Gene DvMF_3125 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagDvMF_3125 
SymbolguaA 
ID7175071 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameDesulfovibrio vulgaris str. 'Miyazaki F' 
KingdomBacteria 
Replicon accessionNC_011769 
Strand
Start bp3944298 
End bp3945845 
Gene Length1548 bp 
Protein Length515 aa 
Translation table11 
GC content65% 
IMG OID643541661 
ProductGMP synthase 
Protein accessionYP_002437529 
Protein GI218888208 
COG category[F] Nucleotide transport and metabolism 
COG ID[COG0518] GMP synthase - Glutamine amidotransferase domain
[COG0519] GMP synthase, PP-ATPase domain/subunit 
TIGRFAM ID[TIGR00884] GMP synthase (glutamine-hydrolyzing), C-terminal domain or B subunit
[TIGR00888] GMP synthase (glutamine-hydrolyzing), N-terminal domain or A subunit 


Plasmid Coverage information

Num covering plasmid clonesn/a 
Plasmid unclonability p-valuen/a 
Plasmid hitchhikingn/a 
Plasmid clonabilityn/a 
 

Fosmid Coverage information

Num covering fosmid clones65 
Fosmid unclonability p-value0.0979227 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGGAAGCAC AGACCAAGGT CATCATTATC GACTACGGTT CGCAGGTGAC GCAGCTAATC 
GCCCGTCGCG TGCGCGAGGC TGGCGTCTAC TCCGAAATCC ACCCCTGCAT CGTCACGGCG
GATCAGGTGC GCGCCATGAA GCCCGCCGCC GTCATCCTGT CCGGCGGCCC GGCCAGCGTG
GGCGAGGCCG ACGCCCCCAC TCTGGAAAAG GGCCTGCTGG AGCTTGGCGT GCCGGTTCTG
GCCATCTGCT ACGGCATGCA GCTTCTGGGT CACAACCTGG GCGGCCAGCT GGCCACCTCG
GAAACCCGCG AATACGGCCC CGCCGACCTC ACCCTGCTGG GCGACTGCCC GCTGTGGGAC
GGCATCGACA AGTCCGCCAC CACCCGCGTG TGGATGAGCC ACGGCGACAA GGTCAAGACG
CCCCCGCCCG GCTTTGCCGT GGTGGGCCGC ACCGCCACCC TGGACGTGGC GGCCATGGCC
GACGACGCCC GCCGCATCTA TGCCGTGCAG TTCCACCCCG AAGTGCACCA CACCGAGGAA
GGCACCCGCA TCATCAACAA CTTCCTGTTC CACGTGGCCA AGCTGAAGGC CGACTGGACC
ATGTCGTCGT TCGTTGAGCG CGCCATCAAG GAAATGGCCG AAACCGTGGG CGACCGCCAC
GTGGTGTGCG CGCTTTCGGG CGGCATCGAC TCCACCGTGG TGGCCGTGCT GCTGCACAAG
GCCATCGGCA AGCGCCTGCA CTGCATCTTC GTGGACAACG GCGTGCTGCG CCTGAACGAA
GGCCAGGAAG TGGTGGACTA CCTGCGCGAG CACTTCGACC TGAACCTGAA GTACGTGCAG
GCCCAGCGCC GCTTCCTCGA CAAGCTGGAA GGCGTGGAAG ACCCCGAGCA GAAGCGCAAG
ATCATCGGCT ACACCTTCAT CGAGGTGTTC GACGAGGAAG CGAAAGCCCT TGGCCACGTG
GACTTCCTGG CGCAGGGCAC CCTGTACCCC GACGTCATCG AATCGGTGTC GCACAAGGGG
CCTTCCGCCG TCATCAAGAG CCACCACAAC GTGGGCGGCC TGCCGGAAAA GATGAACCTG
AAGCTCATCG AGCCGCTGCG CGAACTGTTC AAGGACGAAG TGCGCAAGGT GGCGGGCGAA
CTGGGCCTGC CGGACTTCAT CATCTGGCGC CACCCCTTCC CCGGTCCGGG CCTGGCCATC
CGCGTCATCG GCGAAATCAC CGAGGAACGC CTGGACATCC TGCGCAAGGC CGACAAGATC
GTGCAGGCCG AGCTGATGTC CTCCGGCTGG TACCGCAAGG TCTGGCAGGG CTTTGCCGTG
CTACTGCCGC TTAAGACCGT GGGTGTCATG GGCGATGGCC GCACCTACGA GCACGTCATC
GCCCTGCGCA TCGTGGACAG CGTGGACGCC ATGACGGCAG ACTGGGCGCG CTTGCCTTCC
GAACTGCTTG AGCGTATTTC GAGCCGGATA ATCAACGAGG TGAAGGGCGT GAACCGCGTG
GTCTACGACA TCTCCTCGAA GCCGCCGAGC ACCATCGAAT GGGAATAG
 
Protein sequence
MEAQTKVIII DYGSQVTQLI ARRVREAGVY SEIHPCIVTA DQVRAMKPAA VILSGGPASV 
GEADAPTLEK GLLELGVPVL AICYGMQLLG HNLGGQLATS ETREYGPADL TLLGDCPLWD
GIDKSATTRV WMSHGDKVKT PPPGFAVVGR TATLDVAAMA DDARRIYAVQ FHPEVHHTEE
GTRIINNFLF HVAKLKADWT MSSFVERAIK EMAETVGDRH VVCALSGGID STVVAVLLHK
AIGKRLHCIF VDNGVLRLNE GQEVVDYLRE HFDLNLKYVQ AQRRFLDKLE GVEDPEQKRK
IIGYTFIEVF DEEAKALGHV DFLAQGTLYP DVIESVSHKG PSAVIKSHHN VGGLPEKMNL
KLIEPLRELF KDEVRKVAGE LGLPDFIIWR HPFPGPGLAI RVIGEITEER LDILRKADKI
VQAELMSSGW YRKVWQGFAV LLPLKTVGVM GDGRTYEHVI ALRIVDSVDA MTADWARLPS
ELLERISSRI INEVKGVNRV VYDISSKPPS TIEWE