KEGG   Vibrio fluvialis: AL536_17575
Entry
AL536_17575       CDS       T04379                                 
Symbol
serB
Name
(GenBank) phosphoserine phosphatase SerB
  KO
K01079  phosphoserine phosphatase [EC:3.1.3.3]
Organism
vfl  Vibrio fluvialis
Pathway
vfl00260  Glycine, serine and threonine metabolism
vfl00680  Methane metabolism
vfl01100  Metabolic pathways
vfl01110  Biosynthesis of secondary metabolites
vfl01120  Microbial metabolism in diverse environments
vfl01200  Carbon metabolism
vfl01230  Biosynthesis of amino acids
Module
vfl_M00020  Serine biosynthesis, glycerate-3P => serine
Brite
KEGG Orthology (KO) [BR:vfl00001]
 09100 Metabolism
  09102 Energy metabolism
   00680 Methane metabolism
    AL536_17575 (serB)
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    AL536_17575 (serB)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:vfl01009]
    AL536_17575 (serB)
Enzymes [BR:vfl01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.3  phosphoserine phosphatase
     AL536_17575 (serB)
Protein phosphatases and associated proteins [BR:vfl01009]
 HAD phosphatases
  Other HAD phosphatases
   AL536_17575 (serB)
SSDB
Motif
Pfam: Hydrolase DUF5609 HAD Hydrolase_3 Put_Phosphatase S6PP HAD_2 HHH Peptidase_M32
Other DBs
NCBI-ProteinID: AMF95239
UniProt: A0AAX2LQX0
LinkDB
Position
2:complement(2155503..2156483)
AA seq 326 aa
MDALKTLTIKKHTTLLNRLPETRFASQLDKSKANWIIFGEFLSPQQFDDIDFFTGQYNTI
VETWKVGRYDVALMAGELTPEHETILKGLELDFARISEVPDLSKPGLIVLDMDSTAIQIE
CIDEIAKLAGVGEEVAEVTERAMQGELDFEQSLRQRVGKLKDADAAILEAVRSELPLMPE
LPELIGTLQSFGWKTAIASGGFTYFSDHLKQMLSLDHAQSNTLEIVDGKLTGQVLGDVVS
AQTKADILVELAQQFDIEMHNTVAVGDGANDLVMMSAAGLGVAYHAKPKVEAKAQTSVRF
SALGGVLCILSAGLVKQQKLSWKAQP
NT seq 981 nt   +upstreamnt  +downstreamnt
atggacgctttgaaaaccttaactattaaaaaacatacgactttgctcaaccgtctgcca
gaaacccgttttgctagccagttagataaatccaaagccaactggatcatttttggcgag
tttctgtcgccacagcaatttgatgacattgattttttcactggtcagtacaacaccatc
gtggaaacctggaaagtgggtcgttacgacgtcgcgttaatggcgggtgagttgacgccg
gagcatgaaaccatcctcaaaggtttggaactcgatttcgcccgcatctcggaagtgccc
gatctatccaaaccagggctgatcgtattggacatggactccacggcgattcaaatcgag
tgtatcgatgaaattgctaagttagccggcgtgggggaagaagtggcagaagtgaccgaa
cgtgcgatgcagggagaactggatttcgaacagagcctgcgccaacgagtgggcaaactg
aaagatgccgatgctgcaattctggaagcggtgcgcagtgaactgccattgatgcctgaa
ctgccggagctgattggcacattgcagtcgtttggttggaaaacggcgattgcctcaggc
ggatttacctatttctcggatcatctcaaacagatgttgtcactggatcatgctcagtcc
aacacgctggaaattgtcgatggcaaactgacgggacaggtgctgggcgatgtggtgtcc
gcgcaaaccaaagccgatatcctggttgaactggcgcagcagttcgatatcgaaatgcac
aacacggttgccgtcggcgatggtgccaacgacttggtgatgatgtccgccgcgggattg
ggcgtggcgtatcatgccaagccgaaagtcgaagcgaaagcgcaaacctcggttcgtttc
tcggcgttgggcggcgtattgtgtattctctccgctggtttggtgaagcagcagaagctg
agctggaaagcgcagccgtaa

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