FnCas9

CDS genome_editing

Feature Information

Product
Cas9 endonuclease from the Francisella novicida Type II CRISPR/Cas system (Hirano et al., 2016)
Type
CDS
Category
genome_editing

Protein Sequence

1628 amino acids
NFKILPIAIDLGVKNTGVFSAFYQKGTSLERLDNKNGKVYELSKDSYTLLMNNRTARRHQRRGIDRKQLVKRLFKLIWTEQLNLEWDKDTQQAISFLFNRRGFSFITDGYSPEYLNIVPEQVKAILMDIFDDYNGEDDLDSYLKLATEQESKISEIYNKLMQKILEFKLMKLCTDIKDDKVSTKTLKEITSYEFELLADYLANYSESLKTQKFSYTDKQGNLKELSYYHHDKYNIQEFLKRHATINDRILDTLLTDDLDIWNFNFEKFDFDKNEEKLQNQEDKDHIQAHLHHFVFAVNKIKSEMASGGRHRSQYFQEITNVLDENNHQEGYLKNFCENLHNKKYSNLSVKNLVNLIGNLSNLELKPLRKYFNDKIHAKADHWDEQKFTETYCHWILGEWRVGVKDQDKKDGAKYSYKDLCNELKQKVTKAGLVDFLLELDPCRTIPPYLDNNNRKPPKCQSLILNPKFLDNQYPNWQQYLQELKKLQSIQNYLDSFETDLKVLKSSKDQPYFVEYKSSNQQIASGQRDYKDLDARILQFIFDRVKASDELLLNEIYFQAKKLKQKASSELEKLESSKKLDEVIANSQLSQILKSQHTNGIFEQGTFLHLVCKYYKQRQRARDSRLYIMPEYRYDKKLHKYNNTGRFDDDNQLLTYCNHKPRQKRYQLLNDLAGVLQVSPNFLKDKIGSDDDLFISKWLVEHIRGFKKACEDSLKIQKDNRGLLNHKINIARNTKGKCEKEIFNLICKIEGSEDKKGNYKHGLAYELGVLLFGEPNEASKPEFDRKIKKFNSIYSFAQIQQIAFAERKGNANTCAVCSADNAHRMQQIKITEPVEDNKDKIILSAKAQRLPAIPTRIVDGAVKKMATILAKNIVDDNWQNIKQVLSAKHQLHIPIITESNAFEFEPALADVKGKSLKDRRKKALERISPENIFKDKNNRIKEFAKGISAYSGANLTDGDFDGAKEELDHIIPRSHKKYGTLNDEANLICVTRGDNKNKGNRIFCLRDLADNYKLKQFETTDDLEIEKKIADTIWDANKKDFKFGNYRSFINLTPQEQKAFRHALFLADENPIKQAVIRAINNRNRTFVNGTQRYFAEVLANNIYLRAKKENLNTDKISFDYFGIPTIGNGRGIAEIRQLYEKVDSDIQAYAKGDKPQASYSHLIDAMLAFCIAADEHRNDGSIGLEIDKNYSLYPLDKNTGEVFTKDIFSQIKITDNEFSDKKLVRKKAIEGFNTHRQMTRDGIYAENYLPILIHKELNEVRKGYTWKNSEEIKIFKGKKYDIQQLNNLVYCLKFVDKPISIDIQISTLEELRNILTTNNIAATAEYYYINLKTQKLHEYYIENYNTALGYKKYSKEMEFLRSLAYRSERVKIKSIDDVKQVLDKDSNFIIGKITLPFKKEWQRLYREWQNTTIKDDYEFLKSFFNVKSITKLHKKVRKDFSLPISTNEGKFLVKRKTWDNNFIYQILNDSDSRADGTKPFIPAFDISKNEIVEAIIDSFTSKNIFWLPKNIELQKVDNKNIFAIDTSKWFEVETPSDLRDIGIATIQYKIDNNSRPKVRVKLDYVIDDDSKINYFMNHSLLKSRYPDKVLEILKQSTIIEFESSGFNKTIKEMLGMKLAGIYNETSNN

Found in 3 Plasmids

Plasmid Species Position Strand
pET-His6-FnCas9GFP 130966 Synthetic 5908..10792 Fwd
pET-His6-en1dFnCas9GFP 201950 Synthetic 5919..10803 Fwd
pET-His6-en15dFnCas9GFP 201951 Synthetic 5919..10803 Fwd

DNA Sequence Variants

Sequence context may differ across plasmids due to position and neighboring features.

