Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Mbar_A0810 |
Symbol | |
ID | 3626832 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Methanosarcina barkeri str. Fusaro |
Kingdom | Archaea |
Replicon accession | NC_007355 |
Strand | + |
Start bp | 978652 |
End bp | 981936 |
Gene Length | 3285 bp |
Protein Length | 1094 aa |
Translation table | 11 |
GC content | 39% |
IMG OID | 637699701 |
Product | putative surface layer protein |
Protein accession | YP_304367 |
Protein GI | 73668352 |
COG category | [S] Function unknown |
COG ID | [COG3391] Uncharacterized conserved protein |
TIGRFAM ID | [TIGR02276] 40-residue YVTN family beta-propeller repeat |
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Plasmid Coverage information |
Num covering plasmid clones | 19 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 39 |
Fosmid unclonability p-value | 1 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGAAAGTGA ACAAAAAACT GTGTTCAGTA GCTTTAGTTT CAACAGCCAT TGTTTTATTT TTAATTTTGA TATTATCTAC TACATCGGCA GCTACTGAAC AAAATACCGC GAGCACGACT GGATACGCCT ACATTACAAA TAGTGGCAGC ACCACTGTCT CTGTAATTGA CATAACAACA AACAAGGTTA CAGCCACGGC AACTGTAGGA AAATATCCCT ATGGAGTTGC AGTAAACCCC GCTGGAACTA AGGTATATGT ATCGAAAGAA AGAAGCAATT CTGTCTCTGT AATTGACACC GCAACAAACA AGGTTACAGC CACAGTGAAG GTAGGAAAAC ATCCATGGGG AGTTGCAGTT AGCCCGGATG GAACAAGAGT ATATGTGGCA AACGAAGGCA GTAAGACCGT CTCTGTAATT GACACTGAAA AAAACAAGGT TACAGCCACG GTAACTGTAG GAAAATATCC TTGTGGAGTT GCAGTAAACC CAGCAGGAAC AAAGGTATAT GTGACGAACA CTCTCGCTAA CACCGTCTCT GTTATTGACA CAGCAACAAA TAAAGTTACA GCCACAATAA AGGTAGGGAA TCTCCCTACC GGAATTGCAG TTAATCCAGC GGGAACAAGA GTATATGTGA CAAATGAGTA CGATGTTTCT GTAATTGACA CAACAAAAAA TAAGGTTACA GCAAGAGTAA AAGTAGGAAA ATACCCATGG GGAGTTGCAG TAAACCCGGC TGGAACAAAG GTGTATGTGG CAAACTATGG AGATGATACT ATTTCTGTAA TTAATACAGC CACAAACAAA GTTACAGATA CCTTGAAGGT AGGAAGTTGT CCTTTTGGGG TTGCTTTCAG TCCGGATGGA ACTAGGGCAT ATGTGGCGAA AGAAACAAGC GGCGCTGTCT CGGTAATTAA CACAGCCACA AACAAGGCTA CAGCCAAAGT GTGGGTAGGA AAAGAGCCTG TTGCATTCGG GCAGTTTATA GGTTCTGACA AAGTACAAAG CCCAAAAACT CCAGTTGCTG TATTTTATGC ATCTCCAAAA TCAGGAAAAG CACCTTTAAG CGTGAAATTT ACTGATAAAA GTACAGGAAA ACCAACTAAA TGGAAATGGG ATTTCGGAGA TGGAACATCG TCAACAGAAA AGAGTCCAAC TCATAAGTAT TCTAAAGCAG GAAAATATAC TGTTAAACTT ACAGTAACAA ACGCAGCAGG CAGTAACACA GCAACAAAAT CAAAGTATAT CATAGTGACA GAAACTTCGC AAACTTCGAC TGCTGCATTT TATGCATCTC CAAAATCAGG AACAGCACCT TTAAGCGTGA AATTTACTGA TAAAAGTACA GGAAAACCAA CTAAATGGAA ATGGGATTTC GGAGATGGAA CATCGTCAAC AGAAAAGAGT CCAACTCATA AGTATTCTAA AGCAGGAAAA TATACTGTTA AACTTACAGT AACAAATGCA GCAGGTAGTA ACACAGTAAC AAAATCAAAG TATATCATAG TGACAGCAAA ACCTGTTGCT GTATTTTATG CATCTCCAAA ATCAGGAAAA GCACCTTTAA GCGTGAAATT TACTGATAAA AGTACAGGAA AACCAACTAA ATGGGAATGG AGTTTTGGAG ACGGAACATC GTCAACAGAA AAGAATCCAA CACATAAATA TTCTAAAGCA GGAAAATATA CTGTTAAACT TACAGTAACA AATGCAGCAG GCAGTAACAC AGTAACAAAA TCAAAGTATA TCATAGTGAC AGAAACTTCA CAAACGTCGA CTGCTGCATT TTATGCATCT CCAAAATCAG GAACAGCACC TTTAAGCGTG