F. gonidiaformans 25563_FusoPortal_Gene_173

InterPro predicted function: "DNA-directed RNA polymerase
InterPro Accessions: IPR007120;IPR007645;IPR007644;IPR019462;IPR007642;IPR007641

Link to full Interpro analysis


Previous Gene Next Gene

Return to complete Genome Map of F. gonidiaformans 25563

FASTA file of all annotated F. gonidiaformans 25563 genes - Amino Acids | FASTA file of all annotated F. gonidiaformans 25563 genes - DNA

Additional Links

Hidden Markov Model (HMMScan) for domains: 25563_FusoPortal_Gene_173.out

Amino Acids: 1184

ORF FASTA file - Amino Acids

MGKLVERLNFGKIKERGIMPHFLEFQLNSYEDFLQMKVAPNNRENKGLESAFREIFPIES SSNGEIRLEYVSYELHAAEPPLNDELECKKRGKTYSDSLKVRLRLFNKKSGNEIQESLVY FGEVPKMTERGTFIINGAERVVVSQLHRSPGVSFNKEVNIQTGKDLFSGKIIPYKGTWLE FETDKNDFLSVKIDRKKKVLATVFLKAVDFFKDNTEIKEHFFEVKELDLTEFYEKYANDT EELLSVVRTKIESSFLKEAIYDEETGEIIAEEDAVISEALISKIIENKIAVLSYWEVKPE DLLIANTIANDTTKNSDEAVTEVFKKLRPGDLVTVDSARSLIKQMFFNVQRYDLEPVGRY KMNKRLKLEIDENEVLLTPEDVLGTIQYVIDLNNGESHVHTDDIDNLSNRRVRGVGELLL MQIKTGLLKMSKMVREKMTIQDIETLTPQSLLNTRPLNALILDFFGSGQLSQFMDQSNPL AELTHKRRISALGPGGLSRERAGFEVRDVHDSHYGRICPIETPEGPNIGLIGSLAIYAKI NQYGFIETPYVAVKDGVADLNDIRYLAADEEEGMFIAQADTKLGEHNELLEPVTCRIGPE ILDVEAKRVHYLDISPKQVVSVSAGLIPFLEHDDANRALMGSNMQRQAVPLLRTQAPFIG TGLERKVAVDSGAVVTTKVDGTVSYVDGKKIVIETEDKREYTYRLLNFERSNQSMCLHQS PLVNLGDKVKAGDIIADGPATSKGDLALGKNILMGFMTWEGYNYEDAILISDRLRKDDVF TSIHVEEYEIEARNTKLGDEEITREIPNVSEAALRNLDANGIIMVGSEVEPGDILVGKTS PKGETEPPAEEKLLRAIFGEKARDVRDSSLRMPHGSKGTVVEILELSRENGDELKAGVNK AIRVLVAEKRKITVGDKMSGRHGNKGVVSRVLPAEDMPFLEDGTHLDVVLNPLGVPSRMN IGQVLEVHLGMAMRTLNGGTHIATPVFDGATEEQIKDYLENQGHPRSGKVTLYDGRTGDK FDNKITVGIMYMLKLHHLVEDKMHARAIGPYSLVTQQPLGGKAQFGGQRLGEMEVWALEA YGASNILQEMLTVKSDDVTGRTKTYEAIIKGEEMPDSDLPESFKVLLKEFQALALDVELC DENDNVINVDEELNKEDTTLEYSPSDMLELEDDEDEDDYEDDEE

