Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Mfla_1751 |
Symbol | |
ID | 3999879 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Methylobacillus flagellatus KT |
Kingdom | Bacteria |
Replicon accession | NC_007947 |
Strand | - |
Start bp | 1880925 |
End bp | 1884314 |
Gene Length | 3390 bp |
Protein Length | 1129 aa |
Translation table | 11 |
GC content | 62% |
IMG OID | 637938665 |
Product | DNA helicase/exodeoxyribonuclease V, subunit A |
Protein accession | YP_545860 |
Protein GI | 91776104 |
COG category | [L] Replication, recombination and repair |
COG ID | [COG1074] ATP-dependent exoDNAse (exonuclease V) beta subunit (contains helicase and exonuclease domains) |
TIGRFAM ID | |
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Plasmid Coverage information |
Num covering plasmid clones | 16 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 14 |
Fosmid unclonability p-value | 0.910924 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGACAACAG CGCAGGCAAC GGATTTGCTC AAGTTGGATC GCGTCAGCCG CGAGCGGGCG CTCGAGCTTG CATCTTTCAT CGTGGAAGCG CCTGCCGGGG CTGGCAAGAC CGAGCTGCTG ACCCAGCGCT TTCTGCGCTT GCTTACAACC GTCTCGGCGC CTGAGCAGAT CATTGCGATC ACCTTCACCA ACAAGGCAGC AGCCGAGATG CGTGCCCGCA TTCTCGACAG CTTGCTGATG GCCGCCAGTG GCAGCCCGCC ACCGCAAGCG CACAAGCAGC AGACCTTCAG GCTGGGCAAG GAGGCTTTGC GGCATGCGGA CAGCCTGGGT TGGGAGTTGC TGGACCATCC GTCGCGATTG AGGATATTCA CGATCGATTC CTTGTCCGGA CACCTGTCGC GGCAGATGCC GCTGCTGAGC CGCTTCGGCA GCCAGCCAGC CGTCAGCGAG GACGCCAGCG CGCATTATCG GCTTGCCGCT GAGCGCACGC TCGCGCTGGT GGACGAAGAG AGCATGGGCG AAGCTGTACG CCTGGCCTTA CGCTATGTCG ACAATGATGT GCAGAAGCTC ACGGGCTTGC TGGTGGACAT GCTGGGCAAG CGCGACCAAT GGCTGGACTA CGCCAACCAT GGCAACCTGC AACAGGCTGC CGAGCGGGCG CTGGAACACT TGGTCATCCA GGATCTGAAA GCCGCTGCCG AGGTGTTGCC GGAGCGCATG CAGCGCGTCT TGATGCCGGT GGCGCGATAT GCTGCCGGGA ACCTGGCCTG CGACGTACGC CAGGCATTGT TGCTGGATTG GGAAACGCCA TTGCCCGCCT CGTCCCAGGC ATTGCCGGTA TGGCTGGCAG TGTGTGACCT GCTGCTGACG GGCACCGGGA CATTGCGCAA GACGGTCAAC GTCAAGAATG GCTTCCCGGC CACGCCGGAA TCCAAGCCCT TCAAGGAGCG GTTTGCCGAG ATCGTGGCAA CCTTGCAGCA GACCGCAGGT GCAGAGGCCA CCTTGCAGCG CTTGCGCAGC CTGCCGGTAC GGCAGGACGA ACATAGCTGG CAGATGGTGG CAGCGCTGGC GCAGTTATTG AAGCTTGCCG TCGCTCAATT GTGGCTGGTG TTCCAGCAGG CAGGGGAGGT GGATTTCGTC GAAGTGTCGC AACGCGCATT GCTGGCACTG GGCGACGATG ACGATGCGCC CAGCGAACTG GCCATGAAAC TGGATTATGA GATCAGCCAC CTATTGGTGG ATGAATTCCA GGACACCAGC CCCGGGCAGG TCAAGCTGTT GCAGCGGCTG ACGCAGGGAT GGATGCCTGG CGATGGCCGG ACATTGTTTG CCGTGGGCGA CCCGATGCAG TCGATTTACC GCTTCCGCAA GGCCAATGTG GGGCTGTTCC TTGAGGTTGC CGAAGACGGC ATTGGCGCGT TGAAGCTGGA ACGCCTGCAG CTTTGTCGCA ACAACCGTTC TGCACCGCCG GTGGTGGATT GGATCAACGC CACGTTCCGC CATGTGTTTC CTGCCCATGA CAGCGTGGTG CAGGGGGCGA TCCGCTACCG CGAATTCGTG GCCACCCGCG AGAATGAAGC CGGCGCCGAC GTGATGGTGC ACCCGTTGAT CGCTCATCCG GACGAGGGTG CCGATGCACT GCGCATTCGC GAAGCCGGCA CGGTGGTTGG GATCATACGT CATACCTGGG CAAGTCGGCC TGAGGCGCGC ATTGCGGTAT TGGTGCGTGC GCGTGCGCAT CTCGAGACGC TGGTGGCGGA AATTCGGCGC CACCACCCCG ACCTGCATTT CCAGGCAGTG GAGATCGAGC CACTTGCCGG GCGGCAGAGT GTGCAGGATC TCCTGGCCTT GACACATGCC TTGCTGCAGC