SFI1 cDNA ORF clone, Calypte anna(Anna's hummingbird)

The following SFI1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the SFI1 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
OCa428150 XM_008502873.1
Latest version!
Calypte anna Sfi1 homolog, spindle assembly associated (yeast) (SFI1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OCa811341 XM_030460700.1
Latest version!
Calypte anna SFI1 centrin binding protein (SFI1), 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 OCa428150
    Clone ID Related Accession (Same CDS sequence) XM_008502873.1
    Accession Version XM_008502873.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3240bp)
    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 2014-07-09
    Organism Calypte anna(Anna's hummingbird)
    Product protein SFI1 homolog
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_007622184.1) 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 :: Calypte anna 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
    ATGCATGAAG TCCAACAACT TCCTAGGCAT AAAATGCATG CAACTGGGCA ATCTGTTACT 
    CCCCAGTCTG CCAGAGAAGT TGGGTATACG TGGAATCAAA GAAGAAGATT GAAAGAATTC
    CAAGCCAGAT ATCTAGCAAG GAAATTCTTC TATGTGTGGG CAAAAAAGAC ATTTGGACAA
    ATTCTCCCTT CCACAGCCAG ATGCTTTTAT GACCAGAAGA TTCTTCAGAA AACATTTGGA
    CAGTGGAAGG ACTTGTGGAC TGCTCGTAGA GAAAGGAAGC TCAGCCTCAG AGCAGAGCAC
    CATTACAGGC ACTTACTCCA TAATTTGGTA TTCAAGGCTT GGAGAGCCTA TGTGTGCCAG
    CAGCAAGGGA AGAGGAACAA GTACTGTGTT GCAGAGTCTC ATGCAAAGAA GCAAAACTTG
    CTCAGGACGT GGCAATGCTG GGTGGTTTAT GTCCGTGTTC AAAGGACCAA GAGTGGGATG
    CAGTCTGTGG CACTGGCATT CAGGGAAAGA AGCTGTTTGA GCAGGTGGTG GGCAGTGTGG
    AGACGACAGC ACTACCAGAA CTGCACTGAA CACAGAATCA ATGTTCTGGC TCTGCAGCAT
    TGGGCCCAGA GCCTGCAATT TCGAGCTTGG TTGCAGTGGA GGGAGCTGTA TTTGTACAGC
    CAGAATGACA AGCAGAAAGC AACCAGGGCA GTAACTCACC ATCAGCACTG GGTACTGAAG
    AGATGCATGG AAGCTTGGCT GAGGTACTTA AACCTCCATA AAGCAAAGAA ACATCAAAAT
    GAGGTAGCCC AAGAGCACCA CAGGAGCAGG GTAGTCCAGC AGTGTTTCTC TGACTGGTGG
    CTGTCATGGG ACTGCAGGAG GAGAATGCGT GCTCACCAGG AAGACACTGA GAGACTGGCA
    GGAAGGATTG CCATAAGGAG AGTCTTTGCA CACTGGAAGC ATTATGTGCT GTGTGTGGAA
    GAGATTCGAC AGCAGGAACT GGCTGAAAAC CACTACAAGC ATCATCTGTT GAAACTTGGG
    TTTAAGGCTT TTTGTCAGAA TGTCATCACC ACTCATCTTC AGCAAATGAG AAAAAATCTG
    GCACACCGTC AGCATCAAGT TACAGTGCTG AAGAAGTTCT GGAACTGTTG GAAGTCCCAT
    TTGGAAAAGA AGGAAGAAGA GCAGCAGCAG GCCTTAACAG CAGTGGCTCA TGCCCGTTAT
    AGGAGGGTGT TGATGAGACA GGTATTTAAC ACATGGCTGC TGAACACCTG CAAGCAGCAA
    GAATACAGAA CTGAAGAGAA GAGGGCTGTA CTTCATTTTG AGAGGCAGCT ATTGCGTGGC
