KEGG   Thioalkalivibrio sp. K90mix: TK90_1278
Entry
TK90_1278         CDS       T01174                                 
Name
(GenBank) GTP cyclohydrolase II
  KO
K01497  GTP cyclohydrolase II [EC:3.5.4.25]
Organism
tkm  Thioalkalivibrio sp. K90mix
Pathway
tkm00740  Riboflavin metabolism
tkm00790  Folate biosynthesis
tkm01100  Metabolic pathways
tkm01110  Biosynthesis of secondary metabolites
tkm01240  Biosynthesis of cofactors
tkm02024  Quorum sensing
Module
tkm_M00125  Riboflavin biosynthesis, plants and bacteria, GTP => riboflavin/FMN/FAD
Brite
KEGG Orthology (KO) [BR:tkm00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00740 Riboflavin metabolism
    TK90_1278
   00790 Folate biosynthesis
    TK90_1278
 09140 Cellular Processes
  09145 Cellular community - prokaryotes
   02024 Quorum sensing
    TK90_1278
Enzymes [BR:tkm01000]
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.4  In cyclic amidines
    3.5.4.25  GTP cyclohydrolase II
     TK90_1278
SSDB
Motif
Pfam: GTP_cyclohydro2
Other DBs
NCBI-ProteinID: ADC71786
UniProt: D3S9T1
LinkDB
Position
complement(1354827..1355972)
AA seq 381 aa
MHNADRGIFDLRRGHPVLLSGEQSSVLVAAVEGLTPVLLDRLTHMTGGRPRLILTPHRAS
AMGWPQPLAEGWEGVALEFAPGTDPEALFTLASAPEASNEGEHPAHALDQAEVRPAEPAE
VAALELARAGRLLPAVVSARVPEPVPEAIHSALADGMFLDVGEREARAVAHHPRLELAYV
SEAPVPLADAPVTRFMLFREGNGILEHVAVVIGEPNEWPDAVPVRLHSACLTGDLFGSLR
CDCGDQLRLGVKTINESGGGVLLYLAQEGRGIGLANKLRAYTMQTAGLDTIDSDCQLGFE
ADGRRYDAAVEMLEFLGIDTVRVLTNNPAKIEALRAGGIRVVAREPVHGTLNPHNLRYLS
TKADRGGHWLQELLASEAERG
NT seq 1146 nt   +upstreamnt  +downstreamnt
atgcacaacgccgatcgtgggattttcgaccttcgccggggccatccggttttgctaagc
ggcgagcaatccagtgtactggtagccgccgttgaaggtctgaccccggtgttgctggat
cgcctgacgcatatgaccggcggtcgcccacgtctgattctaacgccccaccgcgcgtcc
gcaatgggctggccgcaaccgctggccgagggctgggaaggcgtcgcgctggaatttgcg
cccggaactgacccggaggccctgtttaccctggccagtgccccggaggcctcgaacgag
ggggagcacccggcccatgccctggatcaggcggaggttcgtcccgccgagcccgcggaa
gtcgcggcgctggagctggcccgcgccggtcgtctgctgccggccgtcgtatcggcgcga
gtgcccgaaccggtacccgaggccatccattcggcgctcgccgacgggatgtttctggat
gtgggcgagcgcgaggcacgggcggttgcgcatcacccacgccttgagctggcctacgtg
agcgaggcgccggtacccctcgcggatgcccccgtgacccggttcatgctgttccgggag
ggaaacgggatcctggaacatgtggcggtggttatcggcgagccgaacgagtggccggat
gccgttccggtacggctgcattcggcctgcctgacgggcgatctgttcggcagcctgcgc
tgtgattgcggcgatcagctgcgcctcggcgtgaagacgatcaacgagagtggtggcggg
gtgctgctgtatctggcccaggaggggcggggtatcggcctggcgaacaagctgcgcgcc
tacacgatgcaaacggcgggtctggacacgatcgattccgactgccaactgggcttcgag
gctgatggacgccgttacgatgcggccgtggagatgctggagtttctcggcatcgacacg
gtgcgcgtactgacgaacaaccccgcgaagatcgaggcgctgcgcgctgggggcatccgg
gtggtggcccgcgagcccgtccacggcacgctgaatccgcacaacctgcgctatctcagt
accaaggcggaccgcggcggccattggttgcaggaactgctggcctcggaggcggagcgg
ggctga

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