AAATTTACTG ATAAAAGTAC AGGAAAACCA ACTAAATGGA AATGGGATTT CGGAGATGGA ACATCGTCAA CAGAAAAGAG TCCAACTCAT AAGTATTCTA AAGCAGGAAA ATATACTGTT AAACTTACAG TAACAAATGC AGCAGGTAGT AACACAGTAA CAAAATCAAA GTATATCATA GTGACAGAAA CTTCGCAAAC TTCAACTGCT GTATTTTATG CATCTCCAAA ATCAGGAAAA GCACCCTTAA GCGTGAAATT TACTGATAAA AGTACAGGAA AACCAACTAA ATGGAAATGG AATTTCGGAG ATGGAACATC GTCAACAGAA AAGAGTCCAA CTCATAAGTA TTCTAAAGCA GGAAAATATA CTGTTAAACT TACAGTAACA AATGCAGCAG GTAGTAACAC AGTAACAAAA TCAAAGTATA TCATAGTGAC AGCAAAACCT GTTGCTGTAT TTTATGCATC TCCAAAATCA GGAACAGCAC CTTTAAGCGT GAAATTTACT GATAAAAGTA CAGGAAAACC AACTAAATGG GAATGGAATT TAGGAGATGG AACATCGTCA ACAGAAAAGA GTCCAACTCA TAAGTATTCT AAAGCAGGAA AATATACTGT TAAACTTACA GTAACAAACG CGGCAGGCAG TAACACAGTA ACAAAATCAA AGTACATCAT AGTAACAGAA ACTTCCCAAG CTCCTGTTGC AGATTTTTGG GGCTGGCCCC TCTCAGGAAA TGATCCACTA AAAGTAACAT TTACGGAAAC CAGCAAAGGA TCACCAACTT CATGGAAATG GGATTTCGGA GATGGGACAT CGTCAACAGA AAAGAGTCCA ACACACACAT ATTCAGCTGC AGGAACTTAC ACGGTTAAAC TTATAGCAAC AAATGCAGCA GGAAGTAGTA CAAAAACAAA ATGGAATTAT GTAAAAGTTT CAGGAACCTT ACAAGCTCCG ACTGCGGACT TCTGGGGCTG GCCCCTCTCA GGAAATGATC CACTAAAGGT AACATTTACG GAAACCAGCA AAGGATCACC AACTTCATGG AAATGGGATT TCGGAGATGG AACATCGTCA ACAGAAAAGA GTCCAACACA CACATATTCA GCTGCAGGAA CTTACACGGT TAAACTTATA GCAACAAATG CAGCAGGAAG TAATACAAAA ACAAAATGGA ATTATGTAAA AGTTTCAGGA ACCTCACAAG CTCCTGTTAC AGATTTTTGG GGCTGGCCCC TCTCAGGAAA TGACCCACTA AAGGTAACAT TTACGGAAAC CAGCAAAGGG TCACCAACTT CATGGAAATG GGATTTCGGA GATGGGACAT CGTCAACAGA AAAGAGTCCA ACACACACAT ATTCAACTGC AGGAACTTAC ACGGTTAAAC TTATAGCAAC AAATGCAGCA GGAAGTAGTA CAAAAACAAA ATGGAATTAT GTAAAAGTCA CATAA
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Protein sequence | MKVNKKLCSV ALVSTAIVLF LILILSTTSA ATEQNTASTT GYAYITNSGS TTVSVIDITT NKVTATATVG KYPYGVAVNP AGTKVYVSKE RSNSVSVIDT ATNKVTATVK VGKHPWGVAV SPDGTRVYVA NEGSKTVSVI DTEKNKVTAT VTVGKYPCGV AVNPAGTKVY VTNTLANTVS VIDTATNKVT ATIKVGNLPT GIAVNPAGTR VYVTNEYDVS VIDTTKNKVT ARVKVGKYPW GVAVNPAGTK VYVANYGDDT ISVINTATNK VTDTLKVGSC PFGVAFSPDG TRAYVAKETS GAVSVINTAT NKATAKVWVG KEPVAFGQFI GSDKVQSPKT PVAVFYASPK SGKAPLSVKF TDKSTGKPTK WKWDFGDGTS STEKSPTHKY SKAGKYTVKL TVTNAAGSNT ATKSKYIIVT ETSQTSTAAF YASPKSGTAP LSVKFTDKST GKPTKWKWDF GDGTSSTEKS PTHKYSKAGK YTVKLTVTNA AGSNTVTKSK YIIVTAKPVA VFYASPKSGK APLSVKFTDK STGKPTKWEW SFGDGTSSTE KNPTHKYSKA GKYTVKLTVT NAAGSNTVTK SKYIIVTETS QTSTAAFYAS PKSGTAPLSV KFTDKSTGKP TKWKWDFGDG TSSTEKSPTH KYSKAGKYTV KLTVTNAAGS NTVTKSKYII VTETSQTSTA VFYASPKSGK APLSVKFTDK STGKPTKWKW NFGDGTSSTE KSPTHKYSKA GKYTVKLTVT NAAGSNTVTK SKYIIVTAKP VAVFYASPKS GTAPLSVKFT DKSTGKPTKW EWNLGDGTSS TEKSPTHKYS KAGKYTVKLT VTNAAGSNTV TKSKYIIVTE TSQAPVADFW GWPLSGNDPL KVTFTETSKG SPTSWKWDFG DGTSSTEKSP THTYSAAGTY TVKLIATNAA GSSTKTKWNY VKVSGTLQAP TADFWGWPLS GNDPLKVTFT ETSKGSPTSW KWDFGDGTSS TEKSPTHTYS AAGTYTVKLI ATNAAGSNTK TKWNYVKVSG TSQAPVTDFW GWPLSGNDPL KVTFTETSKG SPTSWKWDFG DGTSSTEKSP THTYSTAGTY TVKLIATNAA GSSTKTKWNY VKVT
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