Gene Mbar_A2823 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagMbar_A2823 
Symbol 
ID3627066 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameMethanosarcina barkeri str. Fusaro 
KingdomArchaea 
Replicon accessionNC_007355 
Strand
Start bp3608228 
End bp3609733 
Gene Length1506 bp 
Protein Length501 aa 
Translation table11 
GC content45% 
IMG OID637701673 
Productputative cobalt transport system ATP-binding protein 
Protein accessionYP_306303 
Protein GI73670288 
COG category[R] General function prediction only 
COG ID[COG1123] ATPase components of various ABC-type transport systems, contain duplicated ATPase 
TIGRFAM ID[TIGR01166] cobalt transport protein ATP-binding subunit 


Plasmid Coverage information

Num covering plasmid clones25 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones15 
Fosmid unclonability p-value0.178589 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGATAGAAC TAAAAGATTT TTCATATACC TACGGAACAG CTGAAAGCCC TGTTCTGAAT 
AAAATTAACC TTGAAGTCCG ACAGGGAGAA CTGCTTCTAG TTACCGGACA CAGTGCAGCC
GGAAAGACAA CGCTTGCTCT TGCAATGGCA GGTATCCTGC ACCATGAAAT AGGGGGCAAG
ACCGAAGGAG AAATCATTTT CAAAAACCGG AACGTAAAAA GTTTTAACGG CATGAAGGAA
CTGAGCCGGC ATATCGGGAT GGTTTTTGAT GATGCGGAAT CACAGCTGAT CTTCACAAGT
GTCGAAGAGG AAATCCGTTC GGGACTTGAA AATCGTGGCT ATCCCATAAA AGAACTGAGA
CACAGGCTGG AAGAAGTAAT GGAATTCTGC GAAATCAGCC ACCTTAGAAA CCGGGCTCCC
CATGCTCTTT CTGGCGGTCA GAAGCAAAAA GTTGCACTTG CAGCAACCTT TGCCCTCGAT
ACCGAAGTCC TTATCCTTGA CGAAGCTACA GCCGAACTGG ATACAAAGGC TGTAAGAAGA
ATCTTTTCAA TCCTGAAAAG GCTGAAAGAA GCCGGAAAGA CTATCATAAT CATAGACCAC
AACATAGATG ATTTCCTCGA AATCGGGGAT AGGGTCGTGC TGCTTGAAAA AGGCAGAATA
AAAGATATAA AAAGTCCAGC TGATTTTTCA GCATCTTCTC TTTCAGCATC TTCTCTCGCT
TTAGAACCGG AAATTCCTGA AACTGACAGA CAGACTCTTT ATATGCCTCA TAATAAGTGG
AAGGAAAGAA AGCCCATTAT TTCTGTAAAG AATCTCACAC AGCGTTACGG AGAAGTCCTG
GCACTCGACA GCATAGACCT GGAGATTTAT CCTGGGGAGC TCGTTGCTGT GCTGGGCGAG
AATGGTTCAG GCAAGACAAC CCTTGTCAAG CACTTTAATG GCCTTTTACG CCCTTATTCT
GGGAGTGTAA CTATAAAAGG CTTTGAAACT TCAAAAAGTT CTGTAAACGA GCTTGTCAAA
TATACCGGTC TGGTCTTTCA GAACCCGGAC AACATGCTTT TTGAGGATAC TGTCGAAGCA
GAAATTGCTT TCGGATTAAA TAACATTAAT ATAAAAGGGC TTGAGGCTGA GAAAGCAATA
TCCGATTCCC TTGAACTTGT AAATTTGGGC GAAAAACTGA GAGTTTTTCC CCGCAACCTG
AGCAGAGGAG AAAGGCAGAG ACTGGCGGTT GCTTGCATAA TTGCCATGAA GCCCGAACTG
ATCGTGCTCG ATGAACCTAC AACAGGTCTG GATGCCGAAG AATCGGACAG TATGATGCAG
CTCATACGAA AACTCCAGCA GGAAGGGCAC ACAATAGTCA TGGTGACCCA TAACATGCAG
ATAGTAAAAG ACCACGCCGA GAGGGTTATT CGCATGGCGG CCGGAAAAAT CGTCGAAGAT
ACCAGCAGGA TAACTGCAGA TAGTGAGCAG GTGAGCAGAG AACACATTGG AGGCATTTGT
ACATGA
 
Protein sequence
MIELKDFSYT YGTAESPVLN KINLEVRQGE LLLVTGHSAA GKTTLALAMA GILHHEIGGK 
TEGEIIFKNR NVKSFNGMKE LSRHIGMVFD DAESQLIFTS VEEEIRSGLE NRGYPIKELR
HRLEEVMEFC EISHLRNRAP HALSGGQKQK VALAATFALD TEVLILDEAT AELDTKAVRR
IFSILKRLKE AGKTIIIIDH NIDDFLEIGD RVVLLEKGRI KDIKSPADFS ASSLSASSLA
LEPEIPETDR QTLYMPHNKW KERKPIISVK NLTQRYGEVL ALDSIDLEIY PGELVAVLGE
NGSGKTTLVK HFNGLLRPYS GSVTIKGFET SKSSVNELVK YTGLVFQNPD NMLFEDTVEA
EIAFGLNNIN IKGLEAEKAI SDSLELVNLG EKLRVFPRNL SRGERQRLAV ACIIAMKPEL
IVLDEPTTGL DAEESDSMMQ LIRKLQQEGH TIVMVTHNMQ IVKDHAERVI RMAAGKIVED
TSRITADSEQ VSREHIGGIC T