DUOX1 cDNA ORF clone, Eptesicus fuscus(big brown bat)

The following DUOX1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the DUOX1 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
OEp07349 XM_008143241.1
Latest version!
Eptesicus fuscus dual oxidase 1 (DUOX1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
OEp32413 XM_028147850.1
Latest version!
Eptesicus fuscus dual oxidase 1 (DUOX1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00

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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 OEp07349
    Clone ID Related Accession (Same CDS sequence) XM_008143241.1
    Accession Version XM_008143241.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4203bp)
    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 2014-05-28
    Organism Eptesicus fuscus(big brown bat)
    Product dual oxidase 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_007370669.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Eptesicus fuscus Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.0 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
    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
    ATGGGCTTCT GCCTGGCTCT GGCATGGACA CTCCTGGTTG GGCCATGGAT ACCCACTGGA 
    GCTCAGAACC CCATTTCCTG GGAGGTGCAG CGATTTGATG GATGGTACAA CAACCTCATA
    GAGCACAGAT GGGGCAGCAA AGGCTATCGG CTGCAGCGCC TGGTCCCAGC CACCTATGCA
    GATGGTGTGT ACCAGCCCTT GGGAGAACCC TACCTGCCTA ATCCCCGCGC CGTCAGCAAC
    ACTGCCACGA GGGGCCCTGC AGGGCAGGCC TCCCTGCAGA ACCGCACAGT GCTGGGGGTC
    TTCTTCGGCT ACCACGTGCT CTCGGACCTG GTGAGCACAG AGAGACCTGG CTGCCCCGCC
    GAGTTCCTCA ACATCCGGGT CCCGCCCGGA GACCCCGTGT TCGACCCCGA CCAGCGCGGG
    GACGTGGTGC TGCCCTTCCA GAGGAGCCGC TGGGACCCCA AGACCGGACA GAGCCCCAGC
    AACCCCCGGG ACCTGCCTTG GAAACCAGAG CTGATGCCTG ACATTAGGAC CTTGGGGTCT
    CAGTCACCAC TCCCCTGCTC CTTGCATTTC AGAAATGCCA GCTGCCACTT CCAGAGGGTC
    ATCAATCGGA ATTCAAGCGT CTCCAGAGCT CTCCGGGTCT GCAACAGCTA TTGGAGCCGA
    GAGCACCCAA ATCTACAAAG AGCTGAAGAT GTAGACGCGC TGCTACTGGG CATGGCCTCC
    CAGATTGCTG AACAAGAAGA CCACGTGGTG GTTGAGGATG TGCGAGATTT CTGGCCCGGG
    CCACTGAAGT ACTCCCGCAC AGACTACTTG GCCAGCAGCC TGCAGCGGGG CCGGGACCTG
    GGCCTGCCCT CTTACACCAA GGCCAGGGAA GCACTGGGCC TGCCTCCCAT TACCAGATGG
    CAGGACATCA ACCCTGCACT CTCCCGGAGT CATGGCACCG TGCTGGAAGC CACCGCTGCT
    CTGTACAACC AGGACCTGTC CCTGCTGGAG TTGCTCCCCG GGGGGCTCCT GGAGAGCCAC
    GGGAACCCCG GGCCCCTCTT CAGCACCATA GTCCTCGACC AGTTTGTGCG CCTGCGGGAT
    GGTGACCGTT ACTGGTTTGA GAACACCAGG AATGGACTCT TCTCTGAGGA AGAGATCGCA
    GAGATCAGAA ACACATCCCT CTGGGATGTT CTAGTGGCTG TCACCAACGT GGACCCCAGT
    GCCCTGCAAC CCAATGTCTT TTTCTGGCAT GTGGGAGACC CCTGCCCACA GCCAGGACAA
    CTCAGCACGG AGGGCCTGCC AGCCTGTGTT CCCCCTGTCA TGCGGGACTA CTTCAAGGGC
    AGTGGATTTG GCTTCGGGAT CACCATTGGG ACCCTCTGCT GCTTCCCCCT GGTGAGCCTG
    CTTGTTGCCT GGATTGTTGC CCGGGTCCGG AGGAGAAATT TCAAGAAGCT CCAGGGCCAG
    GACTGCAAAA GCATCAAGTC TGAGAAGTTC GTGGAGGGCG TGGAAGCATT GGAATGGCAG
    GGCCGCAAGG AGCCCTGCCG GCCTGTGCTT GTGCACCTAC AACCCGGGCA GGTCCGTGTC
    CTGGACTGCA GGCTCTCTGT GCTCCGCATC ATCCAGCTGC GGCCCCTGCA GAAGGTCAAC
    CTCATCCTTT CCAACAACCG TGGGCGCCGT ACCCTGCTGC TCAAGATCCC CAAGGAGTAT
    GACTTGGTGC TGCTGTTTAA CCTGGAGGAA GAGCGGCAGG CACTGGTGGA AAACCTTCGG
    GTGGCTCTGA AGGAAAGTGG GCTGAGCTTC CAGGAGTGGG AGATGCGGGA GCAGGAGCTG
    ATGAGGGCAG CCGTGACGCG GGAGCAGCGG AGCCACCTCC TGGAGACCTT CTTCAGGCAC
    CTTTTCTCCC AGGTGCTGGA CATCGACCAG GCAGACGCGG GGACCCTGCC CCTGGACTCA
    TCTCAGAAGG TGCAGGAGGC CCTGACATGT GAGCTCAGCA GGGTCGAGTT TGCCGAGTCC
    CTGGGCCTCA AGCCCCAGGA CATGTTTGTG GAGTCCATGT TCTCTTTGGC CGACAAAGAT
    GGCAATGGCT ACCTGTCCTT CCGGGAGTTC CTGGACATCC TGGTGGTCTT CATGAAAGGA
    TCCCCTGAGG AGAAGTCTCG CCTTATGTTC CGCATGTATG ACTTTGATGA GAATGGTCTC
    ATTTCCAAGG ACGAGTTCAT CAGGATGCTG AGGTCCTTCA TCGAGATCTC CAACAACTGC
    CTGTCCAAGG CCCAGCTGGC GGAGGTGGTG GAGTCCATGT TCCGGGAGTC GGGCTTCCAG
    GACAAGGAGG AGCTGACATG GGAGGACTTC CACTTCATGC TGCGGGACCA TGACAGCGAG
    CTCCGCTTCA CGCAGCTCTG CGTCAGAGGA GTGGAGGTGC CTGAAGTCAT CAAGGATCTC
    TGCCGGAGAG CCTCCTACAT CAGCCAGGAT AAGCTCTGTC CCTCTCCCAG AGTGAGTGCT
    CGCAGTTCCC GCAGTGATGT CGAGGTGGAG CGGACACCGC AGAGACTGCC ATGCCCCATG
    GACACCGATC CTCCCCAGGA GGTTCGACGG AGGTTTGGCA AGAAGGTGAC GTTGTTTCAG
    CCCCTGCTGG TCACCGAGGC TCGCCGGCAG AAGTTTCAGC GAAGCCGTCG CCACCAGACG
    GTGCAGCAGT TCAAGCGCTT CATCGAGAAC TACCGGCGCC ACATCGGCTG TGTGGCTGTG
    TTCTACGCCG TCGCCGCGGG CCTCTTCCTG GAGCGGGCCT ACTACTACGC CTTTGCCTCG
    CCCCCCTCGG GCATTGCACA GACCACCTTT GTGGGCATCA TCCTGTCGCG GGGCACGGCC
    GCCAGCATCT CCTTCATGTT CTCCTACATC CTGCTCACCA TGTGCCGCAA CCTCATCACC
    TTCCTGCGGG AGACCTTCCT CAACCGCTAC GTGCCCTTCG ACGCCGCCGT GGACTTCCAT
    CGCCTCATCG CCTCCACTGC CATCGTCCTC ACAGTTTTAC ACAGTGCAGG CCACGTGGTG
    AACGTGTACC TGTTCTCCAT CAGCCCACTC AGCATCCTCT CCTGCCTCTT CCCTGGCCTC
    TTCCATGATG ATGGGTCCGA GTTCCCCCAG AAGTATTACT GGTGGTTCTT CCAGACCGTG
    CCAGGCCTCA CGGGGGTTAT AATGCTCCTG GTCCTGGCCA TCATGTATGT CTTCGCCTCC
    CACCACTTCC GGCGCCGCAG CTTCCGGGGC TTCTGGCTGA CCCACCACCT CTACATCCTG
    CTCTACATCC TGCTCATCAT CCACGGCAGC TTCGCTCTGA TCCAGCTGCC CCGTTTCCAC
    ATCTTCTTCC TGGTCCCGGC ACTAATCTAT GGGGGGGACA AGCTGGTGAG CCTGAGCCGG
    AAGAAGGTGG AGATCAGCGT GGTGAAGGCC GAGCTGCTGC CTTCAGGAGT GACCCACCTG
    CAGTTCCAGC GGCCCCAAGG CTTTGAGTAC AAGTCAGGAC AGTGGGTGCG GATCGCCTGC
    CTGGCTCTGG GGACCACCGA GTACCACCCC TTCACACTGA CTTCTGCGCC CCATGAGGAC
    ACGCTCAGCC TGCACATCCG GGCGGCAGGA CCCTGGACCA CTCGCCTCAG GGAGATCTAC
    TCACCCCTGA CCAACAGCTC TGCCAGATAC CCGAAGTTGT ACCTCGATGG ACCATTTGGA
    GAGGGCCACC AGGAGTGGCA TAAGTTTGAG GTGTCAGTGC TGGTAGGAGG GGGCATTGGG
    GTCACCCCCT TTGCCTCTAT CCTCAAAGAC CTGGTCTTCA AGTCATCAGT CAGCTACCAA
    GTGTTCTGTA AGAAGATCTA CTTCATCTGG GTGACACGGA CCCAGCGGCA GTTCGAGTGG
    CTGGCTGACA TCATCCGGGA GGTGGAGGAG AATGACCACC AGGACCTGGT GTCCGTGCAC
    ATCTACATCA CCCAGCTGGC TGAGAAGTTC GACCTCAGGA CCACCATGCT GTACATCTGT
    GAGCGCCACT TCCAGAAGGT GCTGAACCGG AGTCTGTTCA CGGGCCTGCG CTCTGTCACC
    CACTTTGGTC GCCCCCCCTT TGAGGCCTTC TTCAACTCCC TGCAGGAGGT TCACCCACAG
    GTCCGGAAGA TCGGGGTGTT TAGCTGTGGC CCCCCTGGCA TGACCAAGAA TGTGGAAAAA
    GCCTGTCAGC TCATCAACAG GCAGGACCGG ACTCATTTCT CCCACCATTA CGAGAACTTC
    TAG