GCGCTGACCG CGTCAACTGG CTTGCCGTAT TGCGTGCGCC CTGGTGCGGC CTCCGCCTTG CCGATCTGCA TGTGCTGGCA GGGCGTGACC GTTATCGCAC GATCTGGTCA TTGTTGCATG ACAACGCCCT GCTGGCTGGG ATGAGTGAAG ACGGCCGCCG GCGCAGCCAG CATGTGGTGC AGGTGCTGTC GGAAATCCTG GGACAGCAGG GACGCATGCC CTTGAGCCGT TGGCTGGAGA GCGCCTGGCT GATGCTGGGC GGAGCGCAAT GCCTGTGGCA ACCGGGGGAT GTGGCCGATG TGGAAGCCTT TTTTGCCTTG GTGGACCAGC TGGACCAGCA AGGCCGCTTC AGCCTGGAGC GCTTGGTGCA AGAGGTGGAG AAACTCTATG CCGCGCCAGA TCTGGAGGCG AATGGGCAAT TACAGTTCAT GACGATTCAT AAGTCCAAGG GACTGGAATT CGATACGGTC ATCCTCCCGG GACTGGAGCG GCGGCCGCGC AACGGTGAAA TGCCTCTGCT GCTGTGGGAG GAAGTTGCCA TCGACACGGA GGCTGGCGTC ACTACCGAGC TGGTCACGGC GCCGTTTATT CCCAAGGGGG CGGCGGGGCG GGACGAACCC AGCCCATACA GCTACCTGAA AATGCTGGAA AAGGAGCGCG CGGACCATGA AAGCGCGCGC GTGCTGTATG TCGCGGCAAC CCGAGCCGAA CGCTGCCTGC ACCTGCTCGG CAGCGTCGTT CCGAATGCCA AGGGGGAGCT CAGGCCGTCC GGCGGCACAT TTCTTGACTT GCTGTGGCCA CACTTGGCAG GCCGCTTCAT GGAAGCGGCT GCGCAGCATG TCCTGCCTGC GGAAGATGCA AGTCAGCCGC CATTGCTGGC CGACTTCGTG CCCAAGCTGG TCAGGGTGGA AGAAGCCGAC ATGCCGTCAA TTTACAACGA TGACAGGCAT GAAGTGGTCT CTTACGAACA GGCGCCTGCG GACACACCGG TGTTGGGCAG ACAGGCAGGG CTGGAAGCCC ACATCGGTAC GCTTGCGCAT AAATATGTGG AAATGATCTC AGCCGATCCC GACTTCGATG GCTGGCTGGC GCGCCTGCCC AGCCTGAGGC CTGCAATGGT AAGGTGGCTG GCGCGGCAAG GGCACCATCA AGATGCTGCG CAGGAGGCAG CAGGGCAGGT ACTGCAGTTG CTGGCACTCA CCTTGCAGAG TCCGGATGGC CGCTGGGTGC TGTCGGCGAG GCCGCAAGCG GCGGCGGAAC TCGCTCTCGG GCATGTCGGC GACGCTGGCT TCAAGCAGCA TGTCGTGGAT CGATGCTTCA TCGAGAATGG CGAGCGCTGG ATCATCGACT ACAAATCGAC ACGGCTGCCT GTCAACGCAG ATGCCCAAAT CATGCTGGAT GCCGCTTCAG TGCATGCAGC ACAATTGACG GGATATGCGG CACTATTTGC GGAGGAAGGA CGACCAATTC GCAAGGCAAT TTACTTCATG GCCTTGGGCA AACTGTGTGA ATTGCCTTGA
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Protein sequence | MTTAQATDLL KLDRVSRERA LELASFIVEA PAGAGKTELL TQRFLRLLTT VSAPEQIIAI TFTNKAAAEM RARILDSLLM AASGSPPPQA HKQQTFRLGK EALRHADSLG WELLDHPSRL RIFTIDSLSG HLSRQMPLLS RFGSQPAVSE DASAHYRLAA ERTLALVDEE SMGEAVRLAL RYVDNDVQKL TGLLVDMLGK RDQWLDYANH GNLQQAAERA LEHLVIQDLK AAAEVLPERM QRVLMPVARY AAGNLACDVR QALLLDWETP LPASSQALPV WLAVCDLLLT GTGTLRKTVN VKNGFPATPE SKPFKERFAE IVATLQQTAG AEATLQRLRS LPVRQDEHSW QMVAALAQLL KLAVAQLWLV FQQAGEVDFV EVSQRALLAL GDDDDAPSEL AMKLDYEISH LLVDEFQDTS PGQVKLLQRL TQGWMPGDGR TLFAVGDPMQ SIYRFRKANV GLFLEVAEDG IGALKLERLQ LCRNNRSAPP VVDWINATFR HVFPAHDSVV QGAIRYREFV ATRENEAGAD VMVHPLIAHP DEGADALRIR EAGTVVGIIR HTWASRPEAR IAVLVRARAH LETLVAEIRR HHPDLHFQAV EIEPLAGRQS VQDLLALTHA LLQRADRVNW LAVLRAPWCG LRLADLHVLA GRDRYRTIWS LLHDNALLAG MSEDGRRRSQ HVVQVLSEIL GQQGRMPLSR WLESAWLMLG GAQCLWQPGD VADVEAFFAL VDQLDQQGRF SLERLVQEVE KLYAAPDLEA NGQLQFMTIH KSKGLEFDTV ILPGLERRPR NGEMPLLLWE EVAIDTEAGV TTELVTAPFI PKGAAGRDEP SPYSYLKMLE KERADHESAR VLYVAATRAE RCLHLLGSVV PNAKGELRPS GGTFLDLLWP HLAGRFMEAA AQHVLPAEDA SQPPLLADFV PKLVRVEEAD MPSIYNDDRH EVVSYEQAPA DTPVLGRQAG LEAHIGTLAH KYVEMISADP DFDGWLARLP SLRPAMVRWL ARQGHHQDAA QEAAGQVLQL LALTLQSPDG RWVLSARPQA AAELALGHVG DAGFKQHVVD RCFIENGERW IIDYKSTRLP VNADAQIMLD AASVHAAQLT GYAALFAEEG RPIRKAIYFM ALGKLCELP
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