KEGG   Xenorhabdus doucetiae: XDD1_0203
Entry
XDD1_0203         CDS       T03784                                 
Symbol
metL
Name
(GenBank) Bifunctional aspartokinase/homoserine dehydrogenase 2 [Includes: Aspartokinase; Homoserine dehydrogenase]
  KO
K12525  bifunctional aspartokinase / homoserine dehydrogenase 2 [EC:2.7.2.4 1.1.1.3]
Organism
xdo  Xenorhabdus doucetiae
Pathway
xdo00260  Glycine, serine and threonine metabolism
xdo00261  Monobactam biosynthesis
xdo00270  Cysteine and methionine metabolism
xdo00300  Lysine biosynthesis
xdo01100  Metabolic pathways
xdo01110  Biosynthesis of secondary metabolites
xdo01120  Microbial metabolism in diverse environments
xdo01230  Biosynthesis of amino acids
Module
xdo_M00016  Lysine biosynthesis, succinyl-DAP pathway, aspartate => lysine
xdo_M00017  Methionine biosynthesis, aspartate => homoserine => methionine
xdo_M00018  Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:xdo00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    XDD1_0203 (metL)
   00270 Cysteine and methionine metabolism
    XDD1_0203 (metL)
   00300 Lysine biosynthesis
    XDD1_0203 (metL)
  09110 Biosynthesis of other secondary metabolites
   00261 Monobactam biosynthesis
    XDD1_0203 (metL)
Enzymes [BR:xdo01000]
 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
     XDD1_0203 (metL)
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.2  Phosphotransferases with a carboxy group as acceptor
    2.7.2.4  aspartate kinase
     XDD1_0203 (metL)
SSDB
Motif
Pfam: AA_kinase Homoserine_dh NAD_binding_3
Other DBs
NCBI-ProteinID: CDG15914
UniProt: A0A068QMM6
LinkDB
Position
208440..210875
AA seq 811 aa
MSTLATAGAESGRQLHKFGGSSLADVKCYQRVADIMANYSQPGDLMVVSAAGSTTNQLID
WLKLSQSDRISAHQIQQSLRRYQQELIRGLLPEAVAEELSAMFIADLERLSALLDKPVTD
ITYAEVVGHGEIWSARLMAAVLEDQGIPSAWLDARQFLRAERVAQPQVDISLSQPLFSQL
LIQNPNKRLVVTGFISRNQKGETVLLGRNGSDYSATQVGALAGAKKVTIWSDVAGVYSAD
PRKVKDACLLPLLRLDEASELARLAAPVLHTRTLQPVSISDIDLQLRCSYQPEQGSTRIE
RVLATGTGAKIVTSHDDVCLIELHVSSAHDFRQIYKDIDALLKRAQVRPLATGLHADCNL
IQLCYTSEVVNSALDVLQDAALPGKLSLREGLALVALVGAGVCKNPLHSHRFYQQLKDQP
VEFIWHAEDGISLVAVLRSNQTSHLIQGLHQSLFRAEKRIGLVLFGKGNIGSRWLELFAR
EQKNISARSDFEFILAGVVDSRRSLLNYQGIDASRALAFFDDEATEHEEDALFLWMRAHP
YDDLVVLDVTASEELAKEYIYFASYGFHVISANKVAGSSASNTYRLIRDAFAKTGRHWLY
NATVGAGLPINYSVRDLRESGDTILSISGVFSGTLSWLFLQFDGSVPFSELVEQAWQQGL
TEPDPRIDLSGQDVMRKLVILAREAGYEIEPDHVRVESLVPEEARGGSLEEFFENSAAIN
EQMLQRLEAAREMGMVLRYVARFDASGKAKVGVEAVRSDHPLASLLPADNVFAIESRWYR
DNPLVIRGPGAGRDVTAGAIQSDLNRLSQLL
NT seq 2436 nt   +upstreamnt  +downstreamnt