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

    RefSeq XP_008141463.1
    CDS1..4203
    Translation

    Target ORF information:

    RefSeq Version XM_008143241.1
    Organism Eptesicus fuscus(big brown bat)
    Definition Eptesicus fuscus dual oxidase 1 (DUOX1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008143241.1

    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
    ATGGGCTTCT GCCTGGCTCT GGCATGGACA CTCCTGGTTG GGCCATGGAT ACCCACTGGA 
    GCTCAGAACC CCATTTCCTG GGAGGTGCAG CGATTTGATG GATGGTACAA CAACCTCATA
    GAGCACAGAT GGGGCAGCAA AGGCTATCGG CTGCAGCGCC TGGTCCCAGC CACCTATGCA
    GATGGTGTGT ACCAGCCCTT GGGAGAACCC TACCTGCCTA ATCCCCGCGC CGTCAGCAAC
    ACTGCCACGA GGGGCCCTGC AGGGCAGGCC TCCCTGCAGA ACCGCACAGT GCTGGGGGTC
    TTCTTCGGCT ACCACGTGCT CTCGGACCTG GTGAGCACAG AGAGACCTGG CTGCCCCGCC
    GAGTTCCTCA ACATCCGGGT CCCGCCCGGA GACCCCGTGT TCGACCCCGA CCAGCGCGGG
    GACGTGGTGC TGCCCTTCCA GAGGAGCCGC TGGGACCCCA AGACCGGACA GAGCCCCAGC
    AACCCCCGGG ACCTGCCTTG GAAACCAGAG CTGATGCCTG ACATTAGGAC CTTGGGGTCT
    CAGTCACCAC TCCCCTGCTC CTTGCATTTC AGAAATGCCA GCTGCCACTT CCAGAGGGTC
    ATCAATCGGA ATTCAAGCGT CTCCAGAGCT CTCCGGGTCT GCAACAGCTA TTGGAGCCGA
    GAGCACCCAA ATCTACAAAG AGCTGAAGAT GTAGACGCGC TGCTACTGGG CATGGCCTCC
    CAGATTGCTG AACAAGAAGA CCACGTGGTG GTTGAGGATG TGCGAGATTT CTGGCCCGGG
    CCACTGAAGT ACTCCCGCAC AGACTACTTG GCCAGCAGCC TGCAGCGGGG CCGGGACCTG
    GGCCTGCCCT CTTACACCAA GGCCAGGGAA GCACTGGGCC TGCCTCCCAT TACCAGATGG
    CAGGACATCA ACCCTGCACT CTCCCGGAGT CATGGCACCG TGCTGGAAGC CACCGCTGCT
    CTGTACAACC AGGACCTGTC CCTGCTGGAG TTGCTCCCCG GGGGGCTCCT GGAGAGCCAC
    GGGAACCCCG GGCCCCTCTT CAGCACCATA GTCCTCGACC AGTTTGTGCG CCTGCGGGAT
    GGTGACCGTT ACTGGTTTGA GAACACCAGG AATGGACTCT TCTCTGAGGA AGAGATCGCA
    GAGATCAGAA ACACATCCCT CTGGGATGTT CTAGTGGCTG TCACCAACGT GGACCCCAGT
    GCCCTGCAAC CCAATGTCTT TTTCTGGCAT GTGGGAGACC CCTGCCCACA GCCAGGACAA
    CTCAGCACGG AGGGCCTGCC AGCCTGTGTT CCCCCTGTCA TGCGGGACTA CTTCAAGGGC
    AGTGGATTTG GCTTCGGGAT CACCATTGGG ACCCTCTGCT GCTTCCCCCT GGTGAGCCTG
    CTTGTTGCCT GGATTGTTGC CCGGGTCCGG AGGAGAAATT TCAAGAAGCT CCAGGGCCAG
    GACTGCAAAA GCATCAAGTC TGAGAAGTTC GTGGAGGGCG TGGAAGCATT GGAATGGCAG
    GGCCGCAAGG AGCCCTGCCG GCCTGTGCTT GTGCACCTAC AACCCGGGCA GGTCCGTGTC
    CTGGACTGCA GGCTCTCTGT GCTCCGCATC ATCCAGCTGC GGCCCCTGCA GAAGGTCAAC
    CTCATCCTTT CCAACAACCG TGGGCGCCGT ACCCTGCTGC TCAAGATCCC CAAGGAGTAT
    GACTTGGTGC TGCTGTTTAA CCTGGAGGAA GAGCGGCAGG CACTGGTGGA AAACCTTCGG
    GTGGCTCTGA AGGAAAGTGG GCTGAGCTTC CAGGAGTGGG AGATGCGGGA GCAGGAGCTG
    ATGAGGGCAG CCGTGACGCG GGAGCAGCGG AGCCACCTCC TGGAGACCTT CTTCAGGCAC
    CTTTTCTCCC AGGTGCTGGA CATCGACCAG GCAGACGCGG GGACCCTGCC CCTGGACTCA
