Gene BT9727_0240 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagBT9727_0240 
SymbolguaA 
ID2858031 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameBacillus thuringiensis serovar konkukian str. 97-27 
KingdomBacteria 
Replicon accessionNC_005957 
Strand
Start bp266835 
End bp268382 
Gene Length1548 bp 
Protein Length515 aa 
Translation table11 
GC content40% 
IMG OID637511636 
ProductGMP synthase 
Protein accessionYP_034594 
Protein GI49476755 
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 clones17 
Plasmid unclonability p-value0.000319798 
Plasmid hitchhikingYes 
Plasmid clonabilityhitchhiker 
 

Fosmid Coverage information

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

Sequence

Gene sequence
GTGATTATTT TGAAGAAGCA GCATGATACA ATTATCGTTT TAGATTTTGG GAGTCAATAC 
AATCAGTTAA TAGCACGTCG AATTCGTGAG TTCGGTGTAT ACAGTGAACT TCATCCACAT
ACAATTACTG CAGAAGAAAT TAAAGCAATG AATCCAAAAG GGATTATCTT CTCTGGTGGA
CCGAATAGTG TATACGGTGA AGGTGCATTA CATTGTGATG AAAAAATCTT TGACCTAGGA
TTACCGATCT TCGGTATTTG TTACGGTATG CAACTTATGA CACAACAATT CGGTGGTACA
GTAGAACGTG CAAACCACCG TGAGTACGGA AAAGCTGTTC TTAAAGTAGA GAACGAATCA
AAATTATATG CGAACCTTCC AGAAGAGCAA GTTGTATGGA TGAGCCATGG CGACTTAGTA
ACTGGTTTAC CTGAAGGATT CGTAGTAGAC GCAACAAGTG AGTCTTGCCC AATTGCTGGT
ATGAGCAATG AAGCGAAAAA TTTATACGGT GTACAATTCC ACCCAGAAGT ACGTCACTCT
GAGCACGGTA ACGATTTAAT TAAAAACTTC GTATTCGGCG TATGTGGTTG TTCTGAAGGA
TGGAACATGG AAAACTTTAT CGAAGTAGAA TTAGAGAAAA TCCGTGAAAC TGTTGGAGAC
AAAAAAGTAC TATGCGCACT TAGCGGTGGG GTAGACTCTT CTGTTGTAGC AGTATTAATT
CATAAAGCAA TCGGTGATCA GTTAACATGT ATTTTCGTTG ACCATGGTTT ACTTCGTAAA
GGCGAAGCAG AAGGCGTTAT GAAAACATTT AGCGAAGGCT TCCATATGAA CGTTATTAAA
GTGGATGCAA AAGAACGCTT TATGAACAAG TTAAAAGGTG TAGAAGATCC AGAACAAAAA
CGTAAAATTA TCGGTAACGA ATTCATTTAC GTATTTGATG ATGAAGCTTC TAAATTAGAA
GGAATGGACT TCTTAGCACA AGGTACACTG TACACAGATA TCGTTGAAAG TGGTACAGCA
ACTGCACAAA CAATTAAATC TCACCATAAC GTTGGTGGAC TTCCAGAAGA CATGCAGTTC
AAATTAATTG AGCCTTTAAA TACGTTATTT AAAGACGAAG TACGTGTATT AGGATCTGAA
CTAGGAATTC CTGATGAAAT CGTATGGCGT CAACCATTCC CAGGCCCTGG TCTTGGTATT
CGTGTATTAG GTGAAATCAC AGAAGAGAAA TTAGAAATCG TTCGTGAATC TGATGCGATT
TTACGTGAAG AAATTACTAA AGCAGGATTA GACCGCGAAA TCTGGCAATA CTTCACTGCG
CTTCCTGGTA TGCGTAGCGT AGGTGTTATG GGTGACGAGC GTACTTACGA TTACACAGTA
GGTATCCGTG CAGTAACATC TATTGACGGT ATGACAGCTG ACTGGGCACG TATCCCTTGG
GACGTATTAG AGAAAATCTC TGTACGTATT GTAAACGAAG TAAAACACGT TAACCGTATC
GTGTATGATG TAACGAGTAA GCCACCAGCA ACTATTGAGT GGGAATAG
 
Protein sequence
MIILKKQHDT IIVLDFGSQY NQLIARRIRE FGVYSELHPH TITAEEIKAM NPKGIIFSGG 
PNSVYGEGAL HCDEKIFDLG LPIFGICYGM QLMTQQFGGT VERANHREYG KAVLKVENES
KLYANLPEEQ VVWMSHGDLV TGLPEGFVVD ATSESCPIAG MSNEAKNLYG VQFHPEVRHS
EHGNDLIKNF VFGVCGCSEG WNMENFIEVE LEKIRETVGD KKVLCALSGG VDSSVVAVLI
HKAIGDQLTC IFVDHGLLRK GEAEGVMKTF SEGFHMNVIK VDAKERFMNK LKGVEDPEQK
RKIIGNEFIY VFDDEASKLE GMDFLAQGTL YTDIVESGTA TAQTIKSHHN VGGLPEDMQF
KLIEPLNTLF KDEVRVLGSE LGIPDEIVWR QPFPGPGLGI RVLGEITEEK LEIVRESDAI
LREEITKAGL DREIWQYFTA LPGMRSVGVM GDERTYDYTV GIRAVTSIDG MTADWARIPW
DVLEKISVRI VNEVKHVNRI VYDVTSKPPA TIEWE