DNA Sequence (4884 bp)
AATTTTAAGATCCTGCCTATCGCAATCGACCTGGGCGTCAAGAATACTGGCGTGTTTAGTGCTTTTTATCAGAAGGGGACCTCACTGGAGAGACTGGACAATAAGAACGGAAAAGTGTATGAACTGTCCAAGGATTCTTACACTCTGCTGATGAACAATAGGACCGCACGGAGACACCAGAGGCGAGGAATTGACAGGAAACAGCTGGTGAAGCGCCTGTTCAAACTGATCTGGACAGAGCAGCTGAACCTGGAATGGGATAAGGACACTCAGCAGGCCATCAGCTTCCTGTTTAATCGACGGGGATTCTCTTTTATTACTGACGGCTATAGTCCTGAGTACCTGAACATCGTGCCAGAACAGGTCAAGGCAATCCTGATGGACATTTTCGACGATTATAATGGCGAGGACGATCTGGATTCCTACCTGAAACTGGCCACAGAGCAAGAGAGTAAGATCAGCGAAATCTACAACAAGCTGATGCAGAAGATCCTGGAGTTCAAGCTGATGAAACTGTGCACCGACATCAAGGACGATAAAGTGAGTACCAAGACACTGAAAGAGATCACAAGCTACGAGTTCGAACTGCTGGCCGATTATCTGGCTAACTACAGCGAATCCCTGAAGACCCAGAAATTTTCCTACACAGACAAGCAGGGCAATCTGAAAGAGCTGTCTTACTACCACCATGATAAGTACAACATCCAGGAGTTCCTGAAGAGACACGCCACCATCAATGACAGGATTCTGGATACACTGCTGACTGACGATCTGGACATCTGGAACTTCAACTTCGAGAAGTTCGATTTCGACAAGAACGAGGAAAAACTGCAGAATCAGGAAGATAAGGACCACATTCAGGCTCATCTGCACCATTTCGTGTTTGCAGTCAATAAGATCAAAAGCGAGATGGCATCCGGCGGGCGCCATCGAAGCCAGTACTTCCAGGAAATCACCAACGTGCTGGACGAGAACAATCACCAGGAAGGCTACCTGAAAAACTTCTGTGAGAATCTGCATAACAAGAAGTACAGCAATCTGTCCGTGAAGAATCTGGTCAACCTGATTGGAAATCTGTCCAACCTGGAACTGAAGCCCCTGCGCAAATACTTCAACGACAAGATCCACGCTAAAGCAGACCATTGGGATGAGCAGAAGTTTACTGAAACCTATTGCCACTGGATTCTGGGCGAGTGGCGGGTGGGGGTCAAGGATCAGGACAAGAAAGACGGCGCAAAGTATTCTTACAAGGACCTGTGTAACGAGCTGAAGCAGAAAGTGACTAAGGCCGGGCTGGTGGACTTCCTGCTGGAGCTGGACCCCTGCCGAACCATTCCACCTTACCTGGACAACAATAACAGAAAGCCACCCAAATGTCAGAGCCTGATCCTGAATCCCAAGTTTCTGGATAATCAGTATCCTAACTGGCAGCAGTACCTGCAGGAGCTGAAGAAACTGCAGTCAATCCAGAACTACCTGGACAGCTTCGAAACCGATCTGAAGGTGCTGAAAAGCTCCAAGGACCAGCCTTACTTCGTCGAGTACAAGTCTAGTAACCAGCAGATCGCTTCCGGCCAGCGGGATTACAAGGATCTGGACGCAAGAATCCTGCAGTTCATTTTTGACAGGGTGAAGGCCTCTGATGAGCTGCTGCTGAACGAAATCTATTTCCAGGCAAAGAAACTGAAGCAGAAAGCCTCAAGCGAGCTGGAAAAGCTGGAGTCCTCTAAGAAACTGGACGAAGTGATCGCTAACTCTCAGCTGAGTCAGATTCTGAAGTCTCAGCACACAAATGGAATCTTCGAGCAGGGCACTTTTCTGCATCTGGTGTGCAAATACTATAAGCAGCGACAGAGAGCCAGGGACAGCCGCCTGTACATCATGCCTGAATATCGATACGATAAGAAACTGCACAAGTACAACAACACCGGCCGCTTTGACGATGACAACCAGCTGCTGACATATTGTAATCATAAGCCCCGGCAGAAAAGATACCAGCTGCTGAACGACCTGGCAGGAGTGCTGCAGGTCTCTCCTAATTTTCTGAAGGATAAAATCGGGTCCGATGACGATCTGTTCATTTCTAAGTGGCTGGTGGAGCACATCCGGGGCTTTAAGAAGGCCTGCGAAGACAGCCTGAAAATCCAGAAGGATAACAGGGGACTGCTGAATCATAAGATCAACATTGCACGCAATACCAAGGGCAAATGCGAGAAAGAAATCTTCAACCTGATCTGTAAGATTGAGGGGAGCGAAGACAAGAAAGGGAATTATAAGCACGGACTGGCCTACGAGCTGGGAGTGCTGCTGTTCGGAGAGCCAAACGAGGCCAGCAAGCCCGAATTTGATAGGAAAATCAAGAAATTCAATTCAATCTACAGCTTTGCCCAGATCCAGCAGATTGCCTTTGCTGAGAGGAAGGGGAATGCAAACACATGCGCCGTGTGTAGTGCAGACAACGCCCATCGCATGCAGCAGATCAAAATTACTGAGCCAGTCGAAGACAATAAGGATAAAATCATTCTGTCAGCAAAGGCACAGCGACTGCCTGCAATCCCAACCCGAATTGTGGATGGAGCTGTCAAGAAAATGGCTACAATTCTGGCAAAGAATATCGTGGACGATAATTGGCAGAACATTAAGCAGGTCCTGAGCGCAAAACACCAGCTGCATATCCCAATCATTACCGAGTCCAACGCCTTCGAGTTTGAACCCGCTCTGGCAGACGTGAAGGGCAAATCTCTGAAGGATAGAAGGAAGAAAGCCCTGGAGCGAATTAGTCCCGAAAACATCTTCAAGGATAAGAACAACAGAATCAAGGAGTTTGCTAAGGGGATTTCCGCCTACTCTGGAGCTAACCTGACAGATGGGGACTTCGATGGAGCAAAGGAGGAACTGGATCACATCATTCCTCGCAGCCATAAGAAATATGGCACTCTGAACGACGAGGCTAATCTGATTTGCGTGACCCGGGGCGATAATAAGAACAAAGGGAACCGGATCTTCTGTCTGAGAGACCTGGCCGATAATTACAAGCTGAAACAGTTTGAGACCACAGACGATCTGGAGATCGAAAAGAAAATTGCCGACACCATCTGGGATGCTAATAAGAAGGACTTCAAGTTCGGAAACTATCGGAGCTTCATCAATCTGACACCTCAGGAGCAGAAAGCATTCAGACACGCCCTGTTTCTGGCTGATGAAAACCCAATCAAGCAGGCAGTGATCAGAGCCATTAATAACCGCAACCGAACCTTCGTGAATGGCACACAGAGGTATTTTGCTGAGGTCCTGGCAAATAACATCTACCTGCGCGCCAAGAAAGAAAATCTGAACACTGACAAGATCAGCTTCGATTACTTTGGAATCCCTACCATTGGAAACGGCCGAGGGATCGCTGAGATTCGGCAGCTGTATGAAAAGGTGGACAGTGATATCCAGGCCTACGCTAAAGGCGACAAGCCACAGGCCTCTTATAGTCACCTGATTGATGCTATGCTGGCATTCTGCATCGCCGCTGACGAGCATCGGAACGATGGATCTATTGGCCTGGAAATCGACAAAAACTATAGTCTGTACCCTCTGGATAAGAATACTGGCGAGGTGTTCACCAAAGACATCTTTTCACAGATCAAGATTACCGACAACGAGTTCAGCGATAAGAAACTGGTCAGAAAGAAAGCTATTGAAGGGTTTAACACACACAGACAGATGACTAGGGATGGAATCTATGCAGAGAATTACCTGCCTATCCTGATTCATAAGGAGCTGAACGAAGTGAGGAAGGGGTACACATGGAAAAATTCCGAGGAAATCAAAATTTTCAAGGGAAAGAAATACGACATCCAGCAGCTGAATAACCTGGTGTATTGTCTGAAGTTTGTGGACAAACCAATCAGTATTGATATCCAGATTTCAACCCTGGAGGAACTGAGAAACATCCTGACTACCAATAACATTGCAGCCACTGCCGAGTACTATTACATTAATCTGAAAACCCAGAAGCTGCACGAGTATTACATCGAAAATTACAACACAGCCCTGGGGTATAAGAAATACAGCAAGGAGATGGAGTTCCTGAGGTCCCTGGCTTATAGGTCTGAGCGCGTGAAGATCAAAAGTATTGACGATGTCAAGCAGGTCCTGGACAAGGATTCAAACTTCATCATCGGAAAGATCACACTGCCCTTCAAGAAAGAGTGGCAGCGACTGTACCGGGAATGGCAGAACACAACTATCAAAGACGATTATGAGTTTCTGAAGAGCTTCTTTAATGTGAAGTCCATTACTAAACTGCACAAGAAAGTCCGGAAAGACTTCTCTCTGCCCATCAGTACAAACGAGGGCAAGTTTCTGGTGAAGAGAAAAACTTGGGATAATAACTTCATCTACCAGATTCTGAATGACTCAGATAGCAGGGCAGACGGGACTAAACCCTTCATTCCTGCCTTTGATATCAGCAAGAACGAGATTGTGGAAGCCATCATTGACAGTTTCACCTCAAAAAACATCTTTTGGCTGCCAAAGAATATTGAGCTGCAGAAGGTGGACAACAAGAACATCTTCGCCATTGATACCAGCAAGTGGTTTGAGGTCGAAACACCATCCGACCTGCGCGATATCGGCATTGCTACCATTCAGTACAAGATCGACAATAACTCACGCCCCAAGGTGCGAGTCAAACTGGATTACGTGATCGACGATGACAGCAAGATTAACTATTTCATGAATCACTCACTGCTGAAGAGCCGGTATCCCGACAAAGTCCTGGAGATCCTGAAGCAGAGCACAATCATTGAGTTCGAAAGTTCAGGGTTTAACAAAACTATTAAGGAGATGCTGGGAATGAAGCTGGCCGGCATCTACAATGAAACCTCCAATAAC
Protein Sequence (1628 aa)
NFKILPIAIDLGVKNTGVFSAFYQKGTSLERLDNKNGKVYELSKDSYTLLMNNRTARRHQRRGIDRKQLVKRLFKLIWTEQLNLEWDKDTQQAISFLFNRRGFSFITDGYSPEYLNIVPEQVKAILMDIFDDYNGEDDLDSYLKLATEQESKISEIYNKLMQKILEFKLMKLCTDIKDDKVSTKTLKEITSYEFELLADYLANYSESLKTQKFSYTDKQGNLKELSYYHHDKYNIQEFLKRHATINDRILDTLLTDDLDIWNFNFEKFDFDKNEEKLQNQEDKDHIQAHLHHFVFAVNKIKSEMASGGRHRSQYFQEITNVLDENNHQEGYLKNFCENLHNKKYSNLSVKNLVNLIGNLSNLELKPLRKYFNDKIHAKADHWDEQKFTETYCHWILGEWRVGVKDQDKKDGAKYSYKDLCNELKQKVTKAGLVDFLLELDPCRTIPPYLDNNNRKPPKCQSLILNPKFLDNQYPNWQQYLQELKKLQSIQNYLDSFETDLKVLKSSKDQPYFVEYKSSNQQIASGQRDYKDLDARILQFIFDRVKASDELLLNEIYFQAKKLKQKASSELEKLESSKKLDEVIANSQLSQILKSQHTNGIFEQGTFLHLVCKYYKQRQRARDSRLYIMPEYRYDKKLHKYNNTGRFDDDNQLLTYCNHKPRQKRYQLLNDLAGVLQVSPNFLKDKIGSDDDLFISKWLVEHIRGFKKACEDSLKIQKDNRGLLNHKINIARNTKGKCEKEIFNLICKIEGSEDKKGNYKHGLAYELGVLLFGEPNEASKPEFDRKIKKFNSIYSFAQIQQIAFAERKGNANTCAVCSADNAHRMQQIKITEPVEDNKDKIILSAKAQRLPAIPTRIVDGAVKKMATILAKNIVDDNWQNIKQVLSAKHQLHIPIITESNAFEFEPALADVKGKSLKDRRKKALERISPENIFKDKNNRIKEFAKGISAYSGANLTDGDFDGAKEELDHIIPRSHKKYGTLNDEANLICVTRGDNKNKGNRIFCLRDLADNYKLKQFETTDDLEIEKKIADTIWDANKKDFKFGNYRSFINLTPQEQKAFRHALFLADENPIKQAVIRAINNRNRTFVNGTQRYFAEVLANNIYLRAKKENLNTDKISFDYFGIPTIGNGRGIAEIRQLYEKVDSDIQAYAKGDKPQASYSHLIDAMLAFCIAADEHRNDGSIGLEIDKNYSLYPLDKNTGEVFTKDIFSQIKITDNEFSDKKLVRKKAIEGFNTHRQMTRDGIYAENYLPILIHKELNEVRKGYTWKNSEEIKIFKGKKYDIQQLNNLVYCLKFVDKPISIDIQISTLEELRNILTTNNIAATAEYYYINLKTQKLHEYYIENYNTALGYKKYSKEMEFLRSLAYRSERVKIKSIDDVKQVLDKDSNFIIGKITLPFKKEWQRLYREWQNTTIKDDYEFLKSFFNVKSITKLHKKVRKDFSLPISTNEGKFLVKRKTWDNNFIYQILNDSDSRADGTKPFIPAFDISKNEIVEAIIDSFTSKNIFWLPKNIELQKVDNKNIFAIDTSKWFEVETPSDLRDIGIATIQYKIDNNSRPKVRVKLDYVIDDDSKINYFMNHSLLKSRYPDKVLEILKQSTIIEFESSGFNKTIKEMLGMKLAGIYNETSNN
DNA Sequence (4884 bp)
AATTTTAAGATCCTGCCTATCGCAATCGCCCTGGGCGTCAAGAATACTGGCGTGTTTAGTGCTTTTTATCAGAAGGGGACCTCACTGGAGAGACTGGACAATAAGAACGGAAAAGTGTATGAACTGTCCAAGGATTCTTACACTCTGCTGATGAACAATAGGACCGCACGGAGACACCAGAGGCGAGGAATTGACAGGAAACAGCTGGTGAAGCGCCTGTTCAAACTGATCTGGACAGAGCAGCTGAACCTGGAATGGGATAAGGACACTCAGCAGGCCATCAGCTTCCTGTTTAATCGACGGGGATTCTCTTTTATTACTGACGGCTATAGTCCTGAGTACCTGAACATCGTGCCAGAACAGGTCAAGGCAATCCTGATGGACATTTTCGACGATTATAATGGCGAGGACGATCTGGATTCCTACCTGAAACTGGCCACAGAGCAAGAGAGTAAGATCAGCGAAATCTACAACAAGCTGATGCAGAAGATCCTGGAGTTCAAGCTGATGAAACTGTGCACCGACATCAAGGACGATAAAGTGAGTACCAAGACACTGAAAGAGATCACAAGCTACGAGTTCGAACTGCTGGCCGATTATCTGGCTAACTACAGCGAATCCCTGAAGACCCAGAAATTTTCCTACACAGACAAGCAGGGCAATCTGAAAGAGCTGTCTTACTACCACCATGATAAGTACAACATCCAGGAGTTCCTGAAGAGACACGCCACCATCAATGACAGGATTCTGGATACACTGCTGACTGACGATCTGGACATCTGGAACTTCAACTTCGAGAAGTTCGATTTCGACAAGAACGAGGAAAAACTGCAGAATCAGGAAGATAAGGACCACATTCAGGCTCATCTGCACCATTTCGTGTTTGCAGTCAATAAGATCAAAAGCGAGATGGCATCCGGCGGGCGCCATCGAAGCCAGTACTTCCAGGAAATCACCAACGTGCTGGACGAGAACAATCACCAGGAAGGCTACCTGAAAAACTTCTGTGAGAATCTGCATAACAAGAAGTACAGCAATCTGTCCGTGAAGAATCTGGTCAACCTGATTGGAAATCTGTCCAACCTGGAACTGAAGCCCCTGCGCAAATACTTCAACGACAAGATCCACGCTAAAGCAGACCATTGGGATGAGCAGAAGTTTACTGAAACCTATTGCCACTGGATTCTGGGCGAGTGGCGGGTGGGGGTCAAGGATCAGGACAAGAAAGACGGCGCAAAGTATTCTTACAAGGACCTGTGTAACGAGCTGAAGCAGAAAGTGACTAAGGCCGGGCTGGTGGACTTCCTGCTGGAGCTGGACCCCTGCCGAACCATTCCACCTTACCTGGACAACAATAACAGAAAGCCACCCAAATGTCAGAGCCTGATCCTGAATCCCAAGTTTCTGGATAATCAGTATCCTAACTGGCAGCAGTACCTGCAGGAGCTGAAGAAACTGCAGTCAATCCAGAACTACCTGGACAGCTTCGAAACCGATCTGAAGGTGCTGAAAAGCTCCAAGGACCAGCCTTACTTCGTCGAGTACAAGTCTAGTAACCAGCAGATCGCTTCCGGCCAGCGGGATTACAAGGATCTGGACGCAAGAATCCTGCAGTTCATTTTTGACAGGGTGAAGGCCTCTGATGAGCTGCTGCTGAACGAAATCTATTTCCAGGCAAAGAAACTGAAGCAGAAAGCCTCAAGCGAGCTGGAAAAGCTGGAGTCCTCTAAGAAACTGGACGAAGTGATCGCTAACTCTCAGCTGAGTCAGATTCTGAAGTCTCAGCACACAAATGGAATCTTCGAGCAGGGCACTTTTCTGCATCTGGTGTGCAAATACTATAAGCAGCGACAGAGAGCCAGGGACAGCCGCCTGTACATCATGCCTGAATATCGATACGATAAGAAACTGCACAAGTACAACAACACCGGCCGCTTTGACGATGACAACCAGCTGCTGACATATTGTAATCATAAGCCCCGGCAGAAAAGATACCAGCTGCTGAACGACCTGGCAGGAGTGCTGCAGGTCTCTCCTAATTTTCTGAAGGATAAAATCGGGTCCGATGACGATCTGTTCATTTCTAAGTGGCTGGTGGAGCACATCCGGGGCTTTAAGAAGGCCTGCGAAGACAGCCTGAAAATCCAGAAGGATAACAGGGGACTGCTGAATCATAAGATCAACATTGCACGCAATACCAAGGGCAAATGCGAGAAAGAAATCTTCAACCTGATCTGTAAGATTGAGGGGAGCGAAGACAAGAAAGGGAATTATAAGCACGGACTGGCCTACGAGCTGGGAGTGCTGCTGTTCGGAGAGCCAAACGAGGCCAGCAAGCCCGAATTTGATAGGAAAATCAAGAAATTCAATTCAATCTACAGCTTTGCCCAGATCCAGCAGATTGCCTTTGCTGAGAGGAAGGGGAATGCAAACACATGCGCCGTGTGTAGTGCAGACAACGCCCATCGCATGCAGCAGATCAAAATTACTGAGCCAGTCGAAGACAATAAGGATAAAATCATTCTGTCAGCAAAGGCACAGCGACTGCCTGCAATCCCAACCCGAATTGTGGATGGAGCTGTCAAGAAAATGGCTACAATTCTGGCAAAGAATATCGTGGACGATAATTGGCAGAACATTAAGCAGGTCCTGAGCGCAAAACACCAGCTGCATATCCCAATCATTACCGAGTCCAACGCCTTCGAGTTTGAACCCGCTCTGGCAGACGTGAAGGGCAAATCTCTGAAGGATAGAAGGAAGAAAGCCCTGGAGCGAATTAGTCCCGAAAACATCTTCAAGGATAAGAACAACAGAATCAAGGAGTTTGCTAAGGGGATTTCCGCCTACTCTGGAGCTAACCTGACAGATGGGGACTTCGATGGAGCAAAGGAGGAACTGGATGCCATCATTCCTCGCAGCCATAAGAAATATGGCACTCTGAACGACGAGGCTAATCTGATTTGCGTGACCCGGGGCGATAATAAGAACAAAGGGAACCGGATCTTCTGTCTGAGAGACCTGGCCGATAATTACAAGCTGAAACAGTTTGAGACCACAGACGATCTGGAGATCGAAAAGAAAATTGCCGACACCATCTGGGATGCTAATAAGAAGGACTTCAAGTTCGGAAACTATCGGAGCTTCATCAATCTGACACCTCAGGAGCAGAAAGCATTCAGACACGCCCTGTTTCTGGCTGATGAAAACCCAATCAAGCAGGCAGTGATCAGAGCCATTAATAACCGCAACCGAACCTTCGTGAATGGCACACAGAGGTATTTTGCTGAGGTCCTGGCAAATAACATCTACCTGCGCGCCAAGAAAGAAAATCTGAACACTGACAAGATCAGCTTCGATTACTTTGGAATCCCTACCATTGGAAACGGCCGAGGGATCGCTGAGATTCGGCAGCTGTATGAAAAGGTGGACAGTGATATCCAGGCCTACGCTAAAGGCGACAAGCCACAGGCCTCTTATAGTCACCTGATTGATGCTATGCTGGCATTCTGCATCGCCGCTGACGAGCATCGGAACGATGGATCTATTGGCCTGGAAATCGACAAAAACTATAGTCTGTACCCTCTGGATAAGAATACTGGCGAGGTGTTCACCAAAGACATCTTTTCACAGATCAAGATTACCGACAACGAGTTCAGCGATAAGAAACTGGTCAGAAAGAAAGCTATTGAAGGGTTTAACACACACAGACAGATGACTAGGGATGGAATCTATGCAGAGAATTACCTGCCTATCCTGATTCATAAGGAGCTGAACGAAGTGAGGAAGGGGTACACATGGAAAAATTCCGAGGAAATCAAAATTTTCAAGGGAAAGAAATACGACATCCAGCAGCTGAATAACCTGGTGTATTGTCTGAAGTTTGTGGACAAACCAATCAGTATTGATATCCAGATTTCAACCCTGGAGGAACTGAGAAACATCCTGACTACCAATAACATTGCAGCCACTGCCGAGTACTATTACATTAATCTGAAAACCCAGAAGCTGCACGAGTATTACATCGAAAATTACAACACAGCCCTGGGGTATAAGAAATACAGCAAGGAGATGGAGTTCCTGAGGTCCCTGGCTTATAGGTCTAGGCGCGTGAAGATCAAAAGTATTGACGATGTCAAGCAGGTCCTGGACAAGGATTCAAACTTCATCATCGGAAAGATCACACTGCCCTTCAAGAAAGAGTGGCAGCGACTGTACCGGGAATGGCAGAACACAACTATCAAAGACGATTATGAGTTTCTGAAGAGCTTCTTTAATGTGAAGTCCATTACTAAACTGCACAAGAAAGTCCGGAAAGACTTCTCTCTGCCCATCAGTACAAACGAGGGCAAGTTTCTGGTGAAGAGAAAAACTTGGGATAATAACTTCATCTACCAGATTCTGAATGACTCAGATAGCAGGGCAGACGGGACTAAACCCTTCATTCCTGCCTTTGATATCAGCAAGAACGAGATTGTGGAAGCCATCATTGACAGTTTCACCTCAAAAAACATCTTTTGGCTGCCAAAGAATATTGAGCTGCAGAAGGTGGACAACAAGAACATCTTCGCCATTGATACCAGCAAGTGGTTTGAGGTCGAAACACCATCCGACCTGCGCGATATCGGCATTGCTACCATTCAGTACAAGATCGACAATAACTCACGCCCCAAGGTGCGAGTCAAACTGGATTACGTGATCGACGATGACAGCAAGATTAACTATTTCATGAATCACTCACTGCTGAAGAGCCGGTATCCCGACAAAGTCCTGGAGATCCTGAAGCAGAGCACAATCATTGAGTTCGAAAGTTCAGGGTTTAACAAAACTATTAAGGAGATGCTGGGAATGAAGCTGGCCGGCATCTACAATGAAACCTCCAATAAC