    TCTCAGAAGG TGCAGGAGGC CCTGACATGT GAGCTCAGCA GGGTCGAGTT TGCCGAGTCC
    CTGGGCCTCA AGCCCCAGGA CATGTTTGTG GAGTCCATGT TCTCTTTGGC CGACAAAGAT
    GGCAATGGCT ACCTGTCCTT CCGGGAGTTC CTGGACATCC TGGTGGTCTT CATGAAAGGA
    TCCCCTGAGG AGAAGTCTCG CCTTATGTTC CGCATGTATG ACTTTGATGA GAATGGTCTC
    ATTTCCAAGG ACGAGTTCAT CAGGATGCTG AGGTCCTTCA TCGAGATCTC CAACAACTGC
    CTGTCCAAGG CCCAGCTGGC GGAGGTGGTG GAGTCCATGT TCCGGGAGTC GGGCTTCCAG
    GACAAGGAGG AGCTGACATG GGAGGACTTC CACTTCATGC TGCGGGACCA TGACAGCGAG
    CTCCGCTTCA CGCAGCTCTG CGTCAGAGGA GTGGAGGTGC CTGAAGTCAT CAAGGATCTC
    TGCCGGAGAG CCTCCTACAT CAGCCAGGAT AAGCTCTGTC CCTCTCCCAG AGTGAGTGCT
    CGCAGTTCCC GCAGTGATGT CGAGGTGGAG CGGACACCGC AGAGACTGCC ATGCCCCATG
    GACACCGATC CTCCCCAGGA GGTTCGACGG AGGTTTGGCA AGAAGGTGAC GTTGTTTCAG
    CCCCTGCTGG TCACCGAGGC TCGCCGGCAG AAGTTTCAGC GAAGCCGTCG CCACCAGACG
    GTGCAGCAGT TCAAGCGCTT CATCGAGAAC TACCGGCGCC ACATCGGCTG TGTGGCTGTG
    TTCTACGCCG TCGCCGCGGG CCTCTTCCTG GAGCGGGCCT ACTACTACGC CTTTGCCTCG
    CCCCCCTCGG GCATTGCACA GACCACCTTT GTGGGCATCA TCCTGTCGCG GGGCACGGCC
    GCCAGCATCT CCTTCATGTT CTCCTACATC CTGCTCACCA TGTGCCGCAA CCTCATCACC
    TTCCTGCGGG AGACCTTCCT CAACCGCTAC GTGCCCTTCG ACGCCGCCGT GGACTTCCAT
    CGCCTCATCG CCTCCACTGC CATCGTCCTC ACAGTTTTAC ACAGTGCAGG CCACGTGGTG
    AACGTGTACC TGTTCTCCAT CAGCCCACTC AGCATCCTCT CCTGCCTCTT CCCTGGCCTC
    TTCCATGATG ATGGGTCCGA GTTCCCCCAG AAGTATTACT GGTGGTTCTT CCAGACCGTG
    CCAGGCCTCA CGGGGGTTAT AATGCTCCTG GTCCTGGCCA TCATGTATGT CTTCGCCTCC
    CACCACTTCC GGCGCCGCAG CTTCCGGGGC TTCTGGCTGA CCCACCACCT CTACATCCTG
    CTCTACATCC TGCTCATCAT CCACGGCAGC TTCGCTCTGA TCCAGCTGCC CCGTTTCCAC
    ATCTTCTTCC TGGTCCCGGC ACTAATCTAT GGGGGGGACA AGCTGGTGAG CCTGAGCCGG
    AAGAAGGTGG AGATCAGCGT GGTGAAGGCC GAGCTGCTGC CTTCAGGAGT GACCCACCTG
    CAGTTCCAGC GGCCCCAAGG CTTTGAGTAC AAGTCAGGAC AGTGGGTGCG GATCGCCTGC
    CTGGCTCTGG GGACCACCGA GTACCACCCC TTCACACTGA CTTCTGCGCC CCATGAGGAC
    ACGCTCAGCC TGCACATCCG GGCGGCAGGA CCCTGGACCA CTCGCCTCAG GGAGATCTAC
    TCACCCCTGA CCAACAGCTC TGCCAGATAC CCGAAGTTGT ACCTCGATGG ACCATTTGGA
    GAGGGCCACC AGGAGTGGCA TAAGTTTGAG GTGTCAGTGC TGGTAGGAGG GGGCATTGGG
    GTCACCCCCT TTGCCTCTAT CCTCAAAGAC CTGGTCTTCA AGTCATCAGT CAGCTACCAA
    GTGTTCTGTA AGAAGATCTA CTTCATCTGG GTGACACGGA CCCAGCGGCA GTTCGAGTGG
    CTGGCTGACA TCATCCGGGA GGTGGAGGAG AATGACCACC AGGACCTGGT GTCCGTGCAC
    ATCTACATCA CCCAGCTGGC TGAGAAGTTC GACCTCAGGA CCACCATGCT GTACATCTGT
    GAGCGCCACT TCCAGAAGGT GCTGAACCGG AGTCTGTTCA CGGGCCTGCG CTCTGTCACC
    CACTTTGGTC GCCCCCCCTT TGAGGCCTTC TTCAACTCCC TGCAGGAGGT TCACCCACAG
    GTCCGGAAGA TCGGGGTGTT TAGCTGTGGC CCCCCTGGCA TGACCAAGAA TGTGGAAAAA
    GCCTGTCAGC TCATCAACAG GCAGGACCGG ACTCATTTCT CCCACCATTA CGAGAACTTC
    TAG

