Gene Xfasm12_1588 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagXfasm12_1588 
SymbolguaA 
ID6119416 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameXylella fastidiosa M12 
KingdomBacteria 
Replicon accessionNC_010513 
Strand
Start bp1658868 
End bp1660436 
Gene Length1569 bp 
Protein Length522 aa 
Translation table11 
GC content54% 
IMG OID641649572 
ProductGMP synthase 
Protein accessionYP_001776127 
Protein GI170730694 
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 clones30 
Plasmid unclonability p-value
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
ATGACGCCGA ATATTCATCA CGACAAAATT CTTATCCTCG ATTTCGGCGC ACAGTACACC 
CAGTTGATTG CCCGTCGTAT CCGTGAAATT GGTGTCTACT GCGAAGTGTG GCCCTGGGAT
CACTCCCCTG AAGAGATTCT GAGCTTCGGA GCCAAAGGTA TCATCCTCTC CGGTGGCCCT
GAATCGACCA CATCCCCGGG TGCGCCTGCA GCACCGCAGC ACGTCTTTGA TAGTGACTTA
CCAATCTTCG GTATTTGCTA TGGCATGCAA ACCATGGCCG TACATCTTGG GGGTGCGACC
GAGGCAGCCG ACAAACGTGA GTTTGGTCAT GCCTCGGTCC AGGTGATTTA CCCGGATACC
TTGTTTTCCG GCTTGTCCGA TCATCCCTCT GAGTTCCGTC TGGATGTGTG GATGAGTCAT
GGTGACCATG TTTCACGCGT CCCGCCCGGC TTCACCATTA CAGCCGCCAC TGACCGCATC
CCCATTGCGG CGATGAGTCG CGAGGATAAG CGCTGGTATG GCGTGCAATT CCATCCGGAA
GTGACCCATA CCTTACAGGG ACAGGCTTTA TTGCGCCGTT TTGTGGTTGA TATATGTGGC
TGCCAGACGT TATGGACTGC CGCTAACATT ATTGAAGACC AAATCGCTCG TGTGCGTGAA
CGTGTCGGTC GCGATGAAGT CATTCTCGGC CTGTCTGGTG GCGTTGATTC TTCCGTCGTC
GCCGCACTTT TACACAAAGC CATTGGTAGC CAACTGACGT GTGTATTTGT TGATACCGGC
TTGCTTCGCT GGGGGGAAGG CGACCAAGTG ATGGCCATGT TTGAGGAACA TATGGGCGTC
AACGTGGTAC GTATCAATGC GGCATCGCGT TACTTCGACG CACTGCAAGG TGTCTACGAC
CCAGAAGCCA AACGCAAAAT CATCGGCAAC CTGTTCATCC AGATATTCGA GGAAGAGGCC
AGCAAACGAA AGCAGGCCAA ATGGTTGGCC CAAGGCACGA TTTATCCTGA TGTGATCGAA
TCGGCCGGCA GCAAAACCGG CAAAGCCCAC GTAATCAAAA GCCATCACAA CGTCGGCGGC
TTGCCGGAGC AGATGACCCT GGGTATGGTC GAACCATTAC GTGAATTGTT CAAAGATGAA
GTGCGCCGCC TTGGCGTTGC ACTGGGCTTG CCCCATGCCA TGGTATATCG CCATCCATTC
CCAGGACCTG GCTTGGGAGT GCGTATCCTT GGTGAAGTCA AGCCGGAGTA TGCCGAGTTA
CTGGCCAAGG CTGACTCGAT TTTTATTGAT GAACTCCATC AAGCCGACCT GTACGACAAG
GTCAGCCAAG CCTTTGCAGT CTTTCTTCCG GTGAAATCAG TTGGCGTTGT TGGTGATGCC
CGTGCGTACG AATGGGTGAT TGCACTGCGC GCGGTTGAGA CCGTTGATTT CATGACGGCA
CACTGGGCAC CACTGCCGTA TGACTTCCTG AGTACCGTCT CCAACCGCAT CATCAATGAA
CTACGCGGCG TGTCCCGTGT TGTCTACGAT ATTTCCGGAA AACCGCCAGC CACGATTGAG
TGGGAGTGA
 
Protein sequence
MTPNIHHDKI LILDFGAQYT QLIARRIREI GVYCEVWPWD HSPEEILSFG AKGIILSGGP 
ESTTSPGAPA APQHVFDSDL PIFGICYGMQ TMAVHLGGAT EAADKREFGH ASVQVIYPDT
LFSGLSDHPS EFRLDVWMSH GDHVSRVPPG FTITAATDRI PIAAMSREDK RWYGVQFHPE
VTHTLQGQAL LRRFVVDICG CQTLWTAANI IEDQIARVRE RVGRDEVILG LSGGVDSSVV
AALLHKAIGS QLTCVFVDTG LLRWGEGDQV MAMFEEHMGV NVVRINAASR YFDALQGVYD
PEAKRKIIGN LFIQIFEEEA SKRKQAKWLA QGTIYPDVIE SAGSKTGKAH VIKSHHNVGG
LPEQMTLGMV EPLRELFKDE VRRLGVALGL PHAMVYRHPF PGPGLGVRIL GEVKPEYAEL
LAKADSIFID ELHQADLYDK VSQAFAVFLP VKSVGVVGDA RAYEWVIALR AVETVDFMTA
HWAPLPYDFL STVSNRIINE LRGVSRVVYD ISGKPPATIE WE