KEGG   Temperatibacter marinus: QGN29_04505
Entry
QGN29_04505       CDS       T09370                                 
Name
(GenBank) bifunctional aconitate hydratase 2/2-methylisocitrate dehydratase
  KO
K01682  aconitate hydratase 2 / 2-methylisocitrate dehydratase [EC:4.2.1.3 4.2.1.99]
Organism
tmk  Temperatibacter marinus
Pathway
tmk00020  Citrate cycle (TCA cycle)
tmk00630  Glyoxylate and dicarboxylate metabolism
tmk00640  Propanoate metabolism
tmk00720  Other carbon fixation pathways
tmk01100  Metabolic pathways
tmk01110  Biosynthesis of secondary metabolites
tmk01120  Microbial metabolism in diverse environments
tmk01200  Carbon metabolism
tmk01210  2-Oxocarboxylic acid metabolism
tmk01230  Biosynthesis of amino acids
Module
tmk_M00009  Citrate cycle (TCA cycle, Krebs cycle)
tmk_M00010  Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
tmk_M00012  Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:tmk00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    QGN29_04505
   00630 Glyoxylate and dicarboxylate metabolism
    QGN29_04505
   00640 Propanoate metabolism
    QGN29_04505
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    QGN29_04505
Enzymes [BR:tmk01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.3  aconitate hydratase
     QGN29_04505
    4.2.1.99  2-methylisocitrate dehydratase
     QGN29_04505
SSDB
Motif
Pfam: Aconitase_2_N Aconitase Aconitase_B_N
Other DBs
NCBI-ProteinID: WND03634
UniProt: A0AA52EJH2
LinkDB
Position
1004537..1007299
AA seq 920 aa
MSLYTEYLNEIETRHLQGLNPKPIETGTLVQELINQINDTANEHRKQSLDFFISNTLPGT
TSAAGVKAAFLKEIILRISSVEEISVDFAFELLSHMKGGPSVEVLIDLALGGDEKIAAQA
AGILKTQVFLYEADTDRLKAAFKRGHAVAIDLLESYAKAEFFTKLPAIEETIDVVTFVCA