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

    CloneID OEp32413
    Clone ID Related Accession (Same CDS sequence) XM_028147850.1
    Accession Version XM_028147850.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4248bp)
    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 2019-02-11
    Organism Eptesicus fuscus(big brown bat)
    Product dual oxidase 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_007370669.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Eptesicus fuscus Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 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
    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
    ATGGGCTTCT GCCTGGCTCT GGCATGGACA CTCCTGGTTG GGCCATGGAT ACCCACTGGA 
    GCTCAGAACC CCATTTCCTG GGAGGTGCAG CGATTTGATG GATGGTACAA CAACCTCATA
    GAGCACAGAT GGGGCAGCAA AGGCTATCGG CTGCAGCGCC TGGTCCCAGC CACCTATGCA
    GATGGTGTGT ACCAGCCCTT GGGAGAACCC TACCTGCCTA ATCCCCGCGC CGTCAGCAAC
    ACTGCCACGA GGGGCCCTGC AGGGCAGGCC TCCCTGCAGA ACCGCACAGT GCTGGGGGTC
    TTCTTCGGCT ACCACGTGCT CTCGGACCTG GTGAGCACAG AGAGACCTGG CTGCCCCGCC
    GAGTTCCTCA ACATCCGGGT CCCGCCCGGA GACCCCGTGT TCGACCCCGA CCAGCGCGGG
    GACGTGGTGC TGCCCTTCCA GAGGAGCCGC TGGGACCCCA AGACCGGACA GAGCCCCAGC
    AACCCCCGGG ACCTGACACA TACCAATTCA GGGAAGCCAT GGCCTGGCCC CTCGCTACAG
    CCTTGGAAAC CAGAGCTGAT GCCTGACATT AGGACCTTGG GGTCTCAGTC ACCACTCCCC
    TGCTCCTTGC ATTTCAGAAA TGCCAGCTGC CACTTCCAGA GGGTCATCAA TCGGAATTCA
    AGCGTCTCCA GAGCTCTCCG GGTCTGCAAC AGCTATTGGA GCCGAGAGCA CCCAAATCTA
    CAAAGAGCTG AAGATGTAGA CGCGCTGCTA CTGGGCATGG CCTCCCAGAT TGCTGAACAA
    GAAGACCACG TGGTGGTTGA GGATGTGCGA GATTTCTGGC CCGGGCCACT GAAGTACTCC
    CGCACAGACT ACTTGGCCAG CAGCCTGCAG CGGGGCCGGG ACCTGGGCCT GCCCTCTTAC
    ACCAAGGCCA GGGAAGCACT GGGCCTGCCT CCCATTACCA GATGGCAGGA CATCAACCCT
    GCACTCTCCC GGAGTCATGG CACCGTGCTG GAAGCCACCG CTGCTCTGTA CAACCAGGAC
    CTGTCCCTGC TGGAGTTGCT CCCCGGGGGG CTCCTGGAGA GCCACGGGAA CCCCGGGCCC
    CTCTTCAGCA CCATAGTCCT CGACCAGTTT GTGCGCCTGC GGGATGGTGA CCGTTACTGG
    TTTGAGAACA CCAGGAATGG ACTCTTCTCT GAGGAAGAGA TCGCAGAGAT CAGAAACACA
    TCCCTCTGGG ATGTTCTAGT GGCTGTCACC AACGTGGACC CCAGTGCCCT GCAACCCAAT
    GTCTTTTTCT GGCATGTGGG AGACCCCTGC CCACAGCCAG GACAACTCAG CACGGAGGGC
    CTGCCAGCCT GTGTTCCCCC TGTCATGCGG GACTACTTCA AGGGCAGTGG ATTTGGCTTC
    GGGATCACCA TTGGGACCCT CTGCTGCTTC CCCCTGGTGA GCCTGCTTGT TGCCTGGATT
    GTTGCCCGGG TCCGGAGGAG AAATTTCAAG AAGCTCCAGG GCCAGGACTG CAAAAGCATC
    AAGTCTGAGA AGTTCGTGGA GGGCGTGGAA GCATTGGAAT GGCAGGGCCG CAAGGAGCCC
    TGCCGGCCTG TGCTTGTGCA CCTACAACCC GGGCAGGTCC GTGTCCTGGA CTGCAGGCTC
    TCTGTGCTCC GCATCATCCA GCTGCGGCCC CTGCAGAAGG TCAACCTCAT CCTTTCCAAC
    AACCGTGGGC GCCGTACCCT GCTGCTCAAG ATCCCCAAGG AGTATGACTT GGTGCTGCTG
    TTTAACCTGG AGGAAGAGCG GCAGGCACTG GTGGAAAACC TTCGGGTGGC TCTGAAGGAA
    AGTGGGCTGA GCTTCCAGGA GTGGGAGATG CGGGAGCAGG AGCTGATGAG GGCAGCCGTG
