KEGG   Proteus sp. NMG38-2: LG402_16475
Entry
LG402_16475       CDS       T11216                                 
Symbol
ushA
Name
(GenBank) bifunctional UDP-sugar hydrolase/5'-nucleotidase UshA
  KO
K11751  5'-nucleotidase / UDP-sugar diphosphatase [EC:3.1.3.5 3.6.1.45]
Organism
pron  Proteus sp. NMG38-2
Pathway
pron00230  Purine metabolism
pron00240  Pyrimidine metabolism
pron00760  Nicotinate and nicotinamide metabolism
pron01100  Metabolic pathways
pron01110  Biosynthesis of secondary metabolites
pron01232  Nucleotide metabolism
Brite
KEGG Orthology (KO) [BR:pron00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    LG402_16475 (ushA)
   00240 Pyrimidine metabolism
    LG402_16475 (ushA)
  09108 Metabolism of cofactors and vitamins
   00760 Nicotinate and nicotinamide metabolism
    LG402_16475 (ushA)
Enzymes [BR:pron01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.5  5'-nucleotidase
     LG402_16475 (ushA)
  3.6  Acting on acid anhydrides
   3.6.1  In phosphorus-containing anhydrides
    3.6.1.45  UDP-sugar diphosphatase
     LG402_16475 (ushA)
SSDB
Motif
Pfam: 5_nucleotid_C Metallophos NadN_nucleosid_C PIG-L
Other DBs
NCBI-ProteinID: UDN35311
LinkDB
Position
complement(3454017..3455681)
AA seq 554 aa
MSLSFKLSACALTVSLAMAPALSQAWEKDKTYEITILHTNDHHGHFWHNDRGEYGLAAQK
TVVDNIRDEVAKKGGSVLLLSGGDINTGVPESDLQDAEPDFKGMNLVGYDAMALGNHEFD
NPLDVLRQQEKWATFPFLSANIYQKSTGERLFKPYTIFDKQGVKIAVLGLTTDDTVRIGN
PANFPDTEFRKPSDEAKKVVEELRTTEKPDIIIAATHMGHYDDGNHGSNAPGDVEMARAL
PKGYLDMIVGGHSQDPVCMSQENKNYKQADYVPGTPCAPDNQNGTWIVQAHEWGKYVGRA
DFEFRNGEFTLKHYQLIPINLNQKVKKDDGTTELVYYTEEIPHNPDMMKLLTPYQEKGGE
QLNVKVGEVVGKLEGDRSKVRFVQTNMARLLLSAQAERANADFAIMSGGGVRDSIESGDI
TYKDVLKVQPFANELVYVDFKGEEVEPYLSAVACMKVDSGAYAQFYNVSLTVDADCKVSD
VKIAGKPLDKTKSYRMATLNFNGIGGDGYPKIDSHPGYVNTGFVDAEVLKGYIESHSPLK
AADFEPKGEIVYKK
NT seq 1665 nt   +upstreamnt  +downstreamnt
atgagcttatcttttaaattatcggcatgcgctttgaccgtttctttagctatggcgccg
gcgttgtctcaggcatgggaaaaggataaaacgtacgaaattactattttgcacaccaat
gatcatcatggccatttctggcataacgatcgtggtgagtacggcttagcagctcaaaaa
accgttgttgataatatccgtgatgaagtggctaaaaaaggtggtagcgtactgctgtta
tcaggtggcgatatcaatacaggtgttccagaatctgacttacaagatgcagagcctgat
tttaaaggtatgaatcttgtgggttacgatgcaatggcactgggtaaccatgaattcgac
aatccgttagatgttttacgtcaacaagagaaatgggcaacattcccgttcttgtctgca
aatatttatcagaaaagtacaggtgagcgtttatttaagccttacaccatttttgataag
caaggcgtgaaaattgcagtgttgggcttaacgactgatgatactgtgcgtatcggtaac
ccagcaaacttccctgatactgaattccgtaagccttctgatgaggctaaaaaagttgta
gaagaactgcgtacaacagaaaagccagacattattatcgctgcaacccatatgggtcac
tatgatgatggtaatcacggttctaacgcaccaggtgatgtggaaatggcgcgtgcctta
ccaaaaggctaccttgatatgattgtgggtggtcactcacaagatcctgtttgtatgtct
caagagaacaaaaactacaaacaagctgattatgtaccaggaacgccttgtgcgcctgat
aatcaaaatggtacatggattgttcaggctcatgaatggggcaaatatgttggtcgtgca
gatttcgaattccgtaatggtgaattcacgttaaagcattatcaactcatcccaatcaac
ttaaatcaaaaagtgaagaaagacgacggtactactgaacttgtctactacacagaagaa
attcctcataacccagatatgatgaaattgctaaccccttaccaagaaaaaggtggcgag
caactgaatgttaaagttggtgaggttgttggtaaattagaaggtgatcgtagtaaagtt
cgctttgttcaaaccaatatggcgcgtttattactatcagctcaagctgaacgtgctaat
gcagactttgccattatgagtggtggtggtgtgcgtgattcaattgaatctggtgatatc
acttacaaagatgtattgaaagttcaaccatttgcaaatgaactggtttatgttgatttt
aaaggtgaagaggtagagccttatttgtcagccgttgcttgcatgaaagtagactccggt
gcttacgcacaattctacaatgttagcttaacagttgatgccgattgtaaagtcagcgat
gttaaaattgcaggtaaaccattagataaaaccaaatcttatcgtatggcgacattaaac
tttaacggtattggtggtgatggatatcctaagattgattcacaccctggttatgtgaat
accggttttgttgatgctgaagtattaaaaggctatatcgaatcacactctccattgaaa
gctgctgatttcgaacctaaaggcgaaattgtttacaaaaaataa

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