pV1386

111445 Synthetic Yeast Expression

Plasmid Information

Purpose
Solo vector pV1382 + sgScADE2
Depositor
Gerald Fink
Article
Vyas et al mSphere. 2018 Apr 25;3(2). pii: 3/2/e001
Insert
CaCas9/sgScADE2/stop-codon repair
Available Since
Dec. 7, 2018
Availability
Available

Sequence Information

Length
14,965 bp
Topology
circular
Molecule Type
other DNA

Features

CDS 7
Label Gene Product Position Strand
URA3 S. cerevisiae URA3 orotidine-5'-phosphate decarboxylase, r… 406..1210 Fwd
DNA Sequence
ATGTCGAAAGCTACATATAAGGAACGTGCTGCTACTCATCCTAGTCCTGTTGCTGCCAAGCTATTTAATATCATGCACGAAAAGCAAACAAACTTGTGTGCTTCATTGGATGTTCGTACCACCAAGGAATTACTGGAGTTAGTTGAAGCATTAGGTCCCAAAATTTGTTTACTAAAAACACATGTGGATATCTTGACTGATTTTTCCATGGAGGGCACAGTTAAGCCGCTAAAGGCATTATCCGCCAAGTACAATTTTTTACTCTTCGAAGACAGAAAATTTGCTGACATTGGTAATACAGTCAAATTGCAGTACTCTGCGGGTGTATACAGAATAGCAGAATGGGCAGACATTACGAATGCACACGGTGTGGTGGGCCCAGGTATTGTTAGCGGTTTGAAGCAGGCGGCAGAAGAAGTAACAAAGGAACCTAGAGGCCTTTTGATGTTAGCAGAATTGTCATGCAAGGGCTCCCTATCTACTGGAGAATATACTAAGGGTACTGTTGACATTGCGAAGAGCGACAAAGATTTTGTTATCGGCTTTATTGCTCAAAGAGACATGGGTGGAAGAGATGAAGGTTACGATTGGTTGATTATGACACCCGGTGTGGGTTTAGATGACAAGGGTGATGCATTGGGTCAACAGTATAGAACCGTGGATGATGTGGTCTCTACAGGATCTGACATTATTATTGTTGGAAGAGGACTATTTGCAAAGGGAAGGGATGCTAAGGTAGAGGGTGAACGTTACAGAAAAGCAGGCTGGGAAGCATATTTGAGAAGATGCGGCCAGCAAAACTAA
Protein Sequence
MSKATYKERAATHPSPVAAKLFNIMHEKQTNLCASLDVRTTKELLELVEALGPKICLLKTHVDILTDFSMEGTVKPLKALSAKYNFLLFEDRKFADIGNTVKLQYSAGVYRIAEWADITNAHGVVGPGIVSGLKQAAEEVTKEPRGLLMLAELSCKGSLSTGEYTKGTVDIAKSDKDFVIGFIAQRDMGGRDEGYDWLIMTPGVGLDDKGDALGQQYRTVDDVVSTGSDIIIVGRGLFAKGRDAKVEGERYRKAGWEAYLRRCGQQN
Cas9 Cas9 (Csn1) endonuclease from the Strep… 4000..8104 Fwd
DNA Sequence
ATGGATAAAAAGTATAGTATTGGTTTAGATATTGGTACTAACTCTGTGGGTTGGGCAGTTATCACTGACGAATATAAAGTTCCATCAAAGAAATTTAAGGTGTTAGGTAACACTGACAGACACTCAATAAAAAAGAATCTTATCGGTGCTCTTTTGTTCGACTCCGGTGAAACTGCCGAGGCTACACGTTTAAAAAGAACAGCAAGAAGAAGATATACCCGTAGAAAAAATAGAATATGTTATTTACAAGAAATCTTTTCTAATGAAATGGCTAAAGTTGATGATTCCTTTTTCCATAGATTGGAAGAGTCATTTTTGGTTGAAGAAGACAAAAAGCATGAGAGACATCCAATCTTTGGGAATATAGTTGATGAAGTGGCTTACCATGAAAAATATCCTACCATTTATCATTTAAGAAAGAAATTGGTAGATTCAACTGATAAAGCTGACCTTAGATTAATCTATTTAGCACTTGCCCATATGATTAAATTTAGAGGTCATTTTTTGATTGAAGGTGATTTGAACCCAGATAATTCTGACGTGGATAAATTATTTATTCAATTAGTCCAAACCTACAACCAATTATTTGAGGAAAATCCAATTAATGCTAGTGGTGTCGATGCCAAAGCTATATTATCAGCCAGATTATCAAAATCTAGACGTTTGGAAAATTTGATTGCCCAATTGCCAGGAGAAAAAAAGAATGGATTATTTGGAAACTTGATCGCATTATCATTGGGTTTGACACCAAATTTTAAATCTAATTTTGATTTAGCTGAAGATGCTAAATTACAATTATCAAAAGACACCTATGACGACGATTTGGACAATTTACTTGCTCAAATTGGTGATCAATATGCAGATTTGTTCTTAGCTGCTAAAAACTTATCTGATGCTATTTTGTTGTCTGATATTTTGAGAGTGAACACAGAAATAACCAAAGCTCCATTATCAGCATCTATGATCAAACGTTATGATGAACACCATCAGGATTTGACTTTATTGAAAGCTTTGGTGAGACAACAATTGCCAGAGAAGTATAAAGAAATCTTTTTCGATCAATCTAAAAACGGGTATGCAGGTTATATTGATGGGGGTGCCTCCCAAGAGGAATTTTACAAATTTATAAAACCTATTTTAGAAAAGATGGATGGGACTGAGGAACTTTTGGTCAAATTGAACAGAGAAGATTTGTTACGTAAACAGAGAACTTTTGATAATGGTAGTATACCTCACCAAATTCATTTGGGTGAGTTGCATGCAATTTTAAGAAGACAAGAAGATTTTTATCCATTTTTAAAAGATAATAGAGAAAAAATCGAGAAAATTTTAACCTTTAGAATTCCATACTATGTTGGGCCTTTGGCTAGAGGTAATTCAAGATTTGCCTGGATGACACGTAAATCAGAAGAAACTATTACCCCTTGGAATTTTGAAGAGGTTGTTGATAAAGGAGCATCAGCACAGAGTTTTATTGAAAGAATGACCAATTTCGATAAAAACTTACCAAATGAAAAAGTTTTACCAAAACATTCCTTGTTATACGAATATTTTACTGTTTACAATGAACTTACAAAGGTTAAATATGTTACTGAAGGTATGCGTAAGCCAGCCTTTTTATCTGGAGAACAGAAAAAGGCAATAGTTGATTTATTGTTTAAAACAAATAGAAAAGTTACTGTTAAACAATTAAAAGAAGATTACTTTAAGAAAATTGAATGTTTTGATTCAGTTGAAATCAGTGGTGTTGAAGACAGATTTAATGCTAGTTTAGGAACTTACCATGATTTACTTAAAATTATCAAAGATAAAGATTTCTTGGATAACGAAGAAAATGAAGACATTTTAGAAGACATTGTTTTAACCTTAACTTTATTCGAAGATAGAGAGATGATTGAAGAACGTTTGAAGACTTATGCACATTTGTTTGACGATAAAGTGATGAAACAGTTGAAAAGAAGACGTTATACTGGATGGGGTAGATTGTCTCGTAAATTGATCAATGGAATTAGAGATAAACAAAGTGGTAAAACTATCTTGGACTTTTTGAAATCTGACGGATTTGCTAATAGAAATTTCATGCAATTGATCCACGACGATAGTTTGACATTTAAAGAAGACATCCAAAAGGCCCAAGTGAGTGGGCAAGGTGATTCATTACATGAACATATTGCAAATTTAGCCGGATCTCCTGCTATTAAGAAAGGGATATTACAAACTGTTAAAGTTGTGGATGAATTAGTGAAAGTAATGGGAAGACATAAACCTGAAAACATTGTCATTGAGATGGCAAGAGAAAATCAAACTACACAAAAAGGACAGAAAAATAGTAGAGAACGTATGAAAAGAATAGAAGAGGGTATTAAAGAATTGGGTAGTCAAATATTGAAAGAACACCCAGTGGAAAATACCCAGTTGCAAAATGAAAAATTATATCTTTACTACCTTCAAAATGGACGTGATATGTATGTTGATCAGGAATTAGATATAAATAGACTTTCAGATTATGATGTAGATCATATAGTTCCACAATCTTTCTTGAAAGATGATTCCATAGACAATAAAGTATTAACTAGAAGTGATAAAAATAGAGGTAAAAGTGATAATGTCCCAAGTGAGGAAGTCGTCAAAAAGATGAAAAATTACTGGCGTCAACTTTTGAATGCTAAATTAATTACTCAAAGAAAATTTGATAATTTGACTAAAGCAGAAAGAGGTGGGCTTTCTGAATTAGATAAAGCCGGGTTCATTAAAAGACAATTGGTCGAAACTAGACAAATTACTAAACATGTTGCCCAAATTTTAGATTCCCGTATGAACACTAAGTATGACGAAAATGATAAGTTAATACGTGAGGTTAAAGTCATTACTTTAAAATCAAAACTTGTCTCTGATTTCAGAAAGGATTTCCAATTCTATAAAGTTAGAGAAATTAATAATTATCATCATGCTCATGATGCATATTTGAATGCTGTAGTTGGAACTGCTTTAATCAAGAAATACCCTAAATTAGAATCTGAATTTGTATATGGTGATTACAAAGTCTATGATGTTAGAAAGATGATTGCTAAATCAGAACAAGAAATTGGTAAAGCTACAGCTAAATACTTCTTTTACTCTAACATTATGAATTTCTTTAAAACAGAAATTACTTTGGCAAACGGTGAAATTAGAAAAAGACCTCTTATTGAAACAAATGGTGAGACTGGAGAGATAGTTTGGGACAAAGGGCGTGATTTCGCTACTGTTAGAAAAGTTTTATCAATGCCACAAGTTAACATTGTAAAGAAAACAGAGGTTCAAACTGGTGGTTTCTCAAAAGAAAGTATTTTGCCTAAAAGAAATAGTGATAAATTGATTGCCAGAAAAAAGGATTGGGATCCAAAGAAATATGGTGGTTTCGACTCACCAACCGTAGCCTATTCTGTTTTGGTTGTGGCAAAGGTTGAAAAGGGTAAAAGTAAAAAGCTTAAATCAGTAAAAGAACTTTTGGGTATTACAATAATGGAAAGAAGTTCCTTTGAAAAGAACCCTATTGATTTTTTGGAAGCTAAAGGTTATAAGGAAGTAAAGAAGGACTTAATAATCAAATTGCCTAAATATTCTTTATTTGAATTAGAAAATGGGAGAAAAAGAATGTTGGCTTCTGCTGGAGAATTGCAAAAGGGTAATGAATTAGCATTGCCTTCCAAATATGTTAACTTCTTGTATTTAGCTTCACACTATGAAAAGTTGAAAGGGTCACCAGAAGATAACGAGCAAAAACAATTATTTGTTGAACAACACAAACACTACTTAGATGAGATTATAGAACAAATTAGTGAATTCAGTAAAAGAGTGATATTAGCTGATGCAAATTTAGATAAAGTTTTGTCAGCCTATAACAAACATAGAGATAAGCCAATTAGAGAACAAGCAGAAAACATTATTCACTTATTTACCCTTACCAATTTAGGAGCACCTGCTGCTTTCAAGTATTTTGATACAACAATTGATCGTAAAAGATATACCTCAACAAAAGAAGTCTTAGACGCCACCTTAATTCATCAATCAATCACTGGATTGTATGAGACAAGAATTGATTTGTCTCAATTGGGTGGTGAT
Protein Sequence
MDKKYSIGLDIGTNSVGWAVITDEYKVPSKKFKVLGNTDRHSIKKNLIGALLFDSGETAEATRLKRTARRRYTRRKNRICYLQEIFSNEMAKVDDSFFHRLEESFLVEEDKKHERHPIFGNIVDEVAYHEKYPTIYHLRKKLVDSTDKADLRLIYLALAHMIKFRGHFLIEGDLNPDNSDVDKLFIQLVQTYNQLFEENPINASGVDAKAILSARLSKSRRLENLIAQLPGEKKNGLFGNLIALSLGLTPNFKSNFDLAEDAKLQLSKDTYDDDLDNLLAQIGDQYADLFLAAKNLSDAILLSDILRVNTEITKAPLSASMIKRYDEHHQDLTLLKALVRQQLPEKYKEIFFDQSKNGYAGYIDGGASQEEFYKFIKPILEKMDGTEELLVKLNREDLLRKQRTFDNGSIPHQIHLGELHAILRRQEDFYPFLKDNREKIEKILTFRIPYYVGPLARGNSRFAWMTRKSEETITPWNFEEVVDKGASAQSFIERMTNFDKNLPNEKVLPKHSLLYEYFTVYNELTKVKYVTEGMRKPAFLSGEQKKAIVDLLFKTNRKVTVKQLKEDYFKKIECFDSVEISGVEDRFNASLGTYHDLLKIIKDKDFLDNEENEDILEDIVLTLTLFEDREMIEERLKTYAHLFDDKVMKQLKRRRYTGWGRLSRKLINGIRDKQSGKTILDFLKSDGFANRNFMQLIHDDSLTFKEDIQKAQVSGQGDSLHEHIANLAGSPAIKKGILQTVKVVDELVKVMGRHKPENIVIEMARENQTTQKGQKNSRERMKRIEEGIKELGSQILKEHPVENTQLQNEKLYLYYLQNGRDMYVDQELDINRLSDYDVDHIVPQSFLKDDSIDNKVLTRSDKNRGKSDNVPSEEVVKKMKNYWRQLLNAKLITQRKFDNLTKAERGGLSELDKAGFIKRQLVETRQITKHVAQILDSRMNTKYDENDKLIREVKVITLKSKLVSDFRKDFQFYKVREINNYHHAHDAYLNAVVGTALIKKYPKLESEFVYGDYKVYDVRKMIAKSEQEIGKATAKYFFYSNIMNFFKTEITLANGEIRKRPLIETNGETGEIVWDKGRDFATVRKVLSMPQVNIVKKTEVQTGGFSKESILPKRNSDKLIARKKDWDPKKYGGFDSPTVAYSVLVVAKVEKGKSKKLKSVKELLGITIMERSSFEKNPIDFLEAKGYKEVKKDLIIKLPKYSLFELENGRKRMLASAGELQKGNELALPSKYVNFLYLASHYEKLKGSPEDNEQKQLFVEQHKHYLDEIIEQISEFSKRVILADANLDKVLSAYNKHRDKPIREQAENIIHLFTLTNLGAPAAFKYFDTTIDRKRYTSTKEVLDATLIHQSITGLYETRIDLSQLGGD
SV40 NLS nuclear localization signal of SV40 (si… 8116..8137 Fwd
DNA Sequence
CCTAAGAAGAAAAGAAAAGTT
Protein Sequence
PKKKRKV
SV40 NLS nuclear localization signal of SV40 (si… 8140..8161 Fwd
DNA Sequence
CCAAAGAAAAAGCGTAAGGTG
Protein Sequence
PKKKRKV
SV40 NLS nuclear localization signal of SV40 (si… 8164..8185 Fwd
DNA Sequence
CCTAAGAAAAAGAGAAAGGTT
Protein Sequence
PKKKRKV
3xFLAG three tandem FLAG(R) epitope tags, foll… 8185..8251 Fwd
DNA Sequence
GACTACAAAGACCATGACGGTGATTATAAAGATCATGACATCGACTACAAGGATGACGATGACAAG
Protein Sequence
DYKDHDGDYKDHDIDYKDDDDK
AmpR bla beta-lactamase 13381..14242 Rev
DNA Sequence
ATGAGTATTCAACATTTCCGTGTCGCCCTTATTCCCTTTTTTGCGGCATTTTGCCTTCCTGTTTTTGCTCACCCAGAAACGCTGGTGAAAGTAAAAGATGCTGAAGATCAGTTGGGTGCACGAGTGGGTTACATCGAACTGGATCTCAACAGCGGTAAGATCCTTGAGAGTTTTCGCCCCGAAGAACGTTTTCCAATGATGAGCACTTTTAAAGTTCTGCTATGTGGCGCGGTATTATCCCGTATTGACGCCGGGCAAGAGCAACTCGGTCGCCGCATACACTATTCTCAGAATGACTTGGTTGAGTACTCACCAGTCACAGAAAAGCATCTTACGGATGGCATGACAGTAAGAGAATTATGCAGTGCTGCCATAACCATGAGTGATAACACTGCGGCCAACTTACTTCTGACAACGATCGGAGGACCGAAGGAGCTAACCGCTTTTTTGCACAACATGGGGGATCATGTAACTCGCCTTGATCGTTGGGAACCGGAGCTGAATGAAGCCATACCAAACGACGAGCGTGACACCACGATGCCTGTAGCAATGGCAACAACGTTGCGCAAACTATTAACTGGCGAACTACTTACTCTAGCTTCCCGGCAACAATTAATAGACTGGATGGAGGCGGATAAAGTTGCAGGACCACTTCTGCGCTCGGCCCTTCCGGCTGGCTGGTTTATTGCTGATAAATCTGGAGCCGGTGAGCGTGGGTCTCGCGGTATCATTGCAGCACTGGGGCCAGATGGTAAGCCCTCCCGTATCGTAGTTATCTACACGACGGGGAGTCAGGCAACTATGGATGAACGAAATAGACAGATCGCTGAGATAGGTGCCTCACTGATTAAGCATTGGTAA
Protein Sequence
MSIQHFRVALIPFFAAFCLPVFAHPETLVKVKDAEDQLGARVGYIELDLNSGKILESFRPEERFPMMSTFKVLLCGAVLSRIDAGQEQLGRRIHYSQNDLVEYSPVTEKHLTDGMTVRELCSAAITMSDNTAANLLLTTIGGPKELTAFLHNMGDHVTRLDRWEPELNEAIPNDERDTTMPVAMATTLRKLLTGELLTLASRQQLIDWMEADKVAGPLLRSALPAGWFIADKSGAGERGSRGIIAALGPDGKPSRIVVIYTTGSQATMDERNRQIAEIGASLIKHW
promoter 8
Label Gene Product Position Strand
URA3 promoter S. cerevisiae URA3 190..406 Fwd
DNA Sequence
TTCAATTCATCATTTTTTTTTTATTCTTTTTTTTGATTTCGGTTTCCTTGAAATTTTTTTGATTCGGTAATCTCCGAACAGAAGGAAGAACGAAGGAAGGAGCACAGACTTAGATTGGTATATATACGCATATGTAGTGTTGAAGAAACATGAAATTGCCCAGTATTCTTAACCCAACTGCACAGAACAAAAACCTGCAGGAAACGAAGATAAATC
T7 promoter 1962..1981 Fwd
DNA Sequence
TAATACGACTCACTATAGG
TEF1 promoter S. cerevisiae TEF1 3568..3981 Fwd
DNA Sequence
GATCCCCCACACACCATAGCTTCAAAATGTTTCTACTCCTTTTTTACTCTTCCAGATTTTCTCGGACTCCGCGCATCGCCGTACCACTTCAAAACACCCAAGCACAGCATACTAAATTTCCCCTCTTTCTTCCTCTAGGGTGTCGTTAATTACCCGTACTAAAGGTTTGGAAAAGAAAAAAGAGACCGCCTCGTTTCTTTTTCTTCGTCGAAAAAGGCAATAAAAATTTTTATCACGTTTCTTTTTCTTGAAAATTTTTTTTTTGATTTTTTTCTCTTTCGATGACCTCCCATTGATATTTAAGTTAATAAACGGTCTTCAATTTCTCAAGTTTCAGTTTCATTTTTCTTGTTCTATTACAACTTTTTTTACTTCTTGCTCATTAGAAAGAAAGCATAGCAATCTAATCTAAG
TEF promoter 9305..9649 Rev
DNA Sequence
GACATGGAGGCCCAGAATACCCTCCTTGACAGTCTTGACGTGCGCAGCTCAGGGGCATGATGTGACTGTCGCCCGTACATTTAGCCCATACATCCCCATGTATAATCATTTGCATCCATACATTTTGATGGCCGCACGGCGCGAAGCAAAAATTACGGCTCCTCGCTGCAGACCTGCGAGCAGGGAAACGCTCCCCTCACAGACGCGTTGAATTGTCCCCACGCCGCGCCCCTGTAGAGAAATATAAAAGGTTAGGATTTGCCACTGAGGTTCTTCTTTCATATACTTCCTTTTAAAATCTTGCTAGGATACAGTTCTCACATCACATCCGAACATAAACAACC
SNR52 promoter 9696..9965 Fwd
DNA Sequence