    ACGCGGGAGC AGCGGAGCCA CCTCCTGGAG ACCTTCTTCA GGCACCTTTT CTCCCAGGTG
    CTGGACATCG ACCAGGCAGA CGCGGGGACC CTGCCCCTGG ACTCATCTCA GAAGGTGCAG
    GAGGCCCTGA CATGTGAGCT CAGCAGGGTC GAGTTTGCCG AGTCCCTGGG CCTCAAGCCC
    CAGGACATGT TTGTGGAGTC CATGTTCTCT TTGGCCGACA AAGATGGCAA TGGCTACCTG
    TCCTTCCGGG AGTTCCTGGA CATCCTGGTG GTCTTCATGA AAGGATCCCC TGAGGAGAAG
    TCTCGCCTTA TGTTCCGCAT GTATGACTTT GATGAGAATG GTCTCATTTC CAAGGACGAG
    TTCATCAGGA TGCTGAGGTC CTTCATCGAG ATCTCCAACA ACTGCCTGTC CAAGGCCCAG
    CTGGCGGAGG TGGTGGAGTC CATGTTCCGG GAGTCGGGCT TCCAGGACAA GGAGGAGCTG
    ACATGGGAGG ACTTCCACTT CATGCTGCGG GACCATGACA GCGAGCTCCG CTTCACGCAG
    CTCTGCGTCA GAGGAGTGGA GGTGCCTGAA GTCATCAAGG ATCTCTGCCG GAGAGCCTCC
    TACATCAGCC AGGATAAGCT CTGTCCCTCT CCCAGAGTGA GTGCTCGCAG TTCCCGCAGT
    GATGTCGAGG TGGAGCGGAC ACCGCAGAGA CTGCCATGCC CCATGGACAC CGATCCTCCC
    CAGGAGGTTC GACGGAGGTT TGGCAAGAAG GTGACGTTGT TTCAGCCCCT GCTGGTCACC
    GAGGCTCGCC GGCAGAAGTT TCAGCGAAGC CGTCGCCACC AGACGGTGCA GCAGTTCAAG
    CGCTTCATCG AGAACTACCG GCGCCACATC GGCTGTGTGG CTGTGTTCTA CGCCGTCGCC
    GCGGGCCTCT TCCTGGAGCG GGCCTACTAC TACGCCTTTG CCTCGCCCCC CTCGGGCATT
    GCACAGACCA CCTTTGTGGG CATCATCCTG TCGCGGGGCA CGGCCGCCAG CATCTCCTTC
    ATGTTCTCCT ACATCCTGCT CACCATGTGC CGCAACCTCA TCACCTTCCT GCGGGAGACC
    TTCCTCAACC GCTACGTGCC CTTCGACGCC GCCGTGGACT TCCATCGCCT CATCGCCTCC
    ACTGCCATCG TCCTCACAGT TTTACACAGT GCAGGCCACG TGGTGAACGT GTACCTGTTC
    TCCATCAGCC CACTCAGCAT CCTCTCCTGC CTCTTCCCTG GCCTCTTCCA TGATGATGGG
    TCCGAGTTCC CCCAGAAGTA TTACTGGTGG TTCTTCCAGA CCGTGCCAGG CCTCACGGGG
    GTTATAATGC TCCTGGTCCT GGCCATCATG TATGTCTTCG CCTCCCACCA CTTCCGGCGC
    CGCAGCTTCC GGGGCTTCTG GCTGACCCAC CACCTCTACA TCCTGCTCTA CATCCTGCTC
    ATCATCCACG GCAGCTTCGC TCTGATCCAG CTGCCCCGTT TCCACATCTT CTTCCTGGTC
    CCGGCACTAA TCTATGGGGG GGACAAGCTG GTGAGCCTGA GCCGGAAGAA GGTGGAGATC
    AGCGTGGTGA AGGCCGAGCT GCTGCCTTCA GGAGTGACCC ACCTGCAGTT CCAGCGGCCC
    CAAGGCTTTG AGTACAAGTC AGGACAGTGG GTGCGGATCG CCTGCCTGGC TCTGGGGACC
    ACCGAGTACC ACCCCTTCAC ACTGACTTCT GCGCCCCATG AGGACACGCT CAGCCTGCAC
    ATCCGGGCGG CAGGACCCTG GACCACTCGC CTCAGGGAGA TCTACTCACC CCTGACCAAC
    AGCTCTGCCA GATACCCGAA GTTGTACCTC GATGGACCAT TTGGAGAGGG CCACCAGGAG
    TGGCATAAGT TTGAGGTGTC AGTGCTGGTA GGAGGGGGCA TTGGGGTCAC CCCCTTTGCC
    TCTATCCTCA AAGACCTGGT CTTCAAGTCA TCAGTCAGCT ACCAAGTGTT CTGTAAGAAG
    ATCTACTTCA TCTGGGTGAC ACGGACCCAG CGGCAGTTCG AGTGGCTGGC TGACATCATC
    CGGGAGGTGG AGGAGAATGA CCACCAGGAC CTGGTGTCCG TGCACATCTA CATCACCCAG
    CTGGCTGAGA AGTTCGACCT CAGGACCACC ATGCTGTACA TCTGTGAGCG CCACTTCCAG
    AAGGTGCTGA ACCGGAGTCT GTTCACGGGC CTGCGCTCTG TCACCCACTT TGGTCGCCCC
    CCCTTTGAGG CCTTCTTCAA CTCCCTGCAG GAGGTTCACC CACAGGTCCG GAAGATCGGG
    GTGTTTAGCT GTGGCCCCCC TGGCATGACC AAGAATGTGG AAAAAGCCTG TCAGCTCATC
    AACAGGCAGG ACCGGACTCA TTTCTCCCAC CATTACGAGA ACTTCTAG

