KEGG   Yersinia pestis El Dorado: CH46_3841
Entry
CH46_3841         CDS       T03719                                 
Name
(GenBank) D-isomer specific 2-hydroxyacid dehydrogenase, NAD binding domain protein
  KO
K00058  D-3-phosphoglycerate dehydrogenase / 2-oxoglutarate reductase [EC:1.1.1.95 1.1.1.399]
Organism
ypl  Yersinia pestis El Dorado
Pathway
ypl00260  Glycine, serine and threonine metabolism
ypl00270  Cysteine and methionine metabolism
ypl00680  Methane metabolism
ypl01100  Metabolic pathways
ypl01110  Biosynthesis of secondary metabolites
ypl01120  Microbial metabolism in diverse environments
ypl01200  Carbon metabolism
ypl01230  Biosynthesis of amino acids
Module
ypl_M00020  Serine biosynthesis, glycerate-3P => serine
Brite
KEGG Orthology (KO) [BR:ypl00001]
 09100 Metabolism
  09102 Energy metabolism
   00680 Methane metabolism
    CH46_3841
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    CH46_3841
   00270 Cysteine and methionine metabolism
    CH46_3841
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:ypl04147]
    CH46_3841
Enzymes [BR:ypl01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.1  With NAD+ or NADP+ as acceptor
    1.1.1.95  phosphoglycerate dehydrogenase
     CH46_3841
    1.1.1.399  2-oxoglutarate reductase
     CH46_3841
Exosome [BR:ypl04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   CH46_3841
SSDB
Motif
Pfam: 2-Hacid_dh_C 2-Hacid_dh NAD_binding_2 KARI_N
Other DBs
NCBI-ProteinID: AJJ14508
UniProt: A0AAX2HZH6
LinkDB
Position
4222811..4223761
AA seq 316 aa
MRLVVTDQAFGNTVYEQAAANAVGADFAAYQCRTEDETRDAVQGADVVLNNFAPMTERVM
AAMPPGAVIVRYGVGVDNIDLSAARKRGMRICNVPDYGIEEVADHAAAMTLALARKLGRY
EAGIRSGRWEIDQMVDGVRSLRDTTVGLIGLGRIARAYATRMAVFGCRIIGFDPYVTETE
ARSAGIEPLPQDKVIASAHILSLHVPLTPETRDLIDTTAIARMPEGAILINCARGGLVNE
VALIEALTRGHLSGAGLDVFEQEPLPADSALRKAPHLLLSPHAAFFSDASVKKLQQLASE
EALRGLRGEPLRCPLT
NT seq 951 nt   +upstreamnt  +downstreamnt
atgagattggtcgtcaccgatcaggctttcggcaataccgtttatgaacaagcagcggcc
aacgcggttggtgccgatttcgccgcctatcaatgccgcactgaagatgaaacgcgggat
gccgtgcagggcgcagatgtcgtgttgaacaacttcgccccgatgaccgagcgggtgatg
gcggccatgccccccggcgcggtgatcgtgcggtacggcgtcggtgtcgataacatcgat
ctctctgcggccagaaaacgggggatgcgtatttgtaatgtgccggattacggcattgaa
gaggttgccgaccacgccgccgccatgacattggcgttagcacgcaaactggggcgctac
gaggcagggatccgtagcggcaggtgggaaattgaccagatggtcgatggtgtgcggtca
ttgcgtgacaccacggtagggctgatcggccttgggcgcatcgcgcgcgcctatgcaaca
cgaatggcggttttcggttgccgcatcatcggcttcgacccgtatgtcactgagacagaa
gcccgttcggcggggatcgagccgctgccacaggataaggtcatcgcctcggcccacatc
ctgtcgctacatgttccgctaacgcctgaaactcgcgacctgatcgataccaccgctatc
gcacgtatgcctgagggcgcgatcctgatcaactgcgcccgtggcgggctggtgaatgag
gtggccttaatcgaggcattgacccgtggccacctatcgggggccggactcgacgtcttc
gagcaagaacccctcccggctgattcggccttgcgtaaagcgccccatctccttctctcg
ccccatgccgcttttttctcggatgcgtcggtcaaaaaactgcaacaactggcttctgaa
gaggccctacggggactgcgcggtgagccactgcgctgcccactgacttaa

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