TCTTTGAAAAGATAATGTATGATTTTGCTTTCACTCATATTTATACAGAAACTTGATGTTTTCTTTCGAGTATATACAAGGTGATTACATGTACGTTTGAAGTACAACTCTAGATTTTGTAGTGCCCTCTTGGGCTAGCGGTAAAGGTGCGCATTTTTTCACACCCTACAATGTTCTGTTCAAAAGATTTTGGTCAAACGCTGTAGAAGTGAAAGTTGGTGCGCATGTTTCGGCGTTCGAAACTTCTCCGCAGTGAAAGATAAATGATC
T3 promoter 12181..12200 Rev
DNA Sequence
AATTAACCCTCACTAAAGG
lac promoter 12268..12299 Rev
DNA Sequence
TTTACACTTTATGCTTCCGGCTCGTATGTTG
AmpR promoter bla 14242..14347 Rev
DNA Sequence
CGCGGAACCCCTATTTGTTTATTTTTCTAAATACATTCAAATATGTATCCGCTCATGAGACAATAACCCTGATAAATGCTTCAATAATATTGAAAAAGGAAGAGT
protein_bind 2
Label Gene Product Position Strand
lac operator 12244..12261 Fwd
DNA Sequence
TTGTTATCCGCTCACAA
CAP binding site 12313..12335 Fwd
DNA Sequence
ATGAGTGAGCTAACTCACATTA
rep_origin 2
Label Gene Product Position Strand
f1 ori 1340..1796 Rev
DNA Sequence
ACGCGCCCTGTAGCGGCGCATTAAGCGCGGCGGGTGTGGTGGTTACGCGCAGCGTGACCGCTACACTTGCCAGCGCCCTAGCGCCCGCTCCTTTCGCTTTCTTCCCTTCCTTTCTCGCCACGTTCGCCGGCTTTCCCCGTCAAGCTCTAAATCGGGGGCTCCCTTTAGGGTTCCGATTTAGTGCTTTACGGCACCTCGACCCCAAAAAACTTGATTAGGGTGATGGTTCACGTAGTGGGCCATCGCCCTGATAGACGGTTTTTCGCCCTTTGACGTTGGAGTCCACGTTCTTTAATAGTGGACTCTTGTTCCAAACTGGAACAACACTCAACCCTATCTCGGTCTATTCTTTTGATTTATAAGGGATTTTGCCGATTTCGGCCTATTGGTTAAAAAATGAGCTGATTTAACAAAAATTTAACGCGAATTTTAACAAAATATTAACGCTTACAATTT
ori 12622..13211 Rev
DNA Sequence
TTGAGATCCTTTTTTTCTGCGCGTAATCTGCTGCTTGCAAACAAAAAAACCACCGCTACCAGCGGTGGTTTGTTTGCCGGATCAAGAGCTACCAACTCTTTTTCCGAAGGTAACTGGCTTCAGCAGAGCGCAGATACCAAATACTGTTCTTCTAGTGTAGCCGTAGTTAGGCCACCACTTCAAGAACTCTGTAGCACCGCCTACATACCTCGCTCTGCTAATCCTGTTACCAGTGGCTGCTGCCAGTGGCGATAAGTCGTGTCTTACCGGGTTGGACTCAAGACGATAGTTACCGGATAAGGCGCAGCGGTCGGGCTGAACGGGGGGTTCGTGCACACAGCCCAGCTTGGAGCGAACGACCTACACCGAACTGAGATACCTACAGCGTGAGCTATGAGAAAGCGCCACGCTTCCCGAAGGGAGAAAGGCGGACAGGTATCCGGTAAGCGGCAGGGTCGGAACAGGAGAGCGCACGAGGGAGCTTCCAGGGGGAAACGCCTGGTATCTTTATAGTCCTGTCGGGTTTCGCCACCTCTGACTTGAGCGTCGATTTTTGTGATGCTCGTCAGGGGGGCGGAGCCTATGGAAA
terminator 1
Label Gene Product Position Strand
TEF terminator 8507..8705 Rev
DNA Sequence
ACTGACAATAAAAAGATTCTTGTTTTCAAGAACTTGTCATTTGTATAGTTTTTTTATATTGTAGTTGTTCTATTTTAATCAAATGTTAGCGTGATTTATATTTTTTTTCGCCTCGACATCATCTGCCCAGATGCGAAGTTAAGTGCGCAGAAAGTAATATCATGCGTCAATCGTATGTGAATGCTGGTCGCTATACTG