Mycolicibacterium monacense: EWR22_09410
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Entry
EWR22_09410 CDS
T08739
Symbol
serB
Name
(GenBank) phosphoserine phosphatase SerB
KO
K01079
phosphoserine phosphatase [EC:
3.1.3.3
]
Organism
mmon
Mycolicibacterium monacense
Pathway
mmon00260
Glycine, serine and threonine metabolism
mmon00680
Methane metabolism
mmon01100
Metabolic pathways
mmon01110
Biosynthesis of secondary metabolites
mmon01120
Microbial metabolism in diverse environments
mmon01200
Carbon metabolism
mmon01230
Biosynthesis of amino acids
Module
mmon_M00020
Serine biosynthesis, glycerate-3P => serine
Brite
KEGG Orthology (KO) [BR:
mmon00001
]
09100 Metabolism
09102 Energy metabolism
00680 Methane metabolism
EWR22_09410 (serB)
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
EWR22_09410 (serB)
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
mmon01009
]
EWR22_09410 (serB)
Enzymes [BR:
mmon01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.3 phosphoserine phosphatase
EWR22_09410 (serB)
Protein phosphatases and associated proteins [BR:
mmon01009
]
HAD phosphatases
Other HAD phosphatases
EWR22_09410 (serB)
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Paralog
Gene cluster
GFIT
Motif
Pfam:
ACT_PSP_2
HAD
Hydrolase
ACT_6
Hydrolase_3
ACT
HAD_2
S6PP
Put_Phosphatase
ACT_7
Hydrolase_like
Motif
Other DBs
NCBI-ProteinID:
QHP85569
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Position
1983803..1985056
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AA seq
417 aa
AA seq
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MTSPVGSSRKRSSLLITVTGVDQPGVTSALFEVLSRHRVELLNVEQVVIRGRLTLGVLVA
AAPEVADGDGLRTDVEEAIHDVGLDVTIERSADTPVMREPSTHTIVVLGRPITAEAFGVV
AREVAALGVNIDTIRGVSDYPVTGLELRVSVPAGAAYGQLQKAMARVAVAEGVDIALEDY
SLSRRAKRLIVFDVDSTLIQGEVIEMLAARAGAEAAVAEVTEAAMRGELDFAESLHRRVA
TLAGLPASVLDDVADQIELTAGARTTLRTLRRLGFHCGIVSGGFRQVIEPLAHELMMDFV
AANELEIVDGKLTGRVVGEVIDRPGKAKALRDFAQQAGVPMEQTVAVGDGANDIDMLSAA
GLGVAFNAKPALREVADASLSHPYLDTVLFILGVTRGEIEAADAVDGLLRRVEIPED
NT seq
1254 nt
NT seq
+upstream
nt +downstream
nt
gtgacctcacctgtcggctcttcgcgcaagcgctcatcgctgctgatcaccgtcaccgga
gtcgaccagccgggtgtcacctcggcgctgttcgaggtgctgtcgcggcatcgggtcgag
ctgctcaacgtcgaacaggtcgtcatccggggccgcctcacactcggtgtgctggtggcc
gccgcgccggaggtcgccgacggtgacgggttgcgcaccgacgtcgaggaggcgattcac
gacgtcggcctcgatgtgacgatcgagcgcagcgccgacaccccggtgatgcgggagccg
tcgacgcacacgatcgtcgtgctgggccggccgatcaccgccgaggcgttcggtgtggtg
gcccgcgaggtcgcggcgctcggggtcaacatcgacaccatccgcggggtctccgactac
ccggtcacgggtctggaactgcgggtgtcggtgcctgccggcgccgcgtacggccagctg
cagaaggcgatggcacgggtcgccgtcgccgagggtgtcgacatcgcgctggaggactac
agcctgtcccgtcgggcgaagcgactcatcgtgttcgacgtcgactcgaccctgatccag
ggcgaggtgatcgagatgctggccgcgcgtgcgggggcggaggccgccgtcgccgaggtc
accgaggccgccatgcgcggtgaactcgacttcgccgaatcgctgcaccgccgcgtcgcg
acgctggcgggtctgccggcatccgtgctcgacgacgtggccgaccagatcgaactcacc
gcgggcgcgcgcacgaccctgcgcaccctgcgccgcctcggattccactgcggcatcgtc
tccggcggcttccggcaggtgatcgaaccgctggcgcacgagctgatgatggacttcgtc
gccgccaacgaactcgagatcgtcgacgggaagctgaccggccgcgtcgtcggtgaggtc
atcgaccggcccggtaaggccaaggcgctgcgcgacttcgcccagcaggccggcgtcccc
atggagcagaccgtggcggtcggtgacggcgccaacgacatcgacatgctgtcggcggcc
gggctcggcgtggcgttcaacgccaaacccgcgctgcgcgaggtcgccgacgcctcgttg
agccacccctacctggacaccgtgctgttcatcctcggcgtcacccgcggggaaatcgaa
gccgccgatgctgtcgacggcctgctgcgccgcgtcgagatccccgaggactga
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