    TTCTGGTGCT CCTGGCGCAG GAGAACAGCT GCATGTTTAG AGGAGCAAGA GGGCTTGGTT
    CGTGCAAGAG GTCACTACAG TAACCTGCTG CTGCTAAAGG CTTTCTGTCT GTGGAAACAA
    AATACTCAGG AGAGAAAAAC AGAGACACTT AAGGAGAGGC AAGCCTTACG TTTTCATGAT
    TCAAAGTGTC TGCAGCAGTC TTGGAACAAG TGGAGGGAGT ACCTGGAACA TCAACGTGAG
    AAATGGAGGA AGTTGGTAGA AGCAGACGTG CATTATCAGC ACACATTGCT GGGCAAGACC
    TTTGCAGCCT GGAAGATTTA CCAACATAAC ATCCAGTGCA TTATGTACCA AGTAGATGAA
    AAGGAGAAAC AGCACACTAG GCTACTGCTG CGGCAGCTTC TGTGTACATG GAGAGAAAAT
    GCCCTTGCTC TTATATGTGA AGCTAAGGCA ACTTCTCGAG CAGATGAGCA CTACAGGAGA
    GCAATCCTGT TAAAGGTGTT GCTGCAGTGG AGATCTGCTG CATCACTGCA AGGGTATTAC
    CGTCAGCAGA AGATGACAGC TGTGATGGAG GCCAGAAAAC AGTTGGATCT AGTGCATTTA
    CAGAACCTGT TTCTTCACTG GAAGAGATTA ACCAGGGAGT CTCTGCTGGC AAGGGCTCAG
    CAGTACAGGG CAGTACAGCA CCACCAGCAG CATGTACTCC AGAAGTATCT GGTGAAGTGG
    AAGAAATATC ATCAGCTGTG CCTTGAGAAA ATGCTACTGC AGAGACAGGG AGATCAGCTA
    ATGGCTTATA GGCTTTGCTC TGCTTCCTTC TCTTGTTGGA AGACACAGCT GTTGCAGCAG
    CGATGGGAAA AGCAGAAGAC AGTGCAAGCC CTGTGGCACT GGTCCCTTTC ATTGCAGAGA
    AAGGTATTTG ATGCTTGGCT CCTGTTTGCC AAGGGAAAAC AGCAGAAGGA AGGTGATATT
    GAAAAAGCCA CAGGACTTTA CCATACTACT TCTCTGAGAG AAAGCTATGC TGCTGGCATC
    AAGCAGTTGC AGGGACAGCT CCAAGCCCAG CACCAGCTGA AGAAGCAGGT GACATTTAAA
    ATGCCCAATG CTACCCCTGA GACAAGAGAA CATTCAACAG AGAAAGAGCC ACGGCCTTCA
    AAATGCAATC ATCTGCCATT TGACCTTGAT GATGGGAACT CAATTCTTCA AGATCTATCA
    GAAGCACCCT TTCAGCAAAT ATCTGTGAAA AAAAGTTCTG CACAGACTGG GAATTTAATG
    CTAGCACCTC TGCTGGAAAA AAGTAAACGT CTGTCTCAAA GTGGCGATAC CTCTCCTTCC
    TGTCCATCTC TCCCATCTGT TTCACTGGGG ACACATGATG TGCACCATGC TGTTCAGAGG
    CCAGAGCTAT GGTCTTCTTC ACCTTTTATA ACCCAGATGA AAACTTGGGG AGAAGTGAGA
    GGCAGTCAGC CTGGGAGTGG TCACAATGGA GCCCAGTGCC AGGACTCTCA GCAGGAGACT
    GTGGAGAAGT TGCAACCAAA GTTACAGTCA CGTTTGCTGT CACCTGAAGA AGTGGTGGGA
    GAAAGGAGTC ACCAAACTGC AGGGCAAGAA GGGGAGCACA GTTTCAGAGA AGAAATGGTG
    TTACAGAGAC AGCTAGAAGG TGAACTTCGA CACATCCAAC AGCAGATGCA GTACTACTAC
    AGCAAGAAAC AAGAACTCAG GTCCTGTCAG CAGCAGGCAC AGATTCTACA GAAGTGGCTA
    GAAAATAGCA CACAATCAGA GGACAGAGGT GGTGTACAAG AGCTTAAGGA AGAATTGCAT
    CAGATGCAGG TGAGGATCAG CACTCTCAGC AAAGCACAAC CAAGAGACAG ACAGCATGTG
    CAGAAGCTGC TTGCCAGACT GCAAGATATC GAGATCACGC TGGAGACATA CTGCACCTGA

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

    RefSeq XP_008501095.1
    CDS1..3240
    Translation

    Target ORF information:

    RefSeq Version XM_008502873.1
    Organism Calypte anna(Anna's hummingbird)