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

    RefSeq XP_028003651.1
    CDS22..4269
    Translation

    Target ORF information:

    RefSeq Version XM_028147850.1
    Organism Eptesicus fuscus(big brown bat)
    Definition Eptesicus fuscus dual oxidase 1 (DUOX1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_028147850.1

    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
    ATGGGCTTCT GCCTGGCTCT GGCATGGACA CTCCTGGTTG GGCCATGGAT ACCCACTGGA 
    GCTCAGAACC CCATTTCCTG GGAGGTGCAG CGATTTGATG GATGGTACAA CAACCTCATA
    GAGCACAGAT GGGGCAGCAA AGGCTATCGG CTGCAGCGCC TGGTCCCAGC CACCTATGCA
    GATGGTGTGT ACCAGCCCTT GGGAGAACCC TACCTGCCTA ATCCCCGCGC CGTCAGCAAC
    ACTGCCACGA GGGGCCCTGC AGGGCAGGCC TCCCTGCAGA ACCGCACAGT GCTGGGGGTC
    TTCTTCGGCT ACCACGTGCT CTCGGACCTG GTGAGCACAG AGAGACCTGG CTGCCCCGCC
    GAGTTCCTCA ACATCCGGGT CCCGCCCGGA GACCCCGTGT TCGACCCCGA CCAGCGCGGG
    GACGTGGTGC TGCCCTTCCA GAGGAGCCGC TGGGACCCCA AGACCGGACA GAGCCCCAGC
    AACCCCCGGG ACCTGACACA TACCAATTCA GGGAAGCCAT GGCCTGGCCC CTCGCTACAG
    CCTTGGAAAC CAGAGCTGAT GCCTGACATT AGGACCTTGG GGTCTCAGTC ACCACTCCCC
    TGCTCCTTGC ATTTCAGAAA TGCCAGCTGC CACTTCCAGA GGGTCATCAA TCGGAATTCA
    AGCGTCTCCA GAGCTCTCCG GGTCTGCAAC AGCTATTGGA GCCGAGAGCA CCCAAATCTA
    CAAAGAGCTG AAGATGTAGA CGCGCTGCTA CTGGGCATGG CCTCCCAGAT TGCTGAACAA
    GAAGACCACG TGGTGGTTGA GGATGTGCGA GATTTCTGGC CCGGGCCACT GAAGTACTCC
    CGCACAGACT ACTTGGCCAG CAGCCTGCAG CGGGGCCGGG ACCTGGGCCT GCCCTCTTAC
    ACCAAGGCCA GGGAAGCACT GGGCCTGCCT CCCATTACCA GATGGCAGGA CATCAACCCT
    GCACTCTCCC GGAGTCATGG CACCGTGCTG GAAGCCACCG CTGCTCTGTA CAACCAGGAC
    CTGTCCCTGC TGGAGTTGCT CCCCGGGGGG CTCCTGGAGA GCCACGGGAA CCCCGGGCCC
    CTCTTCAGCA CCATAGTCCT CGACCAGTTT GTGCGCCTGC GGGATGGTGA CCGTTACTGG
    TTTGAGAACA CCAGGAATGG ACTCTTCTCT GAGGAAGAGA TCGCAGAGAT CAGAAACACA
    TCCCTCTGGG ATGTTCTAGT GGCTGTCACC AACGTGGACC CCAGTGCCCT GCAACCCAAT
    GTCTTTTTCT GGCATGTGGG AGACCCCTGC CCACAGCCAG GACAACTCAG CACGGAGGGC
    CTGCCAGCCT GTGTTCCCCC TGTCATGCGG GACTACTTCA AGGGCAGTGG ATTTGGCTTC
    GGGATCACCA TTGGGACCCT CTGCTGCTTC CCCCTGGTGA GCCTGCTTGT TGCCTGGATT
    GTTGCCCGGG TCCGGAGGAG AAATTTCAAG AAGCTCCAGG GCCAGGACTG CAAAAGCATC
    AAGTCTGAGA AGTTCGTGGA GGGCGTGGAA GCATTGGAAT GGCAGGGCCG CAAGGAGCCC
    TGCCGGCCTG TGCTTGTGCA CCTACAACCC GGGCAGGTCC GTGTCCTGGA CTGCAGGCTC
    TCTGTGCTCC GCATCATCCA GCTGCGGCCC CTGCAGAAGG TCAACCTCAT CCTTTCCAAC
    AACCGTGGGC GCCGTACCCT GCTGCTCAAG ATCCCCAAGG AGTATGACTT GGTGCTGCTG
    TTTAACCTGG AGGAAGAGCG GCAGGCACTG GTGGAAAACC TTCGGGTGGC TCTGAAGGAA
    AGTGGGCTGA GCTTCCAGGA GTGGGAGATG CGGGAGCAGG AGCTGATGAG GGCAGCCGTG
    ACGCGGGAGC AGCGGAGCCA CCTCCTGGAG ACCTTCTTCA GGCACCTTTT CTCCCAGGTG
    CTGGACATCG ACCAGGCAGA CGCGGGGACC CTGCCCCTGG ACTCATCTCA GAAGGTGCAG
