KEGG   Vibrio fluvialis: AL536_17670
Entry
AL536_17670       CDS       T04379                                 
Name
(GenBank) threonine synthase
  KO
K01733  threonine synthase [EC:4.2.3.1]
Organism
vfl  Vibrio fluvialis
Pathway
vfl00260  Glycine, serine and threonine metabolism
vfl00750  Vitamin B6 metabolism
vfl01100  Metabolic pathways
vfl01110  Biosynthesis of secondary metabolites
vfl01120  Microbial metabolism in diverse environments
vfl01230  Biosynthesis of amino acids
Module
vfl_M00018  Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:vfl00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    AL536_17670
  09108 Metabolism of cofactors and vitamins
   00750 Vitamin B6 metabolism
    AL536_17670
Enzymes [BR:vfl01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.3  Acting on phosphates
    4.2.3.1  threonine synthase
     AL536_17670
SSDB
Motif
Pfam: PALP Thr_synth_N THR4_C WHD_GPIID
Other DBs
NCBI-ProteinID: AMF95256
UniProt: A0AAX2LV09
LinkDB
Position
2:complement(2176664..2177947)
AA seq 427 aa
MKLYNIKENDEQVSFGQAVRQGLGRNQGLFFPSELPKFDDIDALLAEDFVSRSTKILSAL
IGDELPEEKVNAMVDAAFQFPAPIKSVKDGVYALELFHGPTLAFKDFGGRFMAQSLAAVS
NGGKITILTATSGDTGAAVAHAFYGMEDINVVILYPKGKISPLQEKLFCTLGKNIHTVAI
NGDFDACQALVKKAFDDAELRQQIGLNSANSINISRLMAQICYYFEAASQMSKAERENLV
ISVPSGNFGNLTAGLLAKALGLPIKRFIAATNANDTVPRYLETGKWDPKPTVATTSNAMD
VSQPNNWPRIEELCRLKDWGLETLGKGAVLDHESAQSVQELNELGYLCEPHGAIAYRVLS
EQLKPGETGLFLCTAHPAKFKEVVDEILGTDIELPAPLAKHAVMELLSVDLDNDFDALKA
LLVKVQP
NT seq 1284 nt   +upstreamnt  +downstreamnt
atgaagctttacaacataaaagaaaatgatgaacaagtctcctttggccaagccgtgcgc
caaggattaggccgcaaccaaggcctgtttttcccgtcggaattgccaaagtttgacgac
attgatgcactgctggcggaagatttcgtctctcgcagcaccaaaattctgtctgcgctg
attggcgatgagctaccggaagaaaaagtgaacgcgatggtggatgcggccttccaattc
cctgcgcccataaagtcagttaaagacggcgtttatgcgctggagctgttccacggtcct
acgctggcgtttaaagactttggtggtcgttttatggcccaatctctggcagcggtttct
aacggcggtaagatcaccattctgaccgcaacatcgggtgataccggtgcggcggttgcc
cacgccttctacggcatggaagacatcaatgtggtgattctgtatccgaaaggcaagatc
agcccattgcaagagaagctgttctgtacgctgggtaagaacattcatactgtggccatc
aatggcgacttcgatgcttgtcaggcgttagtgaaaaaagcgtttgatgatgctgagctg
cgtcagcagatcggcctcaactccgcgaattctatcaacatcagccgcctgatggcgcaa
atctgttactactttgaagcggcatcgcagatgagcaaggcagagcgcgagaacctggtg
atttcggtcccgagtggtaacttcggtaatctgactgcaggcctgctggccaaagcgctg
ggtctgccgatcaaacgtttcattgccgcaacgaacgccaacgacactgtgcctcgttat
ctggaaaccggtaaatgggatccaaaaccgacggtcgcaaccacatcgaatgcgatggat
gtaagccagccaaacaactggccacgcattgaagagctgtgccgcctgaaagattggggc
ctggaaacattgggcaaaggtgcggtgcttgatcacgaaagcgcgcaatcggtacaagag
ctcaatgaactgggctatttgtgtgaaccacatggcgcgatcgcttaccgggtactcagc
gagcaactgaaaccgggcgaaaccggtctgttcttgtgtacagcgcatccggcgaaattc
aaagaagtcgtcgatgagattttaggtacggatatcgaactgcccgcgccgctcgccaaa
catgcggtgatggagctgttgtcagttgatctcgataatgactttgatgctctgaaagcc
ttgctggtaaaagtgcagccttaa

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