    Definition Calypte anna Sfi1 homolog, spindle assembly associated (yeast) (SFI1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008502873.1

    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
    ATGCATGAAG TCCAACAACT TCCTAGGCAT AAAATGCATG CAACTGGGCA ATCTGTTACT 
    CCCCAGTCTG CCAGAGAAGT TGGGTATACG TGGAATCAAA GAAGAAGATT GAAAGAATTC
    CAAGCCAGAT ATCTAGCAAG GAAATTCTTC TATGTGTGGG CAAAAAAGAC ATTTGGACAA
    ATTCTCCCTT CCACAGCCAG ATGCTTTTAT GACCAGAAGA TTCTTCAGAA AACATTTGGA
    CAGTGGAAGG ACTTGTGGAC TGCTCGTAGA GAAAGGAAGC TCAGCCTCAG AGCAGAGCAC
    CATTACAGGC ACTTACTCCA TAATTTGGTA TTCAAGGCTT GGAGAGCCTA TGTGTGCCAG
    CAGCAAGGGA AGAGGAACAA GTACTGTGTT GCAGAGTCTC ATGCAAAGAA GCAAAACTTG
    CTCAGGACGT GGCAATGCTG GGTGGTTTAT GTCCGTGTTC AAAGGACCAA GAGTGGGATG
    CAGTCTGTGG CACTGGCATT CAGGGAAAGA AGCTGTTTGA GCAGGTGGTG GGCAGTGTGG
    AGACGACAGC ACTACCAGAA CTGCACTGAA CACAGAATCA ATGTTCTGGC TCTGCAGCAT
    TGGGCCCAGA GCCTGCAATT TCGAGCTTGG TTGCAGTGGA GGGAGCTGTA TTTGTACAGC
    CAGAATGACA AGCAGAAAGC AACCAGGGCA GTAACTCACC ATCAGCACTG GGTACTGAAG
    AGATGCATGG AAGCTTGGCT GAGGTACTTA AACCTCCATA AAGCAAAGAA ACATCAAAAT
    GAGGTAGCCC AAGAGCACCA CAGGAGCAGG GTAGTCCAGC AGTGTTTCTC TGACTGGTGG
    CTGTCATGGG ACTGCAGGAG GAGAATGCGT GCTCACCAGG AAGACACTGA GAGACTGGCA
    GGAAGGATTG CCATAAGGAG AGTCTTTGCA CACTGGAAGC ATTATGTGCT GTGTGTGGAA
    GAGATTCGAC AGCAGGAACT GGCTGAAAAC CACTACAAGC ATCATCTGTT GAAACTTGGG
    TTTAAGGCTT TTTGTCAGAA TGTCATCACC ACTCATCTTC AGCAAATGAG AAAAAATCTG
    GCACACCGTC AGCATCAAGT TACAGTGCTG AAGAAGTTCT GGAACTGTTG GAAGTCCCAT
    TTGGAAAAGA AGGAAGAAGA GCAGCAGCAG GCCTTAACAG CAGTGGCTCA TGCCCGTTAT
    AGGAGGGTGT TGATGAGACA GGTATTTAAC ACATGGCTGC TGAACACCTG CAAGCAGCAA
    GAATACAGAA CTGAAGAGAA GAGGGCTGTA CTTCATTTTG AGAGGCAGCT ATTGCGTGGC
    TTCTGGTGCT CCTGGCGCAG GAGAACAGCT GCATGTTTAG AGGAGCAAGA GGGCTTGGTT
    CGTGCAAGAG GTCACTACAG TAACCTGCTG CTGCTAAAGG CTTTCTGTCT GTGGAAACAA
    AATACTCAGG AGAGAAAAAC AGAGACACTT AAGGAGAGGC AAGCCTTACG TTTTCATGAT
    TCAAAGTGTC TGCAGCAGTC TTGGAACAAG TGGAGGGAGT ACCTGGAACA TCAACGTGAG
    AAATGGAGGA AGTTGGTAGA AGCAGACGTG CATTATCAGC ACACATTGCT GGGCAAGACC
    TTTGCAGCCT GGAAGATTTA CCAACATAAC ATCCAGTGCA TTATGTACCA AGTAGATGAA
    AAGGAGAAAC AGCACACTAG GCTACTGCTG CGGCAGCTTC TGTGTACATG GAGAGAAAAT
    GCCCTTGCTC TTATATGTGA AGCTAAGGCA ACTTCTCGAG CAGATGAGCA CTACAGGAGA
    GCAATCCTGT TAAAGGTGTT GCTGCAGTGG AGATCTGCTG CATCACTGCA AGGGTATTAC
    CGTCAGCAGA AGATGACAGC TGTGATGGAG GCCAGAAAAC AGTTGGATCT AGTGCATTTA
    CAGAACCTGT TTCTTCACTG GAAGAGATTA ACCAGGGAGT CTCTGCTGGC AAGGGCTCAG
