AgaP_AGAP001369 cDNA ORF clone, Anopheles gambiae str. PEST

The following AgaP_AGAP001369 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the AgaP_AGAP001369 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
OAh07628 XM_321772.5
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Anopheles gambiae str. PEST AGAP001369-RA (AgaP_AGAP001369), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $629.30
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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 OAh07628
    Clone ID Related Accession (Same CDS sequence) XM_321772.5
    Accession Version XM_321772.5 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3456bp)
    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 2018-04-25
    Organism Anopheles gambiae str. PEST
    Product AGAP001369-PA
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NT_078266). On Sep 28, 2011 this sequence version replaced XM_321772.4.

    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
    ATGGAGCGTC TACTGCGTCG AACGTCTTTA ACGAGGCACT CGCCAAGATC GCCGTCAATG 
    CACAACAGGG AGGAACCATC GATATTGCTG AAAGCGTTCT ACGTCGATCT GCTGGTGCCG
    CTGGAAACGA ACCTCGAGAA GGACACCAAG GTGGTGCAGT TCGAGCAGAA GAAGTTTCTG
    CAGCAGCACA AGATGCGCTC AGACAGCTAC AGCAAGGCGG CCGCCACGAT GAAGAAGTAC
    CGCAAGAAGA ACTCGAAAAA CACGCCCAAG GAGGCGGAGA AGGAAATCAA GAGCATCCAG
    GCGTTCGAGG AGGAAAAGCA CAAGCTGGAC CAGTTCTGCG AGCAGAGCCT GAAGAACGCG
    ATGACGCAGG AGCGGCGCCG GTACGGGTTC GTGCTGGAGC GCCAGTGCTC GCTCGCCAAG
    CACTGGATGG CGTACCACCA CTCCGGCCAC ATGATTATCG AAAAGTCGCT CGACAACTGG
    AACGACGTGG CGGCGACGCG CGAATTTCTG CCCCCGAACG TGGAGAACAT GTTCTCCGCC
    AAGCAGGCGC TGCGCGACGT GGAGGACGAG GACGACGACG ACCGGGAGTC GATCGCGTCC
    CAGCTGCGCA AGACGCGCTC GATCGATGCG TCCTGCCTGG ACATGCGCTC GCTGGCCGAC
    GTCGCGAACA GCACGCTCCA GATGCCGCGG GCCAAGTCCG AGTTTAATCT GAACAACAAC
    ACCGGCACGC TGCTGAGTGG ACACCATCAC CACCATCACC ACCACAACCA CCACGCGATG
    ATGATGATGG GTGGCGGTGG CGGTGGCGGG GCCGGCAGTA TGATCGGGGG GGCCACCAAC
    GGCAAACCGG ACATTTCGCA CTGGGAGCGG CCCACGGTGA AGGCGCTGTA CGCGTACCTG
    TCGTCGGGCG AGAACCAGCT CAGCTTTCTC GAGGGCGATC GCATTGCGCT CGTGGGCGAT
    CGGGCCAAGG GCTGGCAGTT TGGGGAGAAT CTGCGCACGC AAAAGTTCGG CTGGTTCCCG
    ATAGCCTACA CCGAGACGGA GCGCGACGAC AAGGAGAGCA TCAGTGAGTG GGTGAAGGCG
    CCCGCGAGCG ACATCGAGCT GGACCACACG CCCGACACGT CGCTCGAGAG TACGCTGGTG
    GACGACAGCC TGTCGAAGAT GACCGGTTCG TACCACGGCG GCGAGGACGC ATCGCCGACG
    CGCATGTTCG GCGACACGAT CCAGTACCGG CAGTCGAAGC AGTTCCGCCG TCTGTCGCGC
    GGCGAGAAGC CGCCGAAGCC GGGCCCGCCG CCCCAGCTGC CGGCGCCCGT ACCGACGCCG