    GAGGCCCTGA CATGTGAGCT CAGCAGGGTC GAGTTTGCCG AGTCCCTGGG CCTCAAGCCC
    CAGGACATGT TTGTGGAGTC CATGTTCTCT TTGGCCGACA AAGATGGCAA TGGCTACCTG
    TCCTTCCGGG AGTTCCTGGA CATCCTGGTG GTCTTCATGA AAGGATCCCC TGAGGAGAAG
    TCTCGCCTTA TGTTCCGCAT GTATGACTTT GATGAGAATG GTCTCATTTC CAAGGACGAG
    TTCATCAGGA TGCTGAGGTC CTTCATCGAG ATCTCCAACA ACTGCCTGTC CAAGGCCCAG
    CTGGCGGAGG TGGTGGAGTC CATGTTCCGG GAGTCGGGCT TCCAGGACAA GGAGGAGCTG
    ACATGGGAGG ACTTCCACTT CATGCTGCGG GACCATGACA GCGAGCTCCG CTTCACGCAG
    CTCTGCGTCA GAGGAGTGGA GGTGCCTGAA GTCATCAAGG ATCTCTGCCG GAGAGCCTCC
    TACATCAGCC AGGATAAGCT CTGTCCCTCT CCCAGAGTGA GTGCTCGCAG TTCCCGCAGT
    GATGTCGAGG TGGAGCGGAC ACCGCAGAGA CTGCCATGCC CCATGGACAC CGATCCTCCC
    CAGGAGGTTC GACGGAGGTT TGGCAAGAAG GTGACGTTGT TTCAGCCCCT GCTGGTCACC
    GAGGCTCGCC GGCAGAAGTT TCAGCGAAGC CGTCGCCACC AGACGGTGCA GCAGTTCAAG
    CGCTTCATCG AGAACTACCG GCGCCACATC GGCTGTGTGG CTGTGTTCTA CGCCGTCGCC
    GCGGGCCTCT TCCTGGAGCG GGCCTACTAC TACGCCTTTG CCTCGCCCCC CTCGGGCATT
    GCACAGACCA CCTTTGTGGG CATCATCCTG TCGCGGGGCA CGGCCGCCAG CATCTCCTTC
    ATGTTCTCCT ACATCCTGCT CACCATGTGC CGCAACCTCA TCACCTTCCT GCGGGAGACC
    TTCCTCAACC GCTACGTGCC CTTCGACGCC GCCGTGGACT TCCATCGCCT CATCGCCTCC
    ACTGCCATCG TCCTCACAGT TTTACACAGT GCAGGCCACG TGGTGAACGT GTACCTGTTC
    TCCATCAGCC CACTCAGCAT CCTCTCCTGC CTCTTCCCTG GCCTCTTCCA TGATGATGGG
    TCCGAGTTCC CCCAGAAGTA TTACTGGTGG TTCTTCCAGA CCGTGCCAGG CCTCACGGGG
    GTTATAATGC TCCTGGTCCT GGCCATCATG TATGTCTTCG CCTCCCACCA CTTCCGGCGC
    CGCAGCTTCC GGGGCTTCTG GCTGACCCAC CACCTCTACA TCCTGCTCTA CATCCTGCTC
    ATCATCCACG GCAGCTTCGC TCTGATCCAG CTGCCCCGTT TCCACATCTT CTTCCTGGTC
    CCGGCACTAA TCTATGGGGG GGACAAGCTG GTGAGCCTGA GCCGGAAGAA GGTGGAGATC
    AGCGTGGTGA AGGCCGAGCT GCTGCCTTCA GGAGTGACCC ACCTGCAGTT CCAGCGGCCC
    CAAGGCTTTG AGTACAAGTC AGGACAGTGG GTGCGGATCG CCTGCCTGGC TCTGGGGACC
    ACCGAGTACC ACCCCTTCAC ACTGACTTCT GCGCCCCATG AGGACACGCT CAGCCTGCAC
    ATCCGGGCGG CAGGACCCTG GACCACTCGC CTCAGGGAGA TCTACTCACC CCTGACCAAC
    AGCTCTGCCA GATACCCGAA GTTGTACCTC GATGGACCAT TTGGAGAGGG CCACCAGGAG
    TGGCATAAGT TTGAGGTGTC AGTGCTGGTA GGAGGGGGCA TTGGGGTCAC CCCCTTTGCC
    TCTATCCTCA AAGACCTGGT CTTCAAGTCA TCAGTCAGCT ACCAAGTGTT CTGTAAGAAG
    ATCTACTTCA TCTGGGTGAC ACGGACCCAG CGGCAGTTCG AGTGGCTGGC TGACATCATC
    CGGGAGGTGG AGGAGAATGA CCACCAGGAC CTGGTGTCCG TGCACATCTA CATCACCCAG
    CTGGCTGAGA AGTTCGACCT CAGGACCACC ATGCTGTACA TCTGTGAGCG CCACTTCCAG
    AAGGTGCTGA ACCGGAGTCT GTTCACGGGC CTGCGCTCTG TCACCCACTT TGGTCGCCCC
    CCCTTTGAGG CCTTCTTCAA CTCCCTGCAG GAGGTTCACC CACAGGTCCG GAAGATCGGG
    GTGTTTAGCT GTGGCCCCCC TGGCATGACC AAGAATGTGG AAAAAGCCTG TCAGCTCATC
    AACAGGCAGG ACCGGACTCA TTTCTCCCAC CATTACGAGA ACTTCTAG

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