KEGG   Cupriavidus oxalaticus: E0W60_02615
Entry
E0W60_02615       CDS       T06004                                 
Name
(GenBank) SMP-30/gluconolactonase/LRE family protein
  KO
K01053  gluconolactonase [EC:3.1.1.17]
Organism
cox  Cupriavidus oxalaticus
Pathway
cox00030  Pentose phosphate pathway
cox00053  Ascorbate and aldarate metabolism
cox00930  Caprolactam degradation
cox01100  Metabolic pathways
cox01110  Biosynthesis of secondary metabolites
cox01120  Microbial metabolism in diverse environments
cox01200  Carbon metabolism
cox01220  Degradation of aromatic compounds
cox01240  Biosynthesis of cofactors
Brite
KEGG Orthology (KO) [BR:cox00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00030 Pentose phosphate pathway
    E0W60_02615
   00053 Ascorbate and aldarate metabolism
    E0W60_02615
  09111 Xenobiotics biodegradation and metabolism
   00930 Caprolactam degradation
    E0W60_02615
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:cox04147]
    E0W60_02615
Enzymes [BR:cox01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.17  gluconolactonase
     E0W60_02615
Exosome [BR:cox04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   E0W60_02615
SSDB
Motif
Pfam: SGL Str_synth Arylesterase Lactonase Mala_s_1-like
Other DBs
NCBI-ProteinID: QBY50129
UniProt: A0A4P7L8R0
LinkDB
Position
1:complement(610089..611009)
AA seq 306 aa
MFLLNSPVIREASSFSSLPARYRHPRRTEWSRANQGGRESDSFLEGPVFDDAGNLYVTDI
PNGRIFRIDQKGDWDLVAEWDGEPNGMKFLNAGSLLVTDYRNGLMEVDVRTGTVRPYLPR
RNTESFKGVNDLTLDSQGNIYFTDQGQTGLHDPSGRVYRLTGEGRLELLLSNVPSPNGIV
LSPDERFLFVAVTRGNCVWRMPLQEDGSVSKAGQFFTSYGPSGPDGLAMDVDGRLLVANP
GLAYVWVLNHRAEPVEVIRGTAGHSLTNVAFGGPDASTLYVTDSTAGEILQIGMSVPGVR
HRHLAG
NT seq 921 nt   +upstreamnt  +downstreamnt
atgtttctactgaattcgccggtcatacgtgaagcgtcgtcgttctccagcctgcctgcc
cgctatcgccacccgcggcgaaccgaatggtccagggcgaaccagggagggcgcgaaagc
gattccttcctggaaggccccgtcttcgacgatgccggcaacctgtacgtcaccgatatt
cccaatggccggatcttcaggatcgaccagaagggcgattgggacctggttgccgaatgg
gacggcgagcccaacgggatgaaattcctgaatgcagggtccttgcttgtcacggactac
cgcaacgggctgatggaggttgacgtgcgaacgggtaccgtccggccgtacctgccgcgc
cggaataccgaaagcttcaagggcgtcaacgacttgacgctggactctcagggaaacatc
tatttcacggaccaggggcaaacggggctgcatgaccctagcggccgcgtgtatcggctg
actggcgaagggcgcctcgaactgctgctttccaacgtgccgagtccgaacggcatcgtg
ctgtcaccggacgagcgcttcctgttcgttgccgtcacacggggcaactgcgtctggcgc
atgcccttgcaggaggacggcagcgtatccaaggccgggcagttctttacgtcatatggt
cccagcgggccggacggcctcgccatggatgtcgatggccgcctccttgttgccaatccc
ggccttgcctatgtctgggtgctcaatcatcgtgccgagccggtcgaggtgatccgtggc
actgctggccattcgctgaccaacgtcgccttcggcggacccgatgcaagcacgctttac
gtgaccgattcaactgccggcgagattctgcagattggcatgtcggttcccggcgtgagg
caccggcacctggccgggtga

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