Gene BR1389 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagBR1389 
SymbolilvB 
ID1167071 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameBrucella suis 1330 
KingdomBacteria 
Replicon accessionNC_004310 
Strand
Start bp1343022 
End bp1344776 
Gene Length1755 bp 
Protein Length584 aa 
Translation table11 
GC content58% 
IMG OID637330329 
Productacetolactate synthase 3 catalytic subunit 
Protein accessionNP_698387 
Protein GI23502260 
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-value0.0317493 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clonesn/a 
Fosmid unclonability p-valuen/a 
Fosmid Hitchhikern/a 
Fosmid clonabilityn/a 
 

Sequence

Gene sequence
ATGACCGGCG CAGAAATGGT TATCCAGGCG CTGATCGATC AGGGTGTGGA AAGCATTTTC 
GGCTATCCCG GCGGCGCGGT GCTTCCGATT TATGACGAGC TGTTTCAGCA GGATCAAATC
CAGCACGTTC TGGTTCGCCA TGAGCAGGGT GCAGGCCATG CAGCGGAAGG CTATGCGCGC
TCGACGGGTA AAGTCGGCGT CATGCTCGTC ACTTCGGGGC CGGGTGCAAC CAATGCCGTG
ACGCCGTTGC AGGATGCCTT GATGGATTCC ATCCCGCTGG TCTGCATTTC CGGTCAGGTT
CCCACGACGC TGATCGGTTC CGATGCGTTT CAGGAATGCG ATACGATTGG CATCACGCGC
CCCTGCACCA AGCACAACTG GCTGGTAAAG GACGTCAACG ACCTGTCGCG CGTCCTGCAT
GAAGCTTTCC ATGTCGCATC CACCGGCCGT CCCGGCCCCG TCGTCGTCGA TATTCCGAAG
GATATTCAGT TCGCCAAGGG CATCTATACG CCGCCGGAAA CTGCACCGCG CACAAGTTAC
CGTCCAGTTC TCGACGGCAA TGCCGAGGCT ATTTCCGAGG CTGTCCGTCT GCTCGCCAAT
GCCAGAAAGC CGGTCATTTA TTCGGGCGGC GGCGTGATCA ATTCCGGCCC CGCGGCTTCC
CGTCTGCTGC GTGAGCTGGT CGAGATCAGC AATTTCCCGA TCACCTCCAC GCTGATGGGG
CTTGGCGCCT ATCCCGCCTC CGGCAAGAAC TGGCTCGGTA TGCTGGGCAT GCACGGCACC
TATGAAGCCA ACATGACCAT GCATGATTGC GATGTCATGC TGTGCGTCGG TGCGCGTTTC
GACGACCGCA TCACCGGCCG CCTCAACGCT TTCTCGCCGA ATTCCAAGAA AATTCATATC
GATATCGATC CGTCGTCGAT CAACAAGAAC GTTCGGGTCG ATGTGCCGAT CATCGGCGAT
GTCGCGCATG TGCTGGAGGA TATCGTCCGC CAGTTTCGTG CTTTCGACCG CAAGCCAGAC
AGGCAGGCAT TGACCGAATG GTGGGGGCAG ATCGACCGTT GGCGCGCGCG CAATTCGCTG
GCCTATACGC CGAACAAAGA CGTCATCATG CCGCAATATG CCATCGAGCG GCTTTATGAA
CTGACCAGGA ACCGCAACAC CTATATCACC ACCGAGGTGG GCCAGCACCA GATGTGGGCG
GCGCAATTCT TCGGCTTTGA ACAGCCGAAC CGTTGGCTGA CTTCCGGCGG CCTTGGCACC
ATGGGCTATG GTCTGCCTGC GGCGCTGGGC GTGCAGATTG CACATCCGGA TGCGCTGGTT
ATCGATATTG CAGGCGATGC CTCGATCCAG ATGTGTATCC AGGAAATGTC GGCAGCAATC
CAGCATAATG CGCCGATCAA GATTTTCATC CTGAACAACC AGTATATGGG CATGGTGCGC
CAGTGGCAGC AATTGCTGCA TGGCAACCGC CTGTCGCATT CCTACACGGA AGCGATGCCC
GATTTCGTGA AACTTGCGGA AGCATACGGC GCGCACGGCA TTCGCTGCGA GAAGCCGGGC
GATCTCGATG CCGCCATTCA GGAGATGATC GATATCGACA AGCCGGTCAT TTTCGATTGC
CGCGTGGCAA ACCTTGCCAA CTGCTTCCCG ATGATCCCGT CGGGCAAGGC GCATAATGAA
ATGCTGTTGC CGGACGAAGC GACAGATGAG GCCGTCGCCA ATGCCATTGA TGCCAAGGGC
CGCGCGCTCG TCTGA
 
Protein sequence
MTGAEMVIQA LIDQGVESIF GYPGGAVLPI YDELFQQDQI QHVLVRHEQG AGHAAEGYAR 
STGKVGVMLV TSGPGATNAV TPLQDALMDS IPLVCISGQV PTTLIGSDAF QECDTIGITR
PCTKHNWLVK DVNDLSRVLH EAFHVASTGR PGPVVVDIPK DIQFAKGIYT PPETAPRTSY
RPVLDGNAEA ISEAVRLLAN ARKPVIYSGG GVINSGPAAS RLLRELVEIS NFPITSTLMG
LGAYPASGKN WLGMLGMHGT YEANMTMHDC DVMLCVGARF DDRITGRLNA FSPNSKKIHI
DIDPSSINKN VRVDVPIIGD VAHVLEDIVR QFRAFDRKPD RQALTEWWGQ IDRWRARNSL
AYTPNKDVIM PQYAIERLYE LTRNRNTYIT TEVGQHQMWA AQFFGFEQPN RWLTSGGLGT
MGYGLPAALG VQIAHPDALV IDIAGDASIQ MCIQEMSAAI QHNAPIKIFI LNNQYMGMVR
QWQQLLHGNR LSHSYTEAMP DFVKLAEAYG AHGIRCEKPG DLDAAIQEMI DIDKPVIFDC
RVANLANCFP MIPSGKAHNE MLLPDEATDE AVANAIDAKG RALV