    CAGTACAGGG CAGTACAGCA CCACCAGCAG CATGTACTCC AGAAGTATCT GGTGAAGTGG
    AAGAAATATC ATCAGCTGTG CCTTGAGAAA ATGCTACTGC AGAGACAGGG AGATCAGCTA
    ATGGCTTATA GGCTTTGCTC TGCTTCCTTC TCTTGTTGGA AGACACAGCT GTTGCAGCAG
    CGATGGGAAA AGCAGAAGAC AGTGCAAGCC CTGTGGCACT GGTCCCTTTC ATTGCAGAGA
    AAGGTATTTG ATGCTTGGCT CCTGTTTGCC AAGGGAAAAC AGCAGAAGGA AGGTGATATT
    GAAAAAGCCA CAGGACTTTA CCATACTACT TCTCTGAGAG AAAGCTATGC TGCTGGCATC
    AAGCAGTTGC AGGGACAGCT CCAAGCCCAG CACCAGCTGA AGAAGCAGGT GACATTTAAA
    ATGCCCAATG CTACCCCTGA GACAAGAGAA CATTCAACAG AGAAAGAGCC ACGGCCTTCA
    AAATGCAATC ATCTGCCATT TGACCTTGAT GATGGGAACT CAATTCTTCA AGATCTATCA
    GAAGCACCCT TTCAGCAAAT ATCTGTGAAA AAAAGTTCTG CACAGACTGG GAATTTAATG
    CTAGCACCTC TGCTGGAAAA AAGTAAACGT CTGTCTCAAA GTGGCGATAC CTCTCCTTCC
    TGTCCATCTC TCCCATCTGT TTCACTGGGG ACACATGATG TGCACCATGC TGTTCAGAGG
    CCAGAGCTAT GGTCTTCTTC ACCTTTTATA ACCCAGATGA AAACTTGGGG AGAAGTGAGA
    GGCAGTCAGC CTGGGAGTGG TCACAATGGA GCCCAGTGCC AGGACTCTCA GCAGGAGACT
    GTGGAGAAGT TGCAACCAAA GTTACAGTCA CGTTTGCTGT CACCTGAAGA AGTGGTGGGA
    GAAAGGAGTC ACCAAACTGC AGGGCAAGAA GGGGAGCACA GTTTCAGAGA AGAAATGGTG
    TTACAGAGAC AGCTAGAAGG TGAACTTCGA CACATCCAAC AGCAGATGCA GTACTACTAC
    AGCAAGAAAC AAGAACTCAG GTCCTGTCAG CAGCAGGCAC AGATTCTACA GAAGTGGCTA
    GAAAATAGCA CACAATCAGA GGACAGAGGT GGTGTACAAG AGCTTAAGGA AGAATTGCAT
    CAGATGCAGG TGAGGATCAG CACTCTCAGC AAAGCACAAC CAAGAGACAG ACAGCATGTG
    CAGAAGCTGC TTGCCAGACT GCAAGATATC GAGATCACGC TGGAGACATA CTGCACCTGA

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

    CloneID OCa811341
    Clone ID Related Accession (Same CDS sequence) XM_030460700.1
    Accession Version XM_030460700.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4251bp)
    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 2019-08-19
    Organism Calypte anna(Anna's hummingbird)
    Product protein SFI1 homolog
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_044261.1) 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 Name :: Calypte anna Annotation Release 101 Annotation Version :: 101 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## ##RefSeq-Attributes-START## ab initio :: 16% 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
    ATGGTTACCG CAAAGCCTGG GACCGGGGAC CTAAATAACA ACAAAACCGA GCCCTCAGAA 
    CGCCAGACAC CGCTTCAAGC CACGCAGCCC CGCCTGGGGC ACGAACCGGC ACCCCGAGCC
    CCGCCAGACC CGCAGCCCAG CTCCGCGGCA GCCTGCCCAC AACAAAGCTG CCCCGTGGGG
    GCCATCGGGA GCAGAGCACC GTGGCCGGGG GAGCGGGGCC GCCGGGACAC CCTCACCGCG
    GCTCCCCTCG CGTGGCGGCG GGGGCAGCGC GGCCCAGGCC CGGTCCCGAG GCAGCCGAGC
