Xylanibacter ruminicola: PRU_1999
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Entry
PRU_1999 CDS
T01212
Symbol
serB
Name
(GenBank) phosphoserine phosphatase SerB
KO
K01079
phosphoserine phosphatase [EC:
3.1.3.3
]
Organism
pru
Xylanibacter ruminicola
Pathway
pru00260
Glycine, serine and threonine metabolism
pru00680
Methane metabolism
pru01100
Metabolic pathways
pru01110
Biosynthesis of secondary metabolites
pru01120
Microbial metabolism in diverse environments
pru01200
Carbon metabolism
pru01230
Biosynthesis of amino acids
Module
pru_M00020
Serine biosynthesis, glycerate-3P => serine
Brite
KEGG Orthology (KO) [BR:
pru00001
]
09100 Metabolism
09102 Energy metabolism
00680 Methane metabolism
PRU_1999 (serB)
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
PRU_1999 (serB)
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
pru01009
]
PRU_1999 (serB)
Enzymes [BR:
pru01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.3 phosphoserine phosphatase
PRU_1999 (serB)
Protein phosphatases and associated proteins [BR:
pru01009
]
HAD phosphatases
Other HAD phosphatases
PRU_1999 (serB)
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Gene cluster
GFIT
Motif
Pfam:
ACT_6
Hydrolase
HAD
Hydrolase_3
ACT_PSP_2
ACT
Put_Phosphatase
HAD_2
ACT_4
Motif
Other DBs
NCBI-ProteinID:
ADE81921
UniProt:
D5EUH0
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All DBs
Position
2411618..2412850
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AA seq
410 aa
AA seq
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MKKEQILVRITGQDRPGLTASVMGILAKYDAQILDIGQADIHSTLSLGILIRMDETNSGQ
VMKELLFKATELGVQIGFSPISDNEYEDWVGHQGKNRYILTVMGRQLEARQIEAATSVIA
EQGLNIDSIIRLTGRKSIKNPAKHTRACIEFSLRGEPKDRQEMQSKLMKLSSEMEIDFSF
QLDDMFRRMRRLICFDMDSTLIQTECIDELAERNGVGAQVRAITESAMRGEIDFKESFTR
RVSLLKGLDVSVMQEIAEKLPITEGVDRLMTTLKRYGYKIAILSGGFTYFGEYLQRRYGI
DYVYANELEIGPDGKLTGRYVGEIVDGHRKAELLKLIAQVEKVNLAQTIAVGDGANDLPM
ISEAGLGIAFHAKPRVVANAEQSINTIGLDGVLYFLGFKDSYLGDQGVMQ
NT seq
1233 nt
NT seq
+upstream
nt +downstream
nt
atgaagaaagaacagatactagttagaattacaggtcaggatcgcccaggccttaccgcc
tcagtaatgggcatcctcgcaaaatacgatgcacagattctcgacatcggccaggccgat
atccactctaccctgtcgctgggtatcctcatccgtatggacgagaccaactcaggtcag
gtaatgaaggagttgcttttcaaggccaccgagctgggtgtgcagataggtttctcaccc
attagcgacaatgagtacgaggactgggtaggccatcagggtaagaaccgttacattctc
accgtgatgggtcgccagttagaggcacgccagattgaggccgctacctcggtgattgcc
gagcaggggttaaatatcgactctatcatccgtcttaccggtcgtaagagcatcaagaac
cccgccaagcacacccgtgcctgcatcgagttctcgctgcgtggcgagcccaaggaccgt
caggaaatgcagtcgaaactgatgaaactgtcgagcgagatggagatcgacttctcgttc
cagctcgatgacatgttccgtcgcatgcgccgtctgatttgtttcgatatggactctaca
ctgattcagaccgagtgtatcgacgagctggccgagcgcaatggcgttggtgcacaggta
cgcgccatcaccgagagtgccatgcgtggcgagatcgactttaaggagagtttcacccgt
cgtgtcagtctgctcaagggtctcgatgtgagcgtgatgcaggagatagccgagaaacta
cctatcaccgagggtgtagatcgtttgatgactaccctgaagcgctatggatataagatt
gccattctctcaggaggattcacttactttggcgaatacctgcagcgccgttatggtatt
gattatgtatatgctaacgaactggagattggccccgacggcaaactcacaggtcgttat
gtgggcgagatagtagatggccatcgcaaggccgaactgctgaagttgattgcccaggtt
gagaaggtgaacctggcacagaccattgctgtgggcgatggcgccaacgacctgccaatg
atctcagaggccggtctgggtatcgccttccacgccaagccccgtgtggtggccaatgcc
gaacagagcattaacaccatcggtcttgatggcgtactctacttcttaggattcaaggac
agctacctgggcgatcaaggagtgatgcaataa
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