Candidatus Protofrankia datiscae: FsymDg_3859
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Entry
FsymDg_3859 CDS
T01530
Name
(GenBank) homoserine kinase
KO
K00872
homoserine kinase [EC:
2.7.1.39
]
Organism
fsy
Candidatus Protofrankia datiscae
Pathway
fsy00260
Glycine, serine and threonine metabolism
fsy00270
Cysteine and methionine metabolism
fsy01100
Metabolic pathways
fsy01110
Biosynthesis of secondary metabolites
fsy01120
Microbial metabolism in diverse environments
fsy01230
Biosynthesis of amino acids
Module
fsy_M00018
Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:
fsy00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
FsymDg_3859
00270 Cysteine and methionine metabolism
FsymDg_3859
Enzymes [BR:
fsy01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.39 homoserine kinase
FsymDg_3859
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Motif
Pfam:
GHMP_kinases_N
GHMP_kinases_C
MVD-like_N
Motif
Other DBs
NCBI-ProteinID:
AEH11136
UniProt:
F8AVP8
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Position
complement(4526113..4527288)
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AA seq
391 aa
AA seq
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MNRPAAAPLLAASRTAQAARVRVPATSANLGPGFDACGLALGLYDELTVTVTGAGLSIEV
TGEDDGVRDETHLVVRALRAGFAAAGITPAGIRLNCVNRIPHGRGLGSSAAAIVGGLLAA
SALGGGRPDIPEVFTLACRLEGHPDNVAAALYGGFTIAWHDSDGPPRVARTDPPEDLRPV
VFVPTRRQSTAQSRVALPAGVPHADAAMSAGRAALLAMAMSGGPRPRSGGAGTAAVASPG
TPGPENNDRAAAGPGNGRRRGDGQNGYAGLADDRLAGFSAGRPAGSQTGKQVGNQHVRPG
AVSWRDALLAAVDDRLHQPYRLPSMPETSDLLARLRAAGLAAVLSGSGPTVLALAVDQDQ
AALARTCAGSDFSVFDLPVDRDGARVELVVG
NT seq
1176 nt
NT seq
+upstream
nt +downstream
nt
gtgaaccgcccggcggccgcgccactcctggccgcgtcccggacggcccaggcggcccgg
gtgcgggtaccggcgaccagcgccaacctcggcccgggcttcgacgcctgcggcctcgcg
ctcggcctgtacgacgagctcaccgtcaccgtcaccggtgccggcctgtcgatcgaggtg
accggtgaggacgacggcgtccgtgacgagacccatctggtcgtccgtgccctgcgggcc
ggtttcgccgcggccggcatcaccccggccgggatccggctgaactgcgtcaaccgcatc
ccgcacggccgtggcctgggctcgtcggccgcggcgatcgtgggcggcctgctcgcggcg
agcgcgctgggcggcggccgcccggacatcccggaggtcttcacgctcgcctgccggctc
gaggggcacccggacaacgtcgccgccgccctctacggcggtttcaccatcgcctggcac
gacagcgacggcccgccgcgggtggcccgtaccgaccctcccgaggatctgcgaccggtc
gtgttcgtgcccacccgccgtcagtcgacggcacagtcacgggtggccctgccggcgggg
gtgccccacgcggacgcagcgatgagcgccgggcgggccgcgctgctggcgatggcgatg
tcgggaggcccgcggccccgctccggcggagccggtaccgccgcggtggcctccccgggg
acgcccgggccggagaacaacgaccgcgccgctgccggcccggggaacggccgtcggcgt
ggcgacggacagaacggttacgccggcctcgccgacgaccggctggccggcttctccgcg
gggaggccggccggcagccagactgggaagcaggtcgggaatcaacacgtccggccgggc
gctgtgtcctggcgggacgcgttgctggcggccgtcgatgaccggctacaccagccctat
cggctgccgtccatgcccgagaccagcgatctgctcgcccggctgcgggcggcggggctg
gcggccgtcctgtcgggttccggaccgacggtgctggcactggccgtcgaccaggaccag
gccgccctcgcgcggacctgcgccggcagcgatttcagcgtgttcgacctgcccgtcgac
cgagacggggcgcgggtcgagctcgtcgtcggctga
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