    CGAGGGGGCA GGAGGGCGGC GGGAAAGGTG ACTCAGCGGA TCCTCCCCCC CCCCCCCAGC
    CCCGCCGGCC GTACTCACCG CCCCGCCGGC GGCTCTCCCA ACGGCGCCCC GCTGAAGGCC
    TTACCGCCGC CCGCGGCGTT TCCTGATCCC GGCCACCGGC TCCGCTCGGC CCCTGCCCGT
    CCCTCCACTG GCGGCTCCCG GCGCCGCTCC CGCCGCTTTC CGCGCCACCC GCGCTCCGGG
    CCGGTCCCGT CCCCGCCCCG CCCGCCGCAG CTCGCGCGGC CCCGGCCCCC TCCGCGCTGG
    CTCGCGCGCC CGCTCCTTAT TCGCCCGACT CTGTCTCTCT TCAGCCGCCG TAACCGGGGC
    CTTCCGCTGC CCGCCCCGCA CCCATTTAAT GGCCCGCGCG CAGGCTGGGG GAGCGCCGAG
    GGCCCGCAGG CACTCTCGTC AGACAGCCCT GCGGGGGAGG CTGTCGCCGG GAGCAGCGGC
    GGCGGGACGT GTTGGAAATC CCTGGAGTTG CACGAAGTCC AACAACTTCC TAGGCATAAA
    ATGCATGCAA CTGGGCAATC TGTTACTCCC CAGTCTGCCA GAGAAGTTGG GTATACGTGG
    AATCAAAGAA GAAGATTGAA AGAATTCCAA GCCAGATATC TAGCAAGGAA ATTCTTCTAT
    TTGTGGGCAA AAAAGACATT TGGACAAATT CTCCCTTCCA CAGCCAGATG CTTTTATGAC
    CAGAAGATTC TTCAGAAAAC ATTTGGACAG TGGAAGGACT TGTGGACTGC TTGTAGAGAA
    AGGAAGCTCA GCCTCAGAGC AGAGCACCAT TACAGGCACT TACTCCATAA TTTGGTATTC
    AAGGCTTGGA GAGCCTATGT GTGCCAGCAG CAAGGGAAGA GGAACAAGTA CTGTGTTGCA
    GAGTCTCATG CAAAGAAGCA AAACTTGCTC AGGACGTGGC AATGCTGGGT GGTTTATGTC
    CGTGTTCAAA GGACCAAGAG TGGGATGCAG TCTGTGGCAC TGGCATTCAG GGAAAGAAGC
    TGTTTGAGCA GGTGGTGGGC AGTGTGGAGA CGACAGCACT ACCAGAACTG CACTGAACAC
    AGAATCAATG TTCTGGCTCT GCAGCATTGG GCCCAGAGCC TGCAATTTCG AGCTTGGTTG
    CAGTGGAGGG AGCTGTATTT GTACAGCCAG AATGACAAGC AGAAAGCAAC CAGGGCAGTA
    ACTCACCATC AGCACTGGGT ACTGAAGAGA TGCATGGAAG CTTGGCTGAG GTACTTAAAC
    CTCCATAAAG CAAAGAAACA TCAAAATGAG GTAGCCCAAG AGCACCACAG GAGCAGGGTA
    GTCCAGCAGT GTTTCTCTGA CTGGTGGCTG TCATGGGACT GCAGGAGGAG AATGCGTGCT
    CACCAGGAAG ACACTGAGAG ACTGGCAGGA AGGATTGCCA TAAGGAGAGT CTTTGCACAC
    TGGAAGCATT ATGTGCTGTG TGTGGAAGAG ATTCGACAGC AGGAACTGGC TGAAAACCAC
    TACAAGCATC ATCTGTTGAA ACTTGGGTTT AAGGCTTTTT GTCAGAATGT CATCACCACT
    CATCTTCAGC AAATGAGAAA AAATCTGGCA CACCGTCAGC ATCAAGTTAC AGTGCTGAAG
    AAGTTCTGGA ACTGTTGGAA GTCCCATTTG GAAAAGAAGG AAGAAGAGCA GCAGCAGGCC
    TTAACAGCAG TGGCTCATGC CCGTTATAGG AGGGTGTTGA TGAGACAGGT ATTTAACACA
    TGGCTGCTGA ACACCTGCAA GCAGCAAGAA TACAGAACTG AAGAGAAGAG GGCTGTACTT
    CATTTTGAGA GGCAGCTATT GCGTGGCTTC TGGTGCTCCT GGCGCAGGAG AACAGCTGCA
    TGTTTAGAGG AGCAAGAGGG CTTGGTTCGT GCAAGAGGTC ACTACAGTAA CCTGCTGCTG
    CTAAAGGCTT TCTGTCTGTG GAAACAAAAT ACTCAGGAGA GAAAAACAGA GACACTTAAG
    GAGAGGCAAG CCTTACGTTT TCATGATTCA AAGTGTCTGC AGCAGTCTTG GAACAAGTGG
    AGGGAGTACC TGGAACATCA ACGTGAGAAA TGGAGGAAGT TGGTAGAAGC AGACGTGCAT
    TATCAGCACA CATTGCTGGG CAAGACCTTT GCAGCCTGGA AGATTTACCA ACATAACATC