atgagtacactggcaacagcgggggcggaatctggccgccagttacataaatttggcggc
agcagcctggcggatgtgaagtgctatcagcgggtagctgacattatggcgaactacagc
cagccgggtgatttgatggtggtatcggcagcagggagtaccaccaaccagttgatcgac
tggcttaaattgagccagagtgaccggatctccgcccatcaaatccagcaatctttgcgg
cgttaccagcaagaattaatccgtggtttgttgcccgaagccgttgcagaagagctgagt
gccatgtttatcgctgatctggaaagattaagtgccttgttggataaacccgtcaccgat
attacttatgcggaagtggtcggtcatggagaaatctggtctgcgcgcttaatggcggcg
gtacttgaggatcaggggatacccagcgcatggctggatgcgcgtcaattcctgcgggca
gagcgcgttgcacagccgcaggttgatatcagtttatcccagcccctgtttagccaatta
ttgatccaaaatcccaataagcgtttagtggtgaccggttttatttccagaaatcagaag
ggggaaacggtattactggggcgcaatggcagcgactattcggcgacccaagtcggggcg
ttggcgggcgccaaaaaagtcacgatttggagtgatgtggctggggtttacagtgccgat
ccgcgtaaagtcaaagatgcctgcctgttgccgttgttgcgtttggatgaagccagtgaa
ttggcgcgtctggcggcaccggtgctgcatacccggacattgcagccggtttccatcagc
gatattgatctgcaattgcgttgcagttatcagcctgaacagggttccacccggattgaa
cgggtgctggcaacggggactggggccaaaatcgtgaccagccatgatgatgtttgcctg
attgaactgcatgtttcttctgcccatgatttcaggcaaatctacaaagacattgacgcg
ttgttaaagcgcgctcaagtccggccactggcaaccggattacatgcagactgcaacctg
atccaactttgttacacctcagaggttgtcaatagcgcccttgatgttttgcaggatgcc
gccttacccggcaaactctctttgcgtgaaggcttggcgctggtggcgttggtcggggcg
ggggtatgcaaaaatccgctgcacagccatcgtttttaccaacaattaaaagatcagccc
gttgaatttatctggcacgcggaagatggcatcagtcttgtggcggtactgcgttccaat
cagacgtcgcatttgattcagggattacaccaaagcctgtttcgggcagaaaaacgcatc
ggtttggtgctgtttggcaaaggaaatattggttctcgttggttagaactgtttgcccgc
gaacaaaagaatatttctgcccgcagcgattttgaatttattttggcgggtgtcgtcgat
agccgccggagtttgctgaattatcagggcattgatgccagccgggcactggccttcttt
gatgatgaagcgactgaacatgaagaagatgcgctgtttttatggatgcgggcgcatcct
tatgacgatttggtggttctggacgtgacggcaagtgaagaattagccaaagagtatatc
tattttgccagttatggatttcacgtcatcagtgccaacaaagttgccggctcttccgcc
agcaacacctaccgcctgatccgcgatgcctttgcaaaaacggggcgccattggttatac
aacgccacggtgggtgccggattgccgattaactactccgtcagggatctgcgggaaagc
ggcgatacgattttgtctatcagcggcgttttctccggcacattatcctggctgttcttg
caatttgatggttcggtgcctttcagtgaattagttgaacaggcatggcaacaggggttg
acggaacccgatccacgtatcgatctctctggtcaggatgtgatgcgtaagctggtgatc
ctggctcgcgaagccggttatgagatagagcctgatcacgtgcgggttgagtcgctggtg
ccggaagaagcacgaggcggctctctcgaagagttctttgaaaacagtgccgccattaat
gagcagatgctgcaacgtctggaagcggcacgggaaatgggcatggtactccgctatgtc
gcacgttttgatgccagtggtaaagccaaagtgggcgtggaagcggtgcgcagtgatcac
ccattggcctcactgctgccggccgataatgtctttgcgatagaaagccgctggtatcgc
gataatccgctggtgatccgcggccccggtgcgggacgggatgtcacggcgggcgcaatt
caatccgatttaaaccgcctgtcgcaacttttgtag

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