KEGG   Cupriavidus metallidurans: Rmet_1966
Entry
Rmet_1966         CDS       T00351                                 
Symbol
thrA
Name
(GenBank) homoserine dehydrogenase
  KO
K00003  homoserine dehydrogenase [EC:1.1.1.3]
Organism
rme  Cupriavidus metallidurans
Pathway
rme00260  Glycine, serine and threonine metabolism
rme00270  Cysteine and methionine metabolism
rme00300  Lysine biosynthesis
rme01100  Metabolic pathways
rme01110  Biosynthesis of secondary metabolites
rme01120  Microbial metabolism in diverse environments
rme01230  Biosynthesis of amino acids
Module
rme_M00018  Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:rme00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    Rmet_1966 (thrA)
   00270 Cysteine and methionine metabolism
    Rmet_1966 (thrA)
   00300 Lysine biosynthesis
    Rmet_1966 (thrA)
Enzymes [BR:rme01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.1  With NAD+ or NADP+ as acceptor
    1.1.1.3  homoserine dehydrogenase
     Rmet_1966 (thrA)
SSDB
Motif
Pfam: Homoserine_dh NAD_binding_3 ACT GFO_IDH_MocA ACT_AHAS_ss ACT_4 ACT_7 Peptidase_S66 DXP_reductoisom Sacchrp_dh_NADP ACT_9
Other DBs
NCBI-ProteinID: ABF08845
UniProt: Q1LLY1
LinkDB
Position
complement(2141794..2143104)
AA seq 436 aa
MNPIKVGLLGIGTVGSGTFNVLKRNQEEIRRRAGRGIEIAVVADLNTERARELTGGTVDV
VSDANDVVTRPDIDIVIELIGGYGIARELVLKAIENGKHVVTANKALLAVHGNEIFEAAR
KKGVIVAFEAAVAGGIPIIKALREGLTANRIQWIAGIINGTTNFILSEMRDKGLDFDTVL
KEAQQLGYAEADPTFDIEGVDAAHKVTLMSAIAFGMPVQFDRAHVEGITKLSAIDIKYAE
ELGYRIKLLGITRRREEGVELRVHPTLVPASRLIANVEGAMNAVLVQGDAVGATLYYGKG
AGAEPTASAVIADLVDVTRLHTADPNHRVPHLAFQPDELSNVPVLPIDEVTSSYYLRMRV
SDETGVLAEITRILAEAGISIDAMLQKESREGEPQTDIIILTHLTREKHVNAAIRSIEAL
QTVLSPVTRLRMEELN
NT seq 1311 nt   +upstreamnt  +downstreamnt
atgaatcccatcaaagtcggccttctcggcatcggtaccgtcggtagcggcacgttcaac
gtgctcaagcgcaatcaggaggaaattcgtcgccgtgcaggccgcggcatcgagattgcg
gtggtggctgacctgaacaccgagcgcgcccgcgagctgaccggtgggacggtggacgtc
gtcagcgatgcgaacgacgtggtgacgcgtccggacatcgacatcgtcatcgagctgatc
ggcggctatggcatcgcccgcgagttggtgctcaaggcgatcgagaatggcaagcacgtg
gtcaccgccaacaaggcgctgctggccgtgcatggcaacgagattttcgaggccgcgcgc
aagaagggcgtgatcgtcgccttcgaggcggcagtggcgggtggcatccccatcatcaag
gcgctgcgcgaaggcctgaccgcgaaccgcatccagtggatcgccggcatcatcaacggc
acgacgaacttcatcctgtccgagatgcgcgacaagggtctggatttcgataccgtgctc
aaggaagcgcagcaactgggctatgccgaggccgatccgaccttcgacatcgaaggcgtc
gacgccgcgcacaaggtcacgctgatgagcgcgatcgcattcggtatgccggtgcagttc
gaccgcgcccacgtggaaggcatcaccaagctgtcggccatcgatatcaaatacgccgag
gaactgggttatcgcatcaagctgctcggcatcacccgccgccgcgaggaaggcgtggaa
ctgcgcgtgcacccgacgctggtgccggcctcgcgcctgatcgccaacgtggaaggcgcg
atgaacgccgtgctggtgcagggcgatgccgtgggcgccactctgtactacggcaagggc
gccggcgccgagccgaccgcctcggccgtgattgccgatctggtcgacgtgacccgcctg
cacaccgccgatccgaaccaccgcgtaccgcacctggcattccagccggacgagctgtcg
aacgtgcccgtgctgccgatcgacgaagtcactagctcgtactacctgcgtatgcgtgtg
tcggacgaaactggcgtgctggcagagatcacgcgcatcctggcggaagccggcatcagc
atcgacgcgatgctgcagaaggaatcgcgcgaaggcgagccgcagaccgacatcatcatc
ctgacgcacctgacgcgcgagaagcacgtcaatgccgcgattcgcagcatcgaagcgctc
cagaccgtgctgtcgccggtcacgcgcctgcgcatggaagaactgaactga

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