Protein Sequence (1628 aa)
NFKILPIAIALGVKNTGVFSAFYQKGTSLERLDNKNGKVYELSKDSYTLLMNNRTARRHQRRGIDRKQLVKRLFKLIWTEQLNLEWDKDTQQAISFLFNRRGFSFITDGYSPEYLNIVPEQVKAILMDIFDDYNGEDDLDSYLKLATEQESKISEIYNKLMQKILEFKLMKLCTDIKDDKVSTKTLKEITSYEFELLADYLANYSESLKTQKFSYTDKQGNLKELSYYHHDKYNIQEFLKRHATINDRILDTLLTDDLDIWNFNFEKFDFDKNEEKLQNQEDKDHIQAHLHHFVFAVNKIKSEMASGGRHRSQYFQEITNVLDENNHQEGYLKNFCENLHNKKYSNLSVKNLVNLIGNLSNLELKPLRKYFNDKIHAKADHWDEQKFTETYCHWILGEWRVGVKDQDKKDGAKYSYKDLCNELKQKVTKAGLVDFLLELDPCRTIPPYLDNNNRKPPKCQSLILNPKFLDNQYPNWQQYLQELKKLQSIQNYLDSFETDLKVLKSSKDQPYFVEYKSSNQQIASGQRDYKDLDARILQFIFDRVKASDELLLNEIYFQAKKLKQKASSELEKLESSKKLDEVIANSQLSQILKSQHTNGIFEQGTFLHLVCKYYKQRQRARDSRLYIMPEYRYDKKLHKYNNTGRFDDDNQLLTYCNHKPRQKRYQLLNDLAGVLQVSPNFLKDKIGSDDDLFISKWLVEHIRGFKKACEDSLKIQKDNRGLLNHKINIARNTKGKCEKEIFNLICKIEGSEDKKGNYKHGLAYELGVLLFGEPNEASKPEFDRKIKKFNSIYSFAQIQQIAFAERKGNANTCAVCSADNAHRMQQIKITEPVEDNKDKIILSAKAQRLPAIPTRIVDGAVKKMATILAKNIVDDNWQNIKQVLSAKHQLHIPIITESNAFEFEPALADVKGKSLKDRRKKALERISPENIFKDKNNRIKEFAKGISAYSGANLTDGDFDGAKEELDAIIPRSHKKYGTLNDEANLICVTRGDNKNKGNRIFCLRDLADNYKLKQFETTDDLEIEKKIADTIWDANKKDFKFGNYRSFINLTPQEQKAFRHALFLADENPIKQAVIRAINNRNRTFVNGTQRYFAEVLANNIYLRAKKENLNTDKISFDYFGIPTIGNGRGIAEIRQLYEKVDSDIQAYAKGDKPQASYSHLIDAMLAFCIAADEHRNDGSIGLEIDKNYSLYPLDKNTGEVFTKDIFSQIKITDNEFSDKKLVRKKAIEGFNTHRQMTRDGIYAENYLPILIHKELNEVRKGYTWKNSEEIKIFKGKKYDIQQLNNLVYCLKFVDKPISIDIQISTLEELRNILTTNNIAATAEYYYINLKTQKLHEYYIENYNTALGYKKYSKEMEFLRSLAYRSRRVKIKSIDDVKQVLDKDSNFIIGKITLPFKKEWQRLYREWQNTTIKDDYEFLKSFFNVKSITKLHKKVRKDFSLPISTNEGKFLVKRKTWDNNFIYQILNDSDSRADGTKPFIPAFDISKNEIVEAIIDSFTSKNIFWLPKNIELQKVDNKNIFAIDTSKWFEVETPSDLRDIGIATIQYKIDNNSRPKVRVKLDYVIDDDSKINYFMNHSLLKSRYPDKVLEILKQSTIIEFESSGFNKTIKEMLGMKLAGIYNETSNN
DNA Sequence (4884 bp)
AATTTTAAGATCCTGCCTATCGCAATCGCCCTGGGCGTCAAGAATACTGGCGTGTTTAGTGCTTTTTATCAGAAGGGGACCTCACTGGAGAGACTGGACAATAAGAACGGAAAAGTGTATGAACTGTCCAAGGATTCTTACACTCTGCTGATGAACAATAGGACCGCACGGAGACACCAGAGGCGAGGAATTGACAGGAAACAGCTGGTGAAGCGCCTGTTCAAACTGATCTGGACAGAGCAGCTGAACCTGGAATGGGATAAGGACACTCAGCAGGCCATCAGCTTCCTGTTTAATCGACGGGGATTCTCTTTTATTACTGACGGCTATAGTCCTGAGTACCTGAACATCGTGCCAGAACAGGTCAAGGCAATCCTGATGGACATTTTCGACGATTATAATGGCGAGGACGATCTGGATTCCTACCTGAAACTGGCCACAGAGCAAGAGAGTAAGATCAGCGAAATCTACAACAAGCTGATGCAGAAGATCCTGGAGTTCAAGCTGATGAAACTGTGCACCGACATCAAGGACGATAAAGTGAGTACCAAGACACTGAAAGAGATCACAAGCTACGAGTTCGAACTGCTGGCCGATTATCTGGCTAACTACAGCGAATCCCTGAAGACCCAGAAATTTTCCTACACAGACAAGCAGGGCAATCTGAAAGAGCTGTCTTACTACCACCATGATAAGTACAACATCCAGGAGTTCCTGAAGAGACACGCCACCATCAATGACAGGATTCTGGATACACTGCTGACTGACGATCTGGACATCTGGAACTTCAACTTCGAGAAGTTCGATTTCGACAAGAACGAGGAAAAACTGCAGAATCAGGAAGATAAGGACCACATTCAGGCTCATCTGCACCATTTCGTGTTTGCAGTCAATAAGATCAAAAGCGAGATGGCATCCGGCGGGCGCCATCGAAGCCAGTACTTCCAGGAAATCACCAACGTGCTGGACGAGAACAATCACCAGGAAGGCTACCTGAAAAACTTCTGTGAGAATCTGCATAACAAGAAGTACAGCAATCTGTCCGTGAAGAATCTGGTCAACCTGATTGGAAATCTGTCCAACCTGGAACTGAAGCCCCTGCGCAAATACTTCAACGACAAGATCCACGCTAAAGCAGACCATTGGGATGAGCAGAAGTTTACTGAAACCTATTGCCACTGGATTCTGGGCGAGTGGCGGGTGGGGGTCAAGGATCAGGACAAGAAAGACGGCGCAAAGTATTCTTACAAGGACCTGTGTAACGAGCTGAAGCAGAAAGTGACTAAGGCCGGGCTGGTGGACTTCCTGCTGGAGCTGGACCCCTGCCGAACCATTCCACCTTACCTGGACAACAATAACAGAAAGCCACCCAAATGTCAGAGCCTGATCCTGAATCCCAAGTTTCTGGATAATCAGTATCCTAACTGGCAGCAGTACCTGCAGGAGCTGAAGAAACTGCAGTCAATCCAGAACTACCTGGACAGCTTCGAAACCGATCTGAAGGTGCTGAAAAGCTCCAAGGACCAGCCTTACTTCGTCGAGTACAAGTCTAGTAACCAGCAGATCGCTTCCGGCCAGCGGGATTACAAGGATCTGGACGCAAGAATCCTGCAGTTCATTTTTGACAGGGTGAAGGCCTCTGATGAGCTGCTGCTGAACGAAATCTATTTCCAGGCAAAGAAACTGAAGCAGAAAGCCTCAAGCGAGCTGGAAAAGCTGGAGTCCTCTAAGAAACTGGACGAAGTGATCGCTAACTCTCAGCTGAGTCAGATTCTGAAGTCTCAGCACACAAATGGAATCTTCGAGCAGGGCACTTTTCTGCATCTGGTGTGCAAATACTATAAGCAGCGACAGAGAGCCAGGGACAGCCGCCTGTACATCATGCCTGAATATCGATACGATAAGAAACTGCACAAGTACAACAACACCGGCCGCTTTGACGATGACAACCAGCTGCTGACATATTGTAATCATAAGCCCCGGCAGAAAAGATACCAGCTGCTGAACGACCTGGCAGGAGTGCTGCAGGTCTCTCCTAATTTTCTGAAGGATAAAATCGGGTCCGATGACGATCTGTTCATTTCTAAGTGGCTGGTGGAGCACATCCGGGGCTTTAAGAAGGCCTGCGAAGACAGCCTGAAAATCCAGAAGGATAACAGGGGACTGCTGAATCATAAGATCAACATTGCACGCAATACCAAGGGCAAATGCGAGAAAGAAATCTTCAACCTGATCTGTAAGATTGAGGGGAGCGAAGACAAGAAAGGGAATTATAAGCACGGACTGGCCTACGAGCTGGGAGTGCTGCTGTTCGGAGAGCCAAACGAGGCCAGCAAGCCCGAATTTGATAGGAAAATCAAGAAATTCAATTCAATCTACAGCTTTGCCCAGATCCAGCAGATTGCCTTTGCTGAGAGGAAGGGGAATGCAAACACATGCGCCGTGTGTAGTGCAGACAACGCCCATCGCATGCAGCAGATCAAAATTACTGAGCCAGTCGAAGACAATAAGGATAAAATCATTCTGTCAGCAAAGGCACAGCGACTGCCTGCAATCCCAACCCGAATTGTGGATGGAGCTGTCAAGAAAATGGCTACAATTCTGGCAAAGAATATCGTGGACGATAATTGGCAGAACATTAAGCAGGTCCTGAGCGCAAAACACCAGCTGCATATCCCAATCATTACCGAGTCCAACGCCTTCGAGTTTGAACCCGCTCTGGCAGACGTGAAGGGCAAATCTCTGAAGGATAGAAGGAAGAAAGCCCTGGAGCGAATTAGTCCCGAAAACATCTTCAAGGATAAGAACAACAGAATCAAGGAGTTTGCTAAGGGGATTTCCGCCTACTCTGGAGCTAACCTGACAGATGGGGACTTCGATGGAGCAAAGGAGGAACTGGATGCCATCATTCCTCGCAGCCATAAGAAATATGGCACTCTGAACGACGAGGCTAATCTGATTTGCGTGACCCGGGGCGATAATAAGAACAAAGGGAACCGGATCTTCTGTCTGAGAGACCTGGCCGATAATTACAAGCTGAAACAGTTTGAGACCACAGACGATCTGGAGATCGAAAAGAAAATTGCCGACACCATCTGGGATGCTAATAAGAAGGACTTCAAGTTCGGAAACTATCGGAGCTTCATCAATCTGACACCTCAGGAGCAGAAAGCATTCAGACACGCCCTGTTTCTGGCTGATGAAAACCCAATCAAGCAGGCAGTGATCAGAGCCATTAATAACCGCAACCGAACCTTCGTGAATGGCACACAGAGGTATTTTGCTGAGGTCCTGGCAAATAACATCTACCTGCGCGCCAAGAAAGAAAATCTGAACACTGACAAGATCAGCTTCGATTACTTTGGAATCCCTACCATTGGAAACGGCCGAGGGATCGCTGAGATTCGGCAGCTGTATGAAAAGGTGGACAGTGATATCCAGGCCTACGCTAAAGGCGACAAGCCACAGGCCTCTTATAGTCACCTGATTGATGCTATGCTGGCATTCTGCATCGCCGCTGACGAGCATCGGAACGATGGATCTATTGGCCTGGAAATCGACAAAAACTATAGTCTGTACCCTCTGGATAAGAATACTGGCGAGGTGTTCACCAAAGACATCTTTTCACAGATCAAGATTACCGACAACGAGTTCAGCGATAAGAAACTGGTCAGAAAGAAAGCTATTGAAGGGTTTAACACACACAGACAGATGACTAGGGATGGAATCTATGCAGAGAATTACCTGCCTATCCTGATTCATAAGGAGCTGAACGAAGTGAGGAAGGGGTACACATGGAAAAATTCCGAGGAAATCAAAATTTTCAAGGGAAAGAAATACGACATCCAGCAGCTGAATAACCTGGTGTATTGTCTGAAGTTTGTGGACAAACCAATCAGTATTGATATCCAGATTTCAACCCTGGAGGAACTGAGAAACATCCTGACTACCAATAACATTGCAGCCACTGCCGAGTACTATTACATTAATCTGAAAACCCAGAAGCTGCACGAGTATTACATCGAAAATTACAACACAGCCCTGGGGTATAAGAAATACAGCAAGGAGATGGAGTTCCTGAGGTCCCTGGCTTATAGGTCTGAGCGCGTGAAGATCAAAAGTATTGACGATGTCAAGCAGGTCCTGGACAAGGATTCAAACTTCATCATCGGAAAGATCACACTGCCCTTCAAGAAAGAGTGGCAGCGACTGTACCGGGAATGGCAGAACACAACTATCAAAGACGATTATGAGTTTCTGAAGAGCTTCTTTAATGTGAAGTCCATTACTAAACTGCACAAGAAAGTCCGGAAAGACTTCTCTCTGCCCATCAGTACAAACGAGGGCAAGTTTCTGGTGAAGAGAAAAACTTGGGATAATAACTTCATCTACCAGATTCTGAATGACTCAGATAGCAGGGCAGACGGGACTAAACCCTTCATTCCTGCCTTTGATATCAGCAAGAACGAGATTGTGGAAGCCATCATTGACAGTTTCACCTCAAAAAACATCTTTTGGCTGCCAAAGAATATTGAGCTGCAGAAGGTGGACAACAAGAACATCTTCGCCATTGATACCAGCAAGTGGTTTGAGGTCGAAACACCATCCGACCTGCGCGATATCGGCATTGCTACCATTCAGTACAAGATCGACAATAACTCACGCCCCAAGGTGCGAGTCAAACTGGATTACGTGATCGACGATGACAGCAAGATTAACTATTTCATGAATCACTCACTGCTGAAGAGCCGGTATCCCGACAAAGTCCTGGAGATCCTGAAGCAGAGCACAATCATTGAGTTCCACAGTTCAGGGTTTAACAAAACTATTAAGGAGATGCTGGGAATGAAGCTGGCCGGCATCTACAATGAAACCTCCAATAAC
Protein Sequence (1628 aa)
NFKILPIAIALGVKNTGVFSAFYQKGTSLERLDNKNGKVYELSKDSYTLLMNNRTARRHQRRGIDRKQLVKRLFKLIWTEQLNLEWDKDTQQAISFLFNRRGFSFITDGYSPEYLNIVPEQVKAILMDIFDDYNGEDDLDSYLKLATEQESKISEIYNKLMQKILEFKLMKLCTDIKDDKVSTKTLKEITSYEFELLADYLANYSESLKTQKFSYTDKQGNLKELSYYHHDKYNIQEFLKRHATINDRILDTLLTDDLDIWNFNFEKFDFDKNEEKLQNQEDKDHIQAHLHHFVFAVNKIKSEMASGGRHRSQYFQEITNVLDENNHQEGYLKNFCENLHNKKYSNLSVKNLVNLIGNLSNLELKPLRKYFNDKIHAKADHWDEQKFTETYCHWILGEWRVGVKDQDKKDGAKYSYKDLCNELKQKVTKAGLVDFLLELDPCRTIPPYLDNNNRKPPKCQSLILNPKFLDNQYPNWQQYLQELKKLQSIQNYLDSFETDLKVLKSSKDQPYFVEYKSSNQQIASGQRDYKDLDARILQFIFDRVKASDELLLNEIYFQAKKLKQKASSELEKLESSKKLDEVIANSQLSQILKSQHTNGIFEQGTFLHLVCKYYKQRQRARDSRLYIMPEYRYDKKLHKYNNTGRFDDDNQLLTYCNHKPRQKRYQLLNDLAGVLQVSPNFLKDKIGSDDDLFISKWLVEHIRGFKKACEDSLKIQKDNRGLLNHKINIARNTKGKCEKEIFNLICKIEGSEDKKGNYKHGLAYELGVLLFGEPNEASKPEFDRKIKKFNSIYSFAQIQQIAFAERKGNANTCAVCSADNAHRMQQIKITEPVEDNKDKIILSAKAQRLPAIPTRIVDGAVKKMATILAKNIVDDNWQNIKQVLSAKHQLHIPIITESNAFEFEPALADVKGKSLKDRRKKALERISPENIFKDKNNRIKEFAKGISAYSGANLTDGDFDGAKEELDAIIPRSHKKYGTLNDEANLICVTRGDNKNKGNRIFCLRDLADNYKLKQFETTDDLEIEKKIADTIWDANKKDFKFGNYRSFINLTPQEQKAFRHALFLADENPIKQAVIRAINNRNRTFVNGTQRYFAEVLANNIYLRAKKENLNTDKISFDYFGIPTIGNGRGIAEIRQLYEKVDSDIQAYAKGDKPQASYSHLIDAMLAFCIAADEHRNDGSIGLEIDKNYSLYPLDKNTGEVFTKDIFSQIKITDNEFSDKKLVRKKAIEGFNTHRQMTRDGIYAENYLPILIHKELNEVRKGYTWKNSEEIKIFKGKKYDIQQLNNLVYCLKFVDKPISIDIQISTLEELRNILTTNNIAATAEYYYINLKTQKLHEYYIENYNTALGYKKYSKEMEFLRSLAYRSERVKIKSIDDVKQVLDKDSNFIIGKITLPFKKEWQRLYREWQNTTIKDDYEFLKSFFNVKSITKLHKKVRKDFSLPISTNEGKFLVKRKTWDNNFIYQILNDSDSRADGTKPFIPAFDISKNEIVEAIIDSFTSKNIFWLPKNIELQKVDNKNIFAIDTSKWFEVETPSDLRDIGIATIQYKIDNNSRPKVRVKLDYVIDDDSKINYFMNHSLLKSRYPDKVLEILKQSTIIEFHSSGFNKTIKEMLGMKLAGIYNETSNN