    CAGTGCATTA TGTACCAAGT AGATGAAAAG GAGAAACAGC ACACTAGGCT ACTGCTGCGG
    CAGCTTCTGT GTACATGGAG AGAAAATGCC CTTGCTCTTA TATGTGAAGC TAAGGCAACT
    TCTCGAGCAG ATGAGCACTA CAGGAGAGCA ATCCTGTTAA AGGTGTTGCT GCAGTGGAGA
    TCTGCTGCAT CACTGCAAGG GTATTACCGT CAGCAGAAGA TGACAGCTGT GATGGAGGCC
    AGAAAACAGT TGGATCTAGT GCATTTACAG AACCTGTTTC TTCACTGGAA GAGATTAACC
    AGGGAGTCTC TGCTGGCAAG GGCTCAGCAG TACAGGGCAG TACAGCACCA CCAGCAGCAT
    GTACTCCAGA AGTATCTGGT GAAGTGGAAG AAATATCATC AGCTGTGCCT TGAGAAAATG
    CTACTGCAGA GACAGGGAGA TCAGCTAATG GCTTATAGGC TTTGCTCTGC TTCCTTCTCT
    TGTTGGAAGA CACAGCTGTT GCAGCAGCGA TGGGAAAAGC AGAAGACAGT GCAAGCCCTG
    TGGCACTGGT CCCTTTCATT GCAGAGAAAG GTATTTGATG CTTGGCTCCT GTTTGCCAAG
    GGAAAACAGC AGAAGGAAGG TGATATTGAA AAAGCCACAG GACTTTACCA TACTACTTCT
    CTGAGAGAAA GCTATGCTGC TGGCATCAAG CAGTTGCAGG GACAGCTCCA AGCCCAGCAC
    CAGCTGAAGG CAGCCCACAA CCTTCACCTG TCAGTGTATC ACTGTGCCCT GCTATGGAAA
    CAGAAGGCAC TCTCCAAGAA ATTAAATAAC CCTTGTTCTT TTCTGCCACC TCTCAAGAAG
    CAGGTGACAT TTAAAATGCC CAATGCTACC CCTGAGACAA GAGAACATTC AACAGAGAAA
    GAGCCACGGC CTTCAAAATG CAATCATCTG CCATTTGACC TTGATGATGG GAACTCAATT
    CTTCAAGATC TAAATGCTAG TCAACAAGCA AGGTTACGAC CACAGAGGTC TGACTTCCTT
    CTGGAATCTC TAGAAAGCAA GGAACTTCTG GGACCTCCTT TTACTAGATC AGAAGCACCC
    TTTCAGCAAA TATCTGTGAA AAAAAGTTCT GCACAGACTG GGAATTTAAT GCTAGCACCT
    CTGCTGGAAA AAAGTAAACG TCTGTCTCAA AGTGGCGATA CCTCTCCTTC CTGTCCATCT
    CTCCCATCTG TTTCACTGGG GACACATGAT GTGCACCATG CTGTTCAGAG GCCAGAGCTA
    TGGTCTTCTT CACCTTTTAT AACCCAGATG AAAACTTGGG GAGAAGTGAG AGGCAGTCAG
    CCTGGGAGTG GTCACAATGG AGCCCAGTGC CAGGACTCTC AGCAGGAGAC TGTGGAGAAG
    TTGCAACCAA AGTTACAGTC ACGTTTGCTG TCACCTGAAG AAGTGGTGGG AGAAAGGAGT
    CACCAAACTG CAGGGCAAGA AGGGGAGCAC AGTTTCAGAG AAGAAATGGT GTTACAGAGA
    CAGCTAGAAG GTGAACTTCG ACACATCCAA CAGCAGATGC AGTACTACTA CAGCAAGAAA
    CAAGAACTCA GGTCCTGTCA GCAGCAGGCA CAGATTCTAC AGAAGTGGCT AGAAAATAGC
    ACACAATCAG AGGACAGAGG TGGTGTACAA GAGCTTAAGG AAGAATTGCA TCAGATGCAG
    GTGAGGATCA GCACTCTCAG CAAAGCACAA CCAAGAGACA GACAGCATGT GCAGAAGCTG
    CTTGCCAGAC TGCAAGATAT CGAGATCACG CTGGAGACAT ACTGCACCTG A

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

    RefSeq XP_030316560.1
    CDS1..4251
    Translation

    Target ORF information:

    RefSeq Version XM_030460700.1
    Organism Calypte anna(Anna's hummingbird)
    Definition Calypte anna SFI1 centrin binding protein (SFI1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030460700.1

    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