    GTCGTGCCGA ACAGTTACAG CGGTGGCGGC AGCAAGCAGC AGCAGCAGCA GCGTCACGAT
    GGAGCGTCCG GCTCGGGGGG CATTCCCCAG TCGAACAGCT TCTCGTCGGC CGGAGCGCCA
    CCGATGGCGT CGGACAAACG CAAATCGGGC TCGGCTACGA TGAACTTCAG CAAGCCGCCG
    GCTAGCAGCA ATCCGAAGCA AAAACGGGCG AGCAACGGTA TGGCCAGTGC CTCGCTGCAT
    AGCAGCAATG ACAGTGGGTT CTCCAACGAG CCCCAACCGC AACCGGAAGC TGATCTGTAC
    TCGGACGAGG AACCAGTGAA CCGAGTGCCA ATAAGATCGG CCCGCTCGGA GAAGAACCTG
    CTGAACGACC AGACGACGAT GACACGCTCC GGCGGTCGTG ACAGCAGCGT CCCTTCGCCG
    CGCTACCACG ACGAGGACGA TATCTACGGC ACGATTGTGC CACCGCGGCC CCGCGGCCAG
    CAGAGCCAGA TGATGATGCG CCAGGCGAAC AGCTACGGCA ACATTGCCGA AAGCAACTCG
    GGCACGCTCG AGTACGGCTA TCGCACGCGC AACCGCGGGT CCGGCTCGGA GGGCCAGCCC
    AACCAGAGCG ACTCGCAGAA GATCAAGCGC ACCAAATCGT TCTGGAAGTT CTCCAAGTCC
    GAGGACCACA TCCTGGAGGG GATGGCCATG TGGAAGCACA ACGACATCAT ACCAACCGGG
    CGCGAGAAGC GCGAGATGGA GAAGAAGGAG GCCACGCTGA AGCGCAACAT GCGCAAGAAG
    GAGCAGCTGG AGAAGCAGAA GCAGAAGGAG ATGATCGCGG CCAAGGCGGA GGAGGAGCAG
    CAGCAGCAGC AGCAGCAACG TCGCAAGGAT AACTCCCGGG GCAACGCGAA CGGTATGATG
    GACAACGAAA GCAACACCAG CACGCTGGTG CGCGGCAACA ATCGAGAGTC GCGGGACCGC
    GATCGTGACC AGCGGGGGGA GCCAATGCGT GAGCGGCCAC ACAGCATTGC GCTGATGTCG
    GAGCAGGAGA AGTTCCCCAT CACCAAGTCG GACATTGACA AGCGCATCTC GAAGATTGAC
    CAGGAGTTCC ACCAGCAGCA GAAGAAGGCC AGCCGCGGCG GACAGGAGGA GGATCGTGGA
    GGTCGTTCCG GTCGCGATCG CGGCGAGGGA GGAGATCGCA AGCAGTCCAA GGGTGGCAAA
    AACGACACCA ACAACAACAA CAACAACTCG CGCCACAGCT ACGCCGGCGA ACATTTGCAC
    CCCCAGGAGC AGGAGCTGTA CGGGGAGGCA CCGATGGGCG GGGGGAAGCA CGGTGGCAAG
    CAGGACAAGT ATCGCACGAC GGAGCGCGAA ACGAGCAAGA ACCGCAACAA CGATGCGCTG
    AACAAGTACT ACCAGGACCA GACGTTCGAT GACTTTTCGA TCATACCGGC CGACTCGATC
    ATGATGCAGG ACACGAGCTT CTACGACGAC GACGGCATGA TGGACGACAT GATGCTGATG
    AAGACGGTGC GCCGGAAGGA GATCCTGAAG CAGTACTACT CCAGCGGCAC CGACACGGAG
    CGCAACTCGT CCAGCTCGGA CCCGTACGAC TGCATCGTGG TGGACGACCA TCTGGTGGCG
    AAAGGGCGCG ACCGGAAGTC GAACGGTGGC CAGGACGGCA CGATGATGCG CATGATGAAC
    GATCGGCGGG GCGACAAGAA GGATCGCGGC ATGCCCGACG ACAAGATGGC GTTCTCCACC
    TTCCGGGGCG GTGTTTCGGG CGGCAATGGC GGCCGCGGCC AGCTGGACGA TGATGACGAT
    GACACGATGA TGGCATCGAT GACACTGGAC GACGAGCTGA TGGAGGAAGA GCAGCAGCAG
    CAACATCATC ATCAGCAACA GCAGCAGCAG CAACAGTCCC GCCAGCAACA GACCCGCGAT
    CGCCGTTCCA AGAGCTCCAA GGGCAATCTG GCCGAGTCGA AGTACGAATC GGAGCACGAG
    GCGCGCATCA GCGCCAAAAT GCAAAGCAAC GGTCAGCAGC AGCAGCAGCA ACAGAAGCGC
    AAGTCCACCA AATCGATCGC CTCGGACGGG AAGGCGTACG GGCCGTGGTA TGATCTGTGG
    GGCGCCGATA GCTCGGTCCA CAACCAGAAG CTGTAA

