KEGG   Gamma proteobacterium HdN1: HDN1F_01750
Entry
HDN1F_01750       CDS       T01300                                 
Symbol
metX
Name
(GenBank) Homoserine O-acetyltransferase
  KO
K00641  homoserine O-acetyltransferase/O-succinyltransferase [EC:2.3.1.31 2.3.1.46]
Organism
gpb  Gamma proteobacterium HdN1
Pathway
gpb00270  Cysteine and methionine metabolism
gpb00920  Sulfur metabolism
gpb01100  Metabolic pathways
gpb01110  Biosynthesis of secondary metabolites
gpb01120  Microbial metabolism in diverse environments
gpb01230  Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:gpb00001]
 09100 Metabolism
  09102 Energy metabolism
   00920 Sulfur metabolism
    HDN1F_01750 (metX)
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    HDN1F_01750 (metX)
Enzymes [BR:gpb01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.1  Transferring groups other than aminoacyl groups
    2.3.1.31  homoserine O-acetyltransferase
     HDN1F_01750 (metX)
    2.3.1.46  homoserine O-succinyltransferase
     HDN1F_01750 (metX)
SSDB
Motif
Pfam: Abhydrolase_1 Hydrolase_4
Other DBs
NCBI-ProteinID: CBL43758
UniProt: E1VG16
LinkDB
Position
complement(227662..228846)
AA seq 394 aa
MPSQFPPDSVGVVHPQVAHFTEPFTLQCGKTLPSFELVYETYGTLNTARSNAVLICHALS
GHHHAAGYHRESDTKPGWWDTAIGPGKTIDTQRFFVVCLNNLGGCHGSTGPRSINPETQE
PYGGSFPIVTVKDWVNSQALLADRLGISCWAAIVGGSLGAMQGIQWAIDYPARLRNAIVI
AAAPKLSAQNIAFNEVARKAIQQDPDFHNGNYYSHNTKPRNGLSLARMLGHITYLSDAAM
REKFGRELRDGQIKFDFNVEFQVESYLNYQGEVFSQNFDANTYLLMTRALDYFDPAADFD
HDLVKTMAQTQCKFLVLSFTTDWRFSPERSHEIVNALLAARKSVSYADINSPQGHDSFLL
NVPRYLQLFKAYMDAIEIANHAPLLSSQENENAL
NT seq 1185 nt   +upstreamnt  +downstreamnt
atgcccagtcaatttccgccggattccgtgggggtagtgcacccccaagttgcgcacttt
accgaaccattcacgctgcagtgtggcaaaaccctaccttcctttgagttggtctacgaa
acctacggcacgctaaacactgctcgcagcaacgcggttttgatctgccatgcgctctct
ggccatcaccatgcggcaggctaccaccgcgagagcgacaccaagcccggttggtgggat
accgccattggccccggtaaaaccattgatacacaacgcttttttgtcgtctgcctcaac
aacctcggcggctgccacggcagcacggggccgcgcagcatcaaccccgaaacgcaagaa
ccttacggcggcagctttccgatcgtcacggtaaaagactgggtgaacagccaagcactg
ctcgcagatcgcctaggaatctcctgctgggccgccatcgtaggcggaagcctaggcgcg
atgcagggaatccagtgggcgattgactacccggctcgccttcgcaatgccattgtaatc
gcagccgcgcccaagctctcggcccaaaacattgcgtttaacgaagtcgcccgcaaagcg
atccagcaagatccagacttccacaacggcaactattacagccacaacaccaaaccgcgc
aacggcctttcactcgcgagaatgctcgggcacatcacctacctttcggatgcggccatg
cgcgagaaatttggccgcgagctgcgcgatggccagatcaagtttgactttaacgtcgag
tttcaggtggaaagctacctgaattatcagggtgaagttttttcgcaaaatttcgatgcc
aacacttatctgctgatgacgcgcgccttggattacttcgacccagcagcagattttgac
cacgaccttgtcaaaaccatggcgcaaacccagtgcaaattcctcgtgctttcatttacg
actgactggcgtttttcgcccgagcgttcccacgaaatcgttaacgccctgcttgcagcg
cgcaaaagcgtaagctatgccgatatcaatagcccgcaagggcacgattcttttctatta
aatgtgccgcgctatctgcaattattcaaggcttacatggacgccattgagattgccaac
cacgcaccactgttaagttcgcaggaaaatgaaaatgcgctctga

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