Coding DNA - Genome Coordinates: 190440-186886 | Orientation: Reverse

ORF FASTA file - Coding DNA

ATGGGGAAACTCGTTGAACGATTGAATTTTGGAAAGATTAAAGAAAGAGGAATTATGCCTCATTTTCTTG AATTTCAATTAAATTCGTATGAAGATTTCTTGCAAATGAAGGTGGCTCCCAATAATAGAGAAAATAAGGG ATTAGAATCTGCTTTCCGAGAAATTTTTCCAATTGAATCATCTTCTAACGGAGAAATTCGACTAGAATAT GTATCTTATGAATTGCATGCTGCAGAACCACCTTTGAATGATGAATTGGAGTGTAAAAAAAGAGGAAAAA CATATTCTGATTCTTTGAAGGTAAGACTTCGATTATTTAATAAAAAAAGTGGGAATGAAATCCAAGAATC TCTAGTATATTTTGGGGAAGTTCCTAAGATGACAGAACGGGGAACTTTTATTATCAATGGTGCAGAAAGA GTTGTGGTATCACAATTACACCGTTCTCCGGGGGTATCATTTAATAAAGAAGTAAATATTCAAACCGGAA AAGATCTTTTCTCCGGAAAGATTATTCCGTATAAAGGAACTTGGCTAGAATTTGAAACAGATAAGAACGA TTTTCTAAGTGTAAAAATTGATAGAAAGAAAAAGGTTCTAGCTACAGTATTCTTAAAGGCTGTGGATTTT TTCAAAGATAATACAGAAATTAAAGAACACTTCTTTGAAGTGAAAGAATTAGATTTAACAGAATTTTATG AAAAATATGCAAATGACACAGAAGAATTATTGAGTGTTGTAAGAACAAAAATTGAAAGTAGTTTTTTAAA AGAAGCAATTTATGATGAAGAAACTGGAGAAATTATTGCAGAAGAAGATGCAGTTATTTCAGAAGCTTTG ATTTCAAAAATCATCGAAAATAAAATTGCAGTTCTTAGCTACTGGGAAGTAAAGCCCGAAGATCTTTTGA TTGCAAATACAATTGCCAATGATACGACTAAAAATTCTGATGAAGCAGTGACAGAAGTCTTCAAAAAATT AAGACCTGGAGATTTAGTAACCGTAGATTCAGCTAGAAGTTTAATAAAGCAAATGTTCTTTAATGTTCAA CGTTATGATTTAGAACCGGTTGGACGTTATAAAATGAATAAGAGATTAAAATTGGAAATTGATGAAAATG AGGTATTGCTAACTCCGGAAGATGTATTAGGAACGATTCAATATGTCATTGATTTAAATAATGGAGAATC CCATGTACATACAGATGATATCGATAACTTATCTAACCGTCGTGTAAGAGGAGTTGGAGAATTATTGTTG ATGCAAATCAAAACTGGGCTGTTAAAAATGTCAAAAATGGTTCGAGAAAAGATGACCATTCAAGATATTG AAACTTTAACACCTCAATCTCTATTGAATACAAGACCATTGAATGCTTTGATTTTGGACTTCTTCGGTTC CGGACAATTATCTCAATTTATGGACCAATCAAACCCACTTGCAGAATTGACTCATAAAAGAAGAATCTCT GCCTTAGGACCTGGAGGACTTTCGAGAGAAAGAGCCGGATTCGAGGTGCGTGACGTACATGATTCTCACT ATGGAAGAATTTGTCCAATAGAAACACCGGAAGGGCCAAACATTGGATTGATTGGGTCTTTGGCTATTTA TGCAAAAATCAATCAATATGGATTTATTGAAACTCCATATGTTGCAGTAAAAGACGGAGTAGCAGACTTA AACGACATACGATATTTAGCAGCGGATGAAGAAGAAGGAATGTTTATTGCCCAAGCCGATACAAAATTGG GAGAACATAATGAGTTGTTAGAACCGGTAACTTGTAGAATCGGTCCGGAAATTTTGGATGTGGAAGCAAA AAGAGTTCATTATTTAGATATTTCTCCAAAACAAGTGGTATCAGTATCTGCCGGATTGATTCCGTTCCTA GAACACGATGACGCCAACCGGGCATTGATGGGATCAAACATGCAAAGACAAGCAGTTCCTTTATTAAGAA CACAAGCTCCATTCATTGGAACCGGTTTGGAACGAAAAGTAGCTGTGGATTCCGGAGCGGTTGTAACGAC AAAAGTAGATGGAACAGTAAGTTATGTAGACGGTAAGAAAATTGTTATTGAGACAGAAGATAAGAGAGAA TATACGTATCGTCTATTGAATTTTGAAAGATCAAACCAATCTATGTGTTTACACCAATCTCCATTGGTAA ACTTAGGGGATAAAGTAAAGGCAGGAGATATTATTGCGGATGGACCTGCGACAAGTAAGGGAGATTTAGC TTTAGGAAAGAATATCCTTATGGGATTTATGACTTGGGAAGGATATAACTACGAAGATGCGATTTTGATT TCGGACCGATTAAGAAAAGATGATGTATTTACTTCCATTCATGTGGAAGAATACGAAATTGAAGCGAGAA ATACAAAATTGGGAGACGAAGAAATTACTCGAGAAATTCCAAATGTATCCGAAGCTGCTTTGAGAAACTT AGATGCAAATGGAATTATCATGGTAGGATCTGAAGTAGAACCGGGAGATATTTTGGTTGGAAAAACTTCT CCAAAAGGAGAAACAGAACCGCCTGCAGAAGAAAAATTACTTCGAGCTATTTTTGGAGAAAAGGCAAGAG ATGTACGAGACAGTTCTTTGCGTATGCCTCACGGATCCAAAGGTACTGTTGTGGAAATCTTAGAATTATC TCGTGAAAATGGAGATGAATTAAAGGCTGGAGTCAATAAGGCAATTCGAGTTTTAGTGGCTGAAAAGAGA AAAATTACTGTTGGGGATAAGATGTCAGGGCGACATGGAAACAAAGGGGTTGTTTCCAGAGTATTACCTG CAGAAGATATGCCTTTCTTAGAAGATGGAACACATTTGGATGTTGTATTGAATCCGTTAGGGGTACCATC TCGGATGAATATCGGACAAGTATTGGAAGTTCACTTGGGAATGGCAATGAGAACCTTAAATGGAGGAACT CACATTGCAACTCCGGTATTCGATGGAGCAACAGAAGAACAAATTAAAGATTACTTAGAAAACCAAGGAC ATCCAAGAAGTGGAAAAGTTACTTTATACGATGGAAGAACCGGAGATAAATTTGATAACAAAATTACAGT TGGAATCATGTATATGTTGAAATTACACCACTTGGTAGAAGATAAAATGCACGCCAGAGCAATCGGACCA TACTCTTTAGTAACACAGCAACCTTTGGGAGGAAAAGCACAATTCGGAGGACAAAGACTAGGAGAAATGG AAGTATGGGCTTTGGAAGCATATGGAGCATCTAATATTCTTCAAGAAATGTTGACTGTAAAATCAGATGA TGTTACAGGAAGAACAAAAACGTATGAAGCAATTATTAAAGGGGAAGAAATGCCGGATTCTGATTTACCG GAATCATTTAAGGTATTATTGAAAGAATTCCAAGCCTTAGCATTGGACGTTGAATTATGTGATGAAAATG ACAATGTCATCAATGTAGATGAAGAATTGAATAAAGAAGATACAACCCTAGAATATTCACCATCTGATAT GTTAGAACTAGAAGATGATGAAGATGAAGACGATTACGAAGATGATGAAGAATAG

Previous Gene Next Gene