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

    RefSeq XP_321772.5
    CDS704..4159
    Translation

    Target ORF information:

    RefSeq Version XM_321772.5
    Organism Anopheles gambiae str. PEST
    Definition Anopheles gambiae str. PEST AGAP001369-RA (AgaP_AGAP001369), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_321772.5

    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
    ATGGAGCGTC TACTGCGTCG AACGTCTTTA ACGAGGCACT CGCCAAGATC GCCGTCAATG 
    CACAACAGGG AGGAACCATC GATATTGCTG AAAGCGTTCT ACGTCGATCT GCTGGTGCCG
    CTGGAAACGA ACCTCGAGAA GGACACCAAG GTGGTGCAGT TCGAGCAGAA GAAGTTTCTG
    CAGCAGCACA AGATGCGCTC AGACAGCTAC AGCAAGGCGG CCGCCACGAT GAAGAAGTAC
    CGCAAGAAGA ACTCGAAAAA CACGCCCAAG GAGGCGGAGA AGGAAATCAA GAGCATCCAG
    GCGTTCGAGG AGGAAAAGCA CAAGCTGGAC CAGTTCTGCG AGCAGAGCCT GAAGAACGCG
    ATGACGCAGG AGCGGCGCCG GTACGGGTTC GTGCTGGAGC GCCAGTGCTC GCTCGCCAAG
    CACTGGATGG CGTACCACCA CTCCGGCCAC ATGATTATCG AAAAGTCGCT CGACAACTGG
    AACGACGTGG CGGCGACGCG CGAATTTCTG CCCCCGAACG TGGAGAACAT GTTCTCCGCC
    AAGCAGGCGC TGCGCGACGT GGAGGACGAG GACGACGACG ACCGGGAGTC GATCGCGTCC
    CAGCTGCGCA AGACGCGCTC GATCGATGCG TCCTGCCTGG ACATGCGCTC GCTGGCCGAC
    GTCGCGAACA GCACGCTCCA GATGCCGCGG GCCAAGTCCG AGTTTAATCT GAACAACAAC
    ACCGGCACGC TGCTGAGTGG ACACCATCAC CACCATCACC ACCACAACCA CCACGCGATG
    ATGATGATGG GTGGCGGTGG CGGTGGCGGG GCCGGCAGTA TGATCGGGGG GGCCACCAAC
    GGCAAACCGG ACATTTCGCA CTGGGAGCGG CCCACGGTGA AGGCGCTGTA CGCGTACCTG
    TCGTCGGGCG AGAACCAGCT CAGCTTTCTC GAGGGCGATC GCATTGCGCT CGTGGGCGAT
    CGGGCCAAGG GCTGGCAGTT TGGGGAGAAT CTGCGCACGC AAAAGTTCGG CTGGTTCCCG
    ATAGCCTACA CCGAGACGGA GCGCGACGAC AAGGAGAGCA TCAGTGAGTG GGTGAAGGCG
    CCCGCGAGCG ACATCGAGCT GGACCACACG CCCGACACGT CGCTCGAGAG TACGCTGGTG
    GACGACAGCC TGTCGAAGAT GACCGGTTCG TACCACGGCG GCGAGGACGC ATCGCCGACG
    CGCATGTTCG GCGACACGAT CCAGTACCGG CAGTCGAAGC AGTTCCGCCG TCTGTCGCGC
    GGCGAGAAGC CGCCGAAGCC GGGCCCGCCG CCCCAGCTGC CGGCGCCCGT ACCGACGCCG
    GTCGTGCCGA ACAGTTACAG CGGTGGCGGC AGCAAGCAGC AGCAGCAGCA GCGTCACGAT
    GGAGCGTCCG GCTCGGGGGG CATTCCCCAG TCGAACAGCT TCTCGTCGGC CGGAGCGCCA
    CCGATGGCGT CGGACAAACG CAAATCGGGC TCGGCTACGA TGAACTTCAG CAAGCCGCCG
    GCTAGCAGCA ATCCGAAGCA AAAACGGGCG AGCAACGGTA TGGCCAGTGC CTCGCTGCAT
