Gene Sfum_2981 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagSfum_2981 
Symbol 
ID4458706 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameSyntrophobacter fumaroxidans MPOB 
KingdomBacteria 
Replicon accessionNC_008554 
Strand
Start bp3681994 
End bp3683664 
Gene Length1671 bp 
Protein Length556 aa 
Translation table11 
GC content61% 
IMG OID639703753 
Productacetolactate synthase, large subunit, biosynthetic type 
Protein accessionYP_847090 
Protein GI116750403 
COG category[E] Amino acid transport and metabolism
[H] Coenzyme transport and metabolism 
COG ID[COG0028] Thiamine pyrophosphate-requiring enzymes [acetolactate synthase, pyruvate dehydrogenase (cytochrome), glyoxylate carboligase, phosphonopyruvate decarboxylase] 
TIGRFAM ID[TIGR00118] acetolactate synthase, large subunit, biosynthetic type 


Plasmid Coverage information

Num covering plasmid clones
Plasmid unclonability p-value0.0018312 
Plasmid hitchhikingYes 
Plasmid clonabilityhitchhiker 
 

Fosmid Coverage information

Num covering fosmid clones16 
Fosmid unclonability p-value
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
TTGGAGATCA CCGTTGCAGA AGCGTTGATA AAGTGCCTCG AAAAGGAAAA CGTGGAGGTG 
GTGTTCGGCT ATCCGGGAGG GGCGATCCTG CCGGTCTACG ATGCTTTGTA CCATTCTTCG
CGTATCAGGC ACGTGCTGGT GAGGCACGAG CAGGGAGCGG TGCACGCCGC TGACGGATAC
GCAAGGGTCA CCGGCCGGGT GGGGGTTTGC GTGGCCACCT CGGGGCCGGG GGCCACCAAC
CTGGTCACCG GGATTGCCAA CGCGTACATG GATTCCATAC CCCTTGTGGT TTTCACCGGC
CAGGTTCCCA CCAGTCAAAT CGGCACGGAC GCCTTTCAGG AGGTGGACAT ATTCGGCATC
ACCATGCCGG TCACCAAGCA CAACTACCTG GTAAAGGATC CCCAGAGGCT GCCGGCCATC
GTGAAGAACG CTTTCCATAT CGCCTCCACG GGACGTCCGG GTCCGGTGCT GGTCGATTTG
CCCAAAGACG TGGCGCAGAG CGTGATTTCG TTCAAGTACC CGGGCACGGT GCGGCTGCGC
GGGTACAAGC CGACGTACCG CGGGCACCCC GCGAAGATCG GTGAGATCGC GGAACTGATC
CGCAAATCCA AACGACCGGT GATTTACGCC GGGGGTGGGA TCGTCACCTC GGATGCGGCC
GGGGAGCTGC TCCAGCTGGC GGAGACCATT TCCGCTCCGG TGACCAACAC TTTCATGGGA
CTGGCCGGTT TTCCCGGGGA CCACCCGCTC TTTCTCGGAA TGCTCGGCTT GCACGGGACG
CGTTACGCGA ATCTGGCCAT CACCGAATGC GACCTGCTGA TCGGCCTCGG AGCGCGGTTT
GACGACCGCG TCACCATGAA CATCAATGCC TTCGCCCCTC AGGCTACGGT CATTCACATC
GACATCGACC CTGCCGAGAT CGGCAAGATC GTCAACGTGC ACGTGCCCCT GGTGGGAGAC
GTGAAGACGG TGCTCCAGTC GCTTTTGCCG CAGCTGGAAA AGACGGATCG CTCGGCCTGG
CTGGCCCGCA TACGGGAGCT CAAGGAGCAG CATCCCCTTT CGTACAGCCG GGAAGGCGGC
CTGAAACCCC AGTTCATCAT CGAACAGCTG TGGGCCTGCA CGCGGGGGAA CGCTATTGTG
GCCACGGACG TCGGCCAGCA CCAGATGTGG GTGGCTCAGT ACTACCGTTT CAAGTCCCCC
CGCACGCTGA TTTCCTCGGG GGGACTGGGG TGCATGGGGT TCGGCCTTCC CGCGGCCATC
GGCGCGAGCA TTGGTCGGCC GAACGCGAAG GTTGTGCTGG TGACCGGCGA CGGCAGTATC
CAGATGACCA TGCAGGAGTT GGGCACCATG ATCGAACAGG GTGTGCCGGC CAAGATCATC
ATCCTGAACA ACCATGCCCT CGGCATGGTG CGGCAGTTGC AAGAGTTTTA CTGCGAAGGC
CGTTACATGT CGGTCAATTT CCGGTTCCAC CCGGATTTTG AAACGTTGGC CAAAGCCTAT
GGAATTCCCG GGCACACGCT GCGAACGGAA GAGGAGGTGA CTTCCCGGCT TCCGGGGATA
ATTGAGGCCC CCGGAGCGGC CATTGTCAAC TGCCTGGTCG CAGCCGAAGA AAACGTATCG
CCCATGGTAC TTGCCGGAAA AGGGATCCAC GAGGCGATCG ACTGCTCCTG A
 
Protein sequence
MEITVAEALI KCLEKENVEV VFGYPGGAIL PVYDALYHSS RIRHVLVRHE QGAVHAADGY 
ARVTGRVGVC VATSGPGATN LVTGIANAYM DSIPLVVFTG QVPTSQIGTD AFQEVDIFGI
TMPVTKHNYL VKDPQRLPAI VKNAFHIAST GRPGPVLVDL PKDVAQSVIS FKYPGTVRLR
GYKPTYRGHP AKIGEIAELI RKSKRPVIYA GGGIVTSDAA GELLQLAETI SAPVTNTFMG
LAGFPGDHPL FLGMLGLHGT RYANLAITEC DLLIGLGARF DDRVTMNINA FAPQATVIHI
DIDPAEIGKI VNVHVPLVGD VKTVLQSLLP QLEKTDRSAW LARIRELKEQ HPLSYSREGG
LKPQFIIEQL WACTRGNAIV ATDVGQHQMW VAQYYRFKSP RTLISSGGLG CMGFGLPAAI
GASIGRPNAK VVLVTGDGSI QMTMQELGTM IEQGVPAKII ILNNHALGMV RQLQEFYCEG
RYMSVNFRFH PDFETLAKAY GIPGHTLRTE EEVTSRLPGI IEAPGAAIVN CLVAAEENVS
PMVLAGKGIH EAIDCS