Alteromonas mediterranea DE1: amad1_13395
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Entry
amad1_13395 CDS
T02340
Name
(GenBank) SerB protein
KO
K01079
phosphoserine phosphatase [EC:
3.1.3.3
]
Organism
amaa
Alteromonas mediterranea DE1
Pathway
amaa00260
Glycine, serine and threonine metabolism
amaa00680
Methane metabolism
amaa01100
Metabolic pathways
amaa01110
Biosynthesis of secondary metabolites
amaa01120
Microbial metabolism in diverse environments
amaa01200
Carbon metabolism
amaa01230
Biosynthesis of amino acids
Module
amaa_M00020
Serine biosynthesis, glycerate-3P => serine
Brite
KEGG Orthology (KO) [BR:
amaa00001
]
09100 Metabolism
09102 Energy metabolism
00680 Methane metabolism
amad1_13395
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
amad1_13395
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
amaa01009
]
amad1_13395
Enzymes [BR:
amaa01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.3 phosphoserine phosphatase
amad1_13395
Protein phosphatases and associated proteins [BR:
amaa01009
]
HAD phosphatases
Other HAD phosphatases
amad1_13395
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Hydrolase
HAD
Hydrolase_3
Put_Phosphatase
S6PP
HAD_2
HHH
DUF5777
Motif
Other DBs
NCBI-ProteinID:
AFV86177
LinkDB
All DBs
Position
complement(3013733..3014716)
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AA seq
327 aa
AA seq
DB search
MKNTLFPNINNDEQHSAAQLSQHINTDHNSKAYTHTLTVIGQAITPYLLDGVLNKIKDVF
SPTGAAFHHLHQCLGDDVIEVRGTLNSAQLENINPLLGDVSSAFNLDIGLQASRPSLSQP
GLLVMDMDSTVIAIECIDEIAKLAGVGEQVAEVTAKAMRGEIAFNDSLTHRVACLEGVPV
AHLKKIRDSLPIMPGIQSLLAYLKQHNWKLAIASGGFTFFADHLKARLGLDFAISNTLAV
SENLLTGKVEGEIVNADVKARTVKQLAEKWQIPTSQTVAMGDGANDLVMMAESALGVACH
GKPLVNEKAGVAIRIGSLHSMLYFLDK
NT seq
984 nt
NT seq
+upstream
nt +downstream
nt
atgaaaaacacgcttttcccaaatattaacaatgacgaacagcatagtgctgcccagcta
tcacaacacattaatactgatcacaatagcaaggcctatacacacacgcttacggtaata
ggtcaagccattaccccttaccttttggacggtgtgctcaataaaataaaggatgtgttc
tcaccgacaggggcggcttttcaccatctacaccaatgtcttggcgatgatgttattgag
gttcgtggcacgcttaatagcgcacagcttgaaaatataaacccgctacttggtgatgtg
tcatctgccttcaaccttgatatcggtttacaggcttctcgtccgtcgctgtctcagcca
ggtctgttagtgatggatatggacagtaccgttattgccatagagtgtattgacgaaatt
gcaaaattggcgggcgtgggtgagcaagttgcagaagttaccgccaaggccatgcgcggt
gaaatagcctttaacgacagtttgactcaccgcgtagcgtgtttggaaggcgtgcccgta
gcacaccttaaaaaaattcgcgatagcctcccaatcatgccgggtatacaaagcttgctc
gcttaccttaaacagcacaattggaaattggctattgcctcgggtggttttacctttttt
gccgatcatttaaaagcaagattaggattagactttgctatatcaaatacattagcggtt
agcgaaaacctacttaccggtaaagttgaaggagaaatagtgaacgccgatgttaaggcg
cgcacggttaagcagcttgccgaaaagtggcaaattccaacgagtcagaccgtggcaatg
ggagacggggcaaacgatttggtgatgatggctgaatcggccctgggtgtcgcttgtcac
ggcaagcctttggttaacgaaaaagccggtgtcgcaattcgtattggcagtttgcacagc
atgctttattttcttgataaatag
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