    AGCAGCAATG ACAGTGGGTT CTCCAACGAG CCCCAACCGC AACCGGAAGC TGATCTGTAC
    TCGGACGAGG AACCAGTGAA CCGAGTGCCA ATAAGATCGG CCCGCTCGGA GAAGAACCTG
    CTGAACGACC AGACGACGAT GACACGCTCC GGCGGTCGTG ACAGCAGCGT CCCTTCGCCG
    CGCTACCACG ACGAGGACGA TATCTACGGC ACGATTGTGC CACCGCGGCC CCGCGGCCAG
    CAGAGCCAGA TGATGATGCG CCAGGCGAAC AGCTACGGCA ACATTGCCGA AAGCAACTCG
    GGCACGCTCG AGTACGGCTA TCGCACGCGC AACCGCGGGT CCGGCTCGGA GGGCCAGCCC
    AACCAGAGCG ACTCGCAGAA GATCAAGCGC ACCAAATCGT TCTGGAAGTT CTCCAAGTCC
    GAGGACCACA TCCTGGAGGG GATGGCCATG TGGAAGCACA ACGACATCAT ACCAACCGGG
    CGCGAGAAGC GCGAGATGGA GAAGAAGGAG GCCACGCTGA AGCGCAACAT GCGCAAGAAG
    GAGCAGCTGG AGAAGCAGAA GCAGAAGGAG ATGATCGCGG CCAAGGCGGA GGAGGAGCAG
    CAGCAGCAGC AGCAGCAACG TCGCAAGGAT AACTCCCGGG GCAACGCGAA CGGTATGATG
    GACAACGAAA GCAACACCAG CACGCTGGTG CGCGGCAACA ATCGAGAGTC GCGGGACCGC
    GATCGTGACC AGCGGGGGGA GCCAATGCGT GAGCGGCCAC ACAGCATTGC GCTGATGTCG
    GAGCAGGAGA AGTTCCCCAT CACCAAGTCG GACATTGACA AGCGCATCTC GAAGATTGAC
    CAGGAGTTCC ACCAGCAGCA GAAGAAGGCC AGCCGCGGCG GACAGGAGGA GGATCGTGGA
    GGTCGTTCCG GTCGCGATCG CGGCGAGGGA GGAGATCGCA AGCAGTCCAA GGGTGGCAAA
    AACGACACCA ACAACAACAA CAACAACTCG CGCCACAGCT ACGCCGGCGA ACATTTGCAC
    CCCCAGGAGC AGGAGCTGTA CGGGGAGGCA CCGATGGGCG GGGGGAAGCA CGGTGGCAAG
    CAGGACAAGT ATCGCACGAC GGAGCGCGAA ACGAGCAAGA ACCGCAACAA CGATGCGCTG
    AACAAGTACT ACCAGGACCA GACGTTCGAT GACTTTTCGA TCATACCGGC CGACTCGATC
    ATGATGCAGG ACACGAGCTT CTACGACGAC GACGGCATGA TGGACGACAT GATGCTGATG
    AAGACGGTGC GCCGGAAGGA GATCCTGAAG CAGTACTACT CCAGCGGCAC CGACACGGAG
    CGCAACTCGT CCAGCTCGGA CCCGTACGAC TGCATCGTGG TGGACGACCA TCTGGTGGCG
    AAAGGGCGCG ACCGGAAGTC GAACGGTGGC CAGGACGGCA CGATGATGCG CATGATGAAC
    GATCGGCGGG GCGACAAGAA GGATCGCGGC ATGCCCGACG ACAAGATGGC GTTCTCCACC
    TTCCGGGGCG GTGTTTCGGG CGGCAATGGC GGCCGCGGCC AGCTGGACGA TGATGACGAT
    GACACGATGA TGGCATCGAT GACACTGGAC GACGAGCTGA TGGAGGAAGA GCAGCAGCAG
    CAACATCATC ATCAGCAACA GCAGCAGCAG CAACAGTCCC GCCAGCAACA GACCCGCGAT
    CGCCGTTCCA AGAGCTCCAA GGGCAATCTG GCCGAGTCGA AGTACGAATC GGAGCACGAG
    GCGCGCATCA GCGCCAAAAT GCAAAGCAAC GGTCAGCAGC AGCAGCAGCA ACAGAAGCGC
    AAGTCCACCA AATCGATCGC CTCGGACGGG AAGGCGTACG GGCCGTGGTA TGATCTGTGG
    GGCGCCGATA GCTCGGTCCA CAACCAGAAG CTGTAA