    ATGGTTACCG CAAAGCCTGG GACCGGGGAC CTAAATAACA ACAAAACCGA GCCCTCAGAA 
    CGCCAGACAC CGCTTCAAGC CACGCAGCCC CGCCTGGGGC ACGAACCGGC ACCCCGAGCC
    CCGCCAGACC CGCAGCCCAG CTCCGCGGCA GCCTGCCCAC AACAAAGCTG CCCCGTGGGG
    GCCATCGGGA GCAGAGCACC GTGGCCGGGG GAGCGGGGCC GCCGGGACAC CCTCACCGCG
    GCTCCCCTCG CGTGGCGGCG GGGGCAGCGC GGCCCAGGCC CGGTCCCGAG GCAGCCGAGC
    CGAGGGGGCA GGAGGGCGGC GGGAAAGGTG ACTCAGCGGA TCCTCCCCCC CCCCCCCAGC
    CCCGCCGGCC GTACTCACCG CCCCGCCGGC GGCTCTCCCA ACGGCGCCCC GCTGAAGGCC
    TTACCGCCGC CCGCGGCGTT TCCTGATCCC GGCCACCGGC TCCGCTCGGC CCCTGCCCGT
    CCCTCCACTG GCGGCTCCCG GCGCCGCTCC CGCCGCTTTC CGCGCCACCC GCGCTCCGGG
    CCGGTCCCGT CCCCGCCCCG CCCGCCGCAG CTCGCGCGGC CCCGGCCCCC TCCGCGCTGG
    CTCGCGCGCC CGCTCCTTAT TCGCCCGACT CTGTCTCTCT TCAGCCGCCG TAACCGGGGC
    CTTCCGCTGC CCGCCCCGCA CCCATTTAAT GGCCCGCGCG CAGGCTGGGG GAGCGCCGAG
    GGCCCGCAGG CACTCTCGTC AGACAGCCCT GCGGGGGAGG CTGTCGCCGG GAGCAGCGGC
    GGCGGGACGT GTTGGAAATC CCTGGAGTTG CACGAAGTCC AACAACTTCC TAGGCATAAA
    ATGCATGCAA CTGGGCAATC TGTTACTCCC CAGTCTGCCA GAGAAGTTGG GTATACGTGG
    AATCAAAGAA GAAGATTGAA AGAATTCCAA GCCAGATATC TAGCAAGGAA ATTCTTCTAT
    TTGTGGGCAA AAAAGACATT TGGACAAATT CTCCCTTCCA CAGCCAGATG CTTTTATGAC
    CAGAAGATTC TTCAGAAAAC ATTTGGACAG TGGAAGGACT TGTGGACTGC TTGTAGAGAA
    AGGAAGCTCA GCCTCAGAGC AGAGCACCAT TACAGGCACT TACTCCATAA TTTGGTATTC
    AAGGCTTGGA GAGCCTATGT GTGCCAGCAG CAAGGGAAGA GGAACAAGTA CTGTGTTGCA
    GAGTCTCATG CAAAGAAGCA AAACTTGCTC AGGACGTGGC AATGCTGGGT GGTTTATGTC
    CGTGTTCAAA GGACCAAGAG TGGGATGCAG TCTGTGGCAC TGGCATTCAG GGAAAGAAGC
    TGTTTGAGCA GGTGGTGGGC AGTGTGGAGA CGACAGCACT ACCAGAACTG CACTGAACAC
    AGAATCAATG TTCTGGCTCT GCAGCATTGG GCCCAGAGCC TGCAATTTCG AGCTTGGTTG
    CAGTGGAGGG AGCTGTATTT GTACAGCCAG AATGACAAGC AGAAAGCAAC CAGGGCAGTA
    ACTCACCATC AGCACTGGGT ACTGAAGAGA TGCATGGAAG CTTGGCTGAG GTACTTAAAC
    CTCCATAAAG CAAAGAAACA TCAAAATGAG GTAGCCCAAG AGCACCACAG GAGCAGGGTA
    GTCCAGCAGT GTTTCTCTGA CTGGTGGCTG TCATGGGACT GCAGGAGGAG AATGCGTGCT
    CACCAGGAAG ACACTGAGAG ACTGGCAGGA AGGATTGCCA TAAGGAGAGT CTTTGCACAC
    TGGAAGCATT ATGTGCTGTG TGTGGAAGAG ATTCGACAGC AGGAACTGGC TGAAAACCAC
    TACAAGCATC ATCTGTTGAA ACTTGGGTTT AAGGCTTTTT GTCAGAATGT CATCACCACT
    CATCTTCAGC AAATGAGAAA AAATCTGGCA CACCGTCAGC ATCAAGTTAC AGTGCTGAAG
    AAGTTCTGGA ACTGTTGGAA GTCCCATTTG GAAAAGAAGG AAGAAGAGCA GCAGCAGGCC
    TTAACAGCAG TGGCTCATGC CCGTTATAGG AGGGTGTTGA TGAGACAGGT ATTTAACACA
    TGGCTGCTGA ACACCTGCAA GCAGCAAGAA TACAGAACTG AAGAGAAGAG GGCTGTACTT
    CATTTTGAGA GGCAGCTATT GCGTGGCTTC TGGTGCTCCT GGCGCAGGAG AACAGCTGCA
