACCTGGGAA AAAACAGCAG CAACAGCAAC AACCTGAAGG AGATTGACAG GTTTCCCACA
    CAGCATCTTT TACAAAAAAT TGAGAACAGC TCCCCTGAAC TGAAATACGA CCAACCACCC
    AAGTGTGAGG TGACGGGCAA GGAGGCGATC TCGGCCATGT CCCGCGCCAA GTCCCAGCAG
    TGTCGCCAGG AGATCGCGGA CGTTTACTGC CAGCACAAGC TTGGGAAGCT GATGCCGGAG
    CAGGTGACAC GCTTCTGTGC CCTGGAGGGA AAAGCCAACA ACAATGTTCA GTGGGATGAG
    GACTCCGTAG AGTTCATGCC AGCCAACCCA GTCAGGATCG CATTTGTCTT GGTTGTTCAT
    GGCAGAGCTT CCCGGCAGCT CCAGCGCATG TTTAAGGCTA TTTACCATAA AGACCATTTT
    TATTACATTC ATGTTGACAA GCGATCCAAT TACTTGCACC GGCAAGTGCT GCAGTTTGCC
    AGCCAGTACC CAAATGTGAG AGTCACCTCC TGGAGAATGG CCACTATCTG GGGAGGAGCA
    AGTCTTCTGA CCACCTACCT GCAGACCATG AAGGACTTAA TGGAGATGAG TGACTGGCCC
    TGGGATTTCT TCATTAACCT CAGTGCTGCC GACTACCCAA TCAGGACAAA CGATCAGCTC
    GTGGCATTCC TGTCCAGATA CCGTGACATG AACTTCTTGA AATCACATGG GAGGGACAAT
    GCAAGATTTA TCAGGAAACA GGGGCTGGAT CGGCTCTTCC TGGAGTGTGA CACGCACATG
    TGGCGCCTGG GGGACCGCAA GATCCCAGAA GGAATCACCG TCGACGGAGG GTCGGACTGG
    TTCCTCCTGA ACAGGAAGTT TGTGGAATAT GTCACTTTTT CCAATGATGA TCTGGTAACA
    AAGATGAAGA GGTTTTACTC TTACACACTG CTTCCTGCCG AGTCCTTCTT TCACACCGTG
    CTGGAGAACA GCCCGTTCTG TGACTCCATG GTGGACAACA ACCTGCGCAT CACCAACTGG
    AACAGGAAGC TGGGCTGCAA GTGTCAGTAC AAGCACATTG TGGACTGGTG TGGCTGCTCA
    CCCAATGACT TCAAACCAGC TGACTTCCAC CGGTTCCAGA CTGCCAGGCC AACTTTCTTC
    GCCCGCAAGT TTGAGGCCGT GGTGAACCAG GAGATCATTG GCCAGCTGGA CTATTACCTG
    TACGGGAATT ACCCGTCGGG CACGCCGGGG CTGCGCTCCT ACTGGGAGAA CGTGTACGAG
    GAGCCCGACG GGCTGGGCGC CCTCAGCGAC GTGGCCCTCA CCATGTTCCA CTCCTTCTCC
    CGCCTGGGCC TGCGGCGGGC CGAGAGCTCG TTCCACACGG CTGGGGACAG CAGCTGCAGA
    TACTACCCCA TGGGCCATCC AGTTTCCATC CACCTTTACT TCCTTGCTGA CCGTTTCCAA
    GGCTTCCTGA TCAGGCACCA CGCAACCAAT CTGGCTGTCA GCAAACTGGA AACTTTGGAA
    ACGTGGGTGA TGCCCAAGAA AGTCTTCAAG ATTGCAAGTC CACCGAGTGA TTTTGGGAGG
    TTGCAGTTCT CAGAGATTGG CACCGAGTGG GATGCCAAGG AAAGGCTTTT CCGGAATTTT
    GGAGGACTCC TTGGGCCAAC AGACGAGCCA GTTGGGATGC AGAAGTGGGG GAAAGGCCCC
    AACGTCACCG TGACTGTCAT TTGGGTGGAT CCCATTAATG TAATTGCAGC AACATATGAT
    ATTCTTATTG AATCCAGTGC CGAGTTTACT CACTACAAAC CACCTCTGAA TTTGCCCCTG
    CGACCTGGTG TCTGGACAAT AAAAATTCTG CACCACTGGG TACAGGTAGC TGAAACCAAA
    TTCCTCATTA CTCCTCTCAC CTTCTCAAAT CAGCAGCCTA TCAAACAAGA GGAAGCCATC
    AAGCTCCACA GCGGGCCTCC AAAGAACGCC TACATGGAGC AGAGCTTCCA GGGCCTGAAC
    CCGGTGCTGA ACATCCCGGT CAGCGCCGCC CGCGCCGACC AGGCCAAGCG CAACGCGGGG
    CTCGTGGGCG CCCGCCTGGA CGCCTGGGTG GACTCTCTGG TCAGCAGCGT CTGGTCGGCC
    GTGGACGTCT GCAGCGTGGG CCCCACGGCC TGCCCCGTGC TGCAGGGCTG TGCCCAGACA
    GCCTGGAGCT CCCTCAGCCC CGACCCCAAG TCCGAGCTGG GCCCCGTCAA ACCCGACGGC
    CGCCTGAGGT AG

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