Gene DvMF_1934 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagDvMF_1934 
Symbol 
ID7173852 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameDesulfovibrio vulgaris str. 'Miyazaki F' 
KingdomBacteria 
Replicon accessionNC_011769 
Strand
Start bp2386190 
End bp2387932 
Gene Length1743 bp 
Protein Length580 aa 
Translation table11 
GC content66% 
IMG OID643540450 
Productsulfoacetaldehyde acetyltransferase 
Protein accessionYP_002436345 
Protein GI218887024 
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[TIGR03457] sulfoacetaldehyde acetyltransferase 


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 clones104 
Fosmid unclonability p-value
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGCCCAAGA TGACCCCCAG TGAAGCAATG GCTGAAGTCC TCGTGCAGGA AGGCGTCACG 
CACGTCAGCG GCATTCTCGG GTCGGCCTTC ATGGATCTGT TGGACCTGTT TCCCGCCGCG
GGCATCGATT TCATTTCGGT GCGCCACGAA CAGACCGCGG GCCACATGGA GGACGCCTTT
ACCAGAATGA CGGGAAGGGC GGGTGTCTGC ATCGGCCAGA ACGGCCCCGG CATCACCAAC
TACGTCACGG CGGTGGCCAC GGCCAACATG GCCCACACGC CCATGGTCGT CCTGTCTCCC
AGCGCGGGCA GCATCTCGGT GGGTTGGGAC GGCTTTCAGG AATGCGACAC CTGGAATCTG
TTCAAGCCCA TCACCAAGGC ATCGCTGCGC GTGCCGCACC CCAAGCGCGC CGCCGACATC
CTGCGCACCG CCTTCCGCAT AGCCTACGCC GAACGCGGCC CGGTGCTGGT GGACATCCCG
CGTGACTACT TCTACGGCGA ACTGGACGAG GACATCCTGG CCCCGTCGCA GTACCGCGTG
GCCCCCGGCG GCATCGGCAA TCCGGAACAG TTCCGCGAGG CGGTGGAAGT GCTGAAGGCC
GCCAAGCGCC CGGTCATCGT CTCCGGTCGC GGGGTGGTGG ATTCCGGCGC GCTGGAAACG
GTGAAGGCCC TGGCGGAACA CCTCAACGCC CCCGTGGCCT GCACCTACCT GCACAACGAC
GCCTTCCCCT GCGACCATCC GCTGTGGACC GGCCCCATCG GGTACATGGG TTCCAAGGCG
GCCATGCGCA TCCTGCAGCA GGCCGACGTC ATCCTGGCCG TGGGCACCCG GCTGTCCTAC
TTCGGCACGC TGCCGCAGTA CGACATCAAC TACTTCCCGA AGACCGCAAA GATCGTCCAG
ATCGACATCA ACCCCCGCCA CATCGCCAAG ACCCATCCCG TGGCCGTGGG CCTGTGCGCC
GACGCCAAGG ACGCCGCCGT GGAACTGCTG GCCCGCGTGC GCGAGGCCAT GCCGAATCCC
AGGCGCGACG ATGCCGTGTA CGCCATGGTC AAGGCGGAAC TGGAGGACTG GTACAAGGAA
ATCGCCGCCA TCGCCGACGA ACCGGTGATG GAAGGCCGCA TGCATCCGCG CAAGGCGCTG
GACGTGGTGG GCCGCTTCGT CACCGAGCAC AACGCCATCG CCACCACCGA CATCGGCAAC
ACCTCGTCCA CGGCCAACAG CTACCTGCGC TTCCGCAACG CCAAGCGTTC GGTGGCCACG
CTGACCTTCG GCAACACCGG TTTCGCCTAT CAGGCGGGCC TTGGCGCGCA GCTGGCCTGC
CCCGAGGACA CGGTGGTGGC CATCGTGGGT GACGGCGCCT GGGGCATGAG CCTGTTCGAG
GTGCCCACCG CCGTGCAGTA CAACCTGCCG GTCATCGCCA CCGTGTACAA CAACGGGGCG
TGGTGCGCGG AAAAGAAGAA CCAGGTGGAC TTCTACAACA ACCGCTTCGT GGGCGCGGAC
ATCTGGTCCA ATTCCTACGC GGCCATCGCG GAAGCCATGG GCGCCACGGG CTACAAGGTG
AACACCCAGG CCGACCTGGC CGATGCCCTG GACGCCGCCC GCAAGAGCCG CAAGCCCTCG
GTCATCGAGA TCATGACCGA CGGCACCAGG CTGGCCCCGC CCTTCCGGCG CGATGCCCTG
GCCCTGCCCA CCCGCCACCT GCCCAAGTAC GACCATCTGG ACAAGCGGCA CTTCGTCAAG
TAG
 
Protein sequence
MPKMTPSEAM AEVLVQEGVT HVSGILGSAF MDLLDLFPAA GIDFISVRHE QTAGHMEDAF 
TRMTGRAGVC IGQNGPGITN YVTAVATANM AHTPMVVLSP SAGSISVGWD GFQECDTWNL
FKPITKASLR VPHPKRAADI LRTAFRIAYA ERGPVLVDIP RDYFYGELDE DILAPSQYRV
APGGIGNPEQ FREAVEVLKA AKRPVIVSGR GVVDSGALET VKALAEHLNA PVACTYLHND
AFPCDHPLWT GPIGYMGSKA AMRILQQADV ILAVGTRLSY FGTLPQYDIN YFPKTAKIVQ
IDINPRHIAK THPVAVGLCA DAKDAAVELL ARVREAMPNP RRDDAVYAMV KAELEDWYKE
IAAIADEPVM EGRMHPRKAL DVVGRFVTEH NAIATTDIGN TSSTANSYLR FRNAKRSVAT
LTFGNTGFAY QAGLGAQLAC PEDTVVAIVG DGAWGMSLFE VPTAVQYNLP VIATVYNNGA
WCAEKKNQVD FYNNRFVGAD IWSNSYAAIA EAMGATGYKV NTQADLADAL DAARKSRKPS
VIEIMTDGTR LAPPFRRDAL ALPTRHLPKY DHLDKRHFVK