    TGTTTAGAGG AGCAAGAGGG CTTGGTTCGT GCAAGAGGTC ACTACAGTAA CCTGCTGCTG
    CTAAAGGCTT TCTGTCTGTG GAAACAAAAT ACTCAGGAGA GAAAAACAGA GACACTTAAG
    GAGAGGCAAG CCTTACGTTT TCATGATTCA AAGTGTCTGC AGCAGTCTTG GAACAAGTGG
    AGGGAGTACC TGGAACATCA ACGTGAGAAA TGGAGGAAGT TGGTAGAAGC AGACGTGCAT
    TATCAGCACA CATTGCTGGG CAAGACCTTT GCAGCCTGGA AGATTTACCA ACATAACATC
    CAGTGCATTA TGTACCAAGT AGATGAAAAG GAGAAACAGC ACACTAGGCT ACTGCTGCGG
    CAGCTTCTGT GTACATGGAG AGAAAATGCC CTTGCTCTTA TATGTGAAGC TAAGGCAACT
    TCTCGAGCAG ATGAGCACTA CAGGAGAGCA ATCCTGTTAA AGGTGTTGCT GCAGTGGAGA
    TCTGCTGCAT CACTGCAAGG GTATTACCGT CAGCAGAAGA TGACAGCTGT GATGGAGGCC
    AGAAAACAGT TGGATCTAGT GCATTTACAG AACCTGTTTC TTCACTGGAA GAGATTAACC
    AGGGAGTCTC TGCTGGCAAG GGCTCAGCAG TACAGGGCAG TACAGCACCA CCAGCAGCAT
    GTACTCCAGA AGTATCTGGT GAAGTGGAAG AAATATCATC AGCTGTGCCT TGAGAAAATG
    CTACTGCAGA GACAGGGAGA TCAGCTAATG GCTTATAGGC TTTGCTCTGC TTCCTTCTCT
    TGTTGGAAGA CACAGCTGTT GCAGCAGCGA TGGGAAAAGC AGAAGACAGT GCAAGCCCTG
    TGGCACTGGT CCCTTTCATT GCAGAGAAAG GTATTTGATG CTTGGCTCCT GTTTGCCAAG
    GGAAAACAGC AGAAGGAAGG TGATATTGAA AAAGCCACAG GACTTTACCA TACTACTTCT
    CTGAGAGAAA GCTATGCTGC TGGCATCAAG CAGTTGCAGG GACAGCTCCA AGCCCAGCAC
    CAGCTGAAGG CAGCCCACAA CCTTCACCTG TCAGTGTATC ACTGTGCCCT GCTATGGAAA
    CAGAAGGCAC TCTCCAAGAA ATTAAATAAC CCTTGTTCTT TTCTGCCACC TCTCAAGAAG
    CAGGTGACAT TTAAAATGCC CAATGCTACC CCTGAGACAA GAGAACATTC AACAGAGAAA
    GAGCCACGGC CTTCAAAATG CAATCATCTG CCATTTGACC TTGATGATGG GAACTCAATT
    CTTCAAGATC TAAATGCTAG TCAACAAGCA AGGTTACGAC CACAGAGGTC TGACTTCCTT
    CTGGAATCTC TAGAAAGCAA GGAACTTCTG GGACCTCCTT TTACTAGATC AGAAGCACCC
    TTTCAGCAAA TATCTGTGAA AAAAAGTTCT GCACAGACTG GGAATTTAAT GCTAGCACCT
    CTGCTGGAAA AAAGTAAACG TCTGTCTCAA AGTGGCGATA CCTCTCCTTC CTGTCCATCT
    CTCCCATCTG TTTCACTGGG GACACATGAT GTGCACCATG CTGTTCAGAG GCCAGAGCTA
    TGGTCTTCTT CACCTTTTAT AACCCAGATG AAAACTTGGG GAGAAGTGAG AGGCAGTCAG
    CCTGGGAGTG GTCACAATGG AGCCCAGTGC CAGGACTCTC AGCAGGAGAC TGTGGAGAAG
    TTGCAACCAA AGTTACAGTC ACGTTTGCTG TCACCTGAAG AAGTGGTGGG AGAAAGGAGT
    CACCAAACTG CAGGGCAAGA AGGGGAGCAC AGTTTCAGAG AAGAAATGGT GTTACAGAGA
    CAGCTAGAAG GTGAACTTCG ACACATCCAA CAGCAGATGC AGTACTACTA CAGCAAGAAA
    CAAGAACTCA GGTCCTGTCA GCAGCAGGCA CAGATTCTAC AGAAGTGGCT AGAAAATAGC
    ACACAATCAG AGGACAGAGG TGGTGTACAA GAGCTTAAGG AAGAATTGCA TCAGATGCAG
    GTGAGGATCA GCACTCTCAG CAAAGCACAA CCAAGAGACA GACAGCATGT GCAGAAGCTG
    CTTGCCAGAC TGCAAGATAT CGAGATCACG CTGGAGACAT ACTGCACCTG A

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