KEGG   Mixta calida: C2E16_05615
Entry
C2E16_05615       CDS       T05419                                 
Name
(GenBank) bifunctional diaminohydroxyphosphoribosylaminopyrimidine deaminase/5-amino-6-(5-phosphoribosylamino)uracil reductase RibD
  KO
K11752  diaminohydroxyphosphoribosylaminopyrimidine deaminase / 5-amino-6-(5-phosphoribosylamino)uracil reductase [EC:3.5.4.26 1.1.1.193]
Organism
pcd  Mixta calida
Pathway
pcd00740  Riboflavin metabolism
pcd01100  Metabolic pathways
pcd01110  Biosynthesis of secondary metabolites
pcd01240  Biosynthesis of cofactors
pcd02024  Quorum sensing
Module
pcd_M00125  Riboflavin biosynthesis, plants and bacteria, GTP => riboflavin/FMN/FAD
Brite
KEGG Orthology (KO) [BR:pcd00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00740 Riboflavin metabolism
    C2E16_05615
 09140 Cellular Processes
  09145 Cellular community - prokaryotes
   02024 Quorum sensing
    C2E16_05615
Enzymes [BR:pcd01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.1  With NAD+ or NADP+ as acceptor
    1.1.1.193  5-amino-6-(5-phosphoribosylamino)uracil reductase
     C2E16_05615
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.4  In cyclic amidines
    3.5.4.26  diaminohydroxyphosphoribosylaminopyrimidine deaminase
     C2E16_05615
SSDB
Motif
Pfam: RibD_C dCMP_cyt_deam_1 MafB19-deam Inv-AAD
Other DBs
NCBI-ProteinID: AUY24440
LinkDB
Position
1205072..1206178
AA seq 368 aa
MRDEEFMARALELARRGRFTTTPNPNVGCVIVRDGVIVGEGWHQRAGEPHAEVHALRMAG
DRARGATAYVTLEPCSHHGRTPPCCDALIAAGISRVVAAMQDPNPEVAGRGLYRLQQAGI
NVSHGMMMAEAEALNRGFLKRMRTGFPFVQLKLGASLDGRTAMASGESQWITSPQARRDV
QRLRAQSSAILSSSATVLADDPALTVRWDELGERIQADYPQENLRQPVRVVIDSQNRVTP
QHRLLHQPGETWLARLEADESQPWPPTARQLRVPARDGRVDLVSLMMLLGKQQINHVWVE
AGAQLAGALLTAGVVDELIVYLAPKLLGDGARGLCALPGLARLQDAPAFRFSEAVQVGPD
LRLTLRPV
NT seq 1107 nt   +upstreamnt  +downstreamnt
atgcgtgatgaagagtttatggcgcgcgcgctggagcttgcgcggcgcggtcgttttacg
acgacgcctaatcccaacgtcggctgcgtgatcgtgcgcgacggcgttatcgtcggcgaa
gggtggcatcagcgcgccggcgaaccgcacgctgaggtgcatgcgctgcgcatggcgggc
gaccgcgcgcggggcgccaccgcctacgtgacgctggagccatgcagccatcatggacgc
acgccgccctgctgcgacgcgctgatcgctgccgggataagccgcgtggtggcggcgatg
caggacccgaatcctgaagtggccggccgcggtctttatcgcctgcaacaggcgggcatc
aacgtcagccacggcatgatgatggcggaagcggaagcgctgaaccgcggctttttgaaa
cggatgcgcaccggctttcccttcgtgcagctaaaattaggcgcgtcgctggatggccgt
acggcgatggccagcggcgagagccagtggataacttcgccgcaggcgcgacgtgacgtg
cagcgcctgcgcgcgcagagttcggcgatcctcagcagcagcgcgaccgtgctggcggac
gacccggcgctgacggtgcgctgggacgagctgggcgaacggattcaggcggactatccg
caggagaatttacgccagccggtgcgggtggtgatcgacagccagaaccgcgtgacgccg
cagcatcggttgctgcatcagccgggcgagacctggctggcgcgccttgaggccgatgag
agccagccgtggccgccgacggcgcgacagctgcgcgtgccggcgcgcgacggccgcgtt
gatctggtgtcgctgatgatgctgctgggcaagcagcagattaaccacgtgtgggtagag
gcgggcgcgcagctggcgggcgcactgctgacagcaggcgtggtggacgagctgatcgtt
tatctggcgccgaaattattgggcgacggcgcgcgcggcctgtgcgcgttgccgggcctg
gcgcgtttacaggatgcgccagcctttcgctttagcgaggcagtgcaggtgggtcccgat
ctgcgcctgacgctccgaccggtttag

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