KEGG   Flavobacterium fluviale: HYN86_08010
Entry
HYN86_08010       CDS       T07714                                 
Symbol
serB
Name
(GenBank) phosphoserine phosphatase SerB
  KO
K01079  phosphoserine phosphatase [EC:3.1.3.3]
Organism
ffl  Flavobacterium fluviale
Pathway
ffl00260  Glycine, serine and threonine metabolism
ffl00680  Methane metabolism
ffl01100  Metabolic pathways
ffl01110  Biosynthesis of secondary metabolites
ffl01120  Microbial metabolism in diverse environments
ffl01200  Carbon metabolism
ffl01230  Biosynthesis of amino acids
Module
ffl_M00020  Serine biosynthesis, glycerate-3P => serine
Brite
KEGG Orthology (KO) [BR:ffl00001]
 09100 Metabolism
  09102 Energy metabolism
   00680 Methane metabolism
    HYN86_08010 (serB)
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    HYN86_08010 (serB)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:ffl01009]
    HYN86_08010 (serB)
Enzymes [BR:ffl01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.3  phosphoserine phosphatase
     HYN86_08010 (serB)
Protein phosphatases and associated proteins [BR:ffl01009]
 HAD phosphatases
  Other HAD phosphatases
   HYN86_08010 (serB)
SSDB
Motif
Pfam: ACT_6 HAD Hydrolase Hydrolase_3 ACT ACT_PSP_2 Put_Phosphatase HAD_2 ACT_AHAS_ss ACT_4 Chromo_MORC2_6th
Other DBs
NCBI-ProteinID: AXB56553
UniProt: A0A344LRL1
LinkDB
Position
1800191..1801420
AA seq 409 aa
MAIEDKEIILLKVSGHDKIGVTAGLTAVLAAYDANILDIGQADIHDTLSLGILFEIEAGS
SSAPVLKDLLFKAYELEIKVKFIPISIDDYEKWVKSQSKQRYIINILGEKLAASQLSAVT
QILSDQNLNIDSIIRLTGRTSIVEKEEYPRSCIQLSVTGEIVNKIIMTASFMEISRTLNV
DISFQEDNIYRRNRRLVCFDMDSTLIQTEVIDELAELNGVGDQVRAITESAMNGEIDFNE
SFKKRMALLEGLSEEVLQNVAVNLPITQGAHRLMKALKYYGYKTAILSGGFTYFGEYLQK
ELGIDYVHANKLEIKDGKLTGKYIGDIVDGQKKAEFLRAIAEKEGIHINQTIAVGDGAND
LPMLNLAGLGIAFHAKPKVKESASTSISSLGLDGVLYLLGYHDRYIDMM
NT seq 1230 nt   +upstreamnt  +downstreamnt
atggcgatagaagataaagagataattttattaaaagtttcaggacacgataaaattgga
gttacagcaggtttaacagctgtattggctgcttatgatgctaacattttagatattggc
caagccgatattcatgatacgctgtcacttggaattttattcgaaattgaagcaggatct
tcttctgcgcctgtgctcaaagatcttttgtttaaagcctatgaactggaaatcaaagtt
aaatttattccgatttctattgacgactacgaaaagtgggtaaaatcgcaatctaaacaa
cgttatatcatcaatattttgggtgagaaactagcggcttcacaattgtctgcagtaact
caaatattgtcagatcaaaatttaaatatcgattctattatccgactaactgggagaact
tcaattgttgaaaaagaagaatatccgcgttcttgtattcaattatctgtaacaggagaa
attgtaaacaagattattatgacggcaagttttatggaaatttcaagaacgcttaacgtc
gatatttcttttcaagaagataatatttacagaagaaaccgtcgtttagtctgcttcgat
atggattcaactcttattcaaacagaagttatcgatgagcttgcagaacttaatggagta
ggagatcaggttagagccattacagaatcggcgatgaatggagaaattgatttcaacgaa
agctttaaaaaacgtatggctttattggaaggattaagcgaagaagtactgcaaaatgtt
gctgttaatctgccaattacacaaggagcgcatcgtttaatgaaagccttaaaatattat
gggtataaaaccgcaatactttctggaggattcacctatttcggagaatacctgcaaaaa
gaattgggaatagattatgtccatgccaataaattggaaataaaagatggtaaactaaca
ggtaaatatattggtgatatagtagacggtcagaaaaaagcagagtttctacgagcaatt
gctgagaaagaaggaattcacatcaatcaaaccattgcagttggtgacggagcaaacgat
ttgccaatgctaaatttagctggtctgggaatcgcttttcacgcgaaaccaaaagttaaa
gaaagtgcttcaacttcaatttcaagtttaggtcttgatggggttttatatcttctaggt
taccacgatagatatatcgatatgatgtaa

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