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

  • PubMed

    The Anopheles gambiae genome: an update.
    Trends in parasitology20(2)49-52(2004 Feb)
    Mongin E,Louis C,Holt RA,Birney E,Collins FH


    The genome sequence of the malaria mosquito Anopheles gambiae.
    Science (New York, N.Y.)298(5591)129-49(2002 Oct)
    Holt RA,Subramanian GM,Halpern A,Sutton GG,Charlab R,Nusskern DR,Wincker P,Clark AG,Ribeiro JM,Wides R,Salzberg SL,Loftus B,Yandell M,Majoros WH,Rusch DB,Lai Z,Kraft CL,Abril JF,Anthouard V,Arensburger P,Atkinson PW,Baden H,de Berardinis V,Baldwin D,Benes V,Biedler J,Blass C,Bolanos R,Boscus D,Barnstead M,Cai S,Center A,Chaturverdi K,Christophides GK,Chrystal MA,Clamp M,Cravchik A,Curwen V,Dana A,Delcher A,Dew I,Evans CA,Flanigan M,Grundschober-Freimoser A,Friedli L,Gu Z,Guan P,Guigo R,Hillenmeyer ME,Hladun SL,Hogan JR,Hong YS,Hoover J,Jaillon O,Ke Z,Kodira C,Kokoza E,Koutsos A,Letunic I,Levitsky A,Liang Y,Lin JJ,Lobo NF,Lopez JR,Malek JA,McIntosh TC,Meister S,Miller J,Mobarry C,Mongin E,Murphy SD,O'Brochta DA,Pfannkoch C,Qi R,Regier MA,Remington K,Shao H,Sharakhova MV,Sitter CD,Shetty J,Smith TJ,Strong R,Sun J,Thomasova D,Ton LQ,Topalis P,Tu Z,Unger MF,Walenz B,Wang A,Wang J,Wang M,Wang X,Woodford KJ,Wortman JR,Wu M,Yao A,Zdobnov EM,Zhang H,Zhao Q,Zhao S,Zhu SC,Zhimulev I,Coluzzi M,della Torre A,Roth CW,Louis C,Kalush F,Mural RJ,Myers EW,Adams MD,Smith HO,Broder S,Gardner MJ,Fraser CM,Birney E,Bork P,Brey PT,Venter JC,Weissenbach J,Kafatos FC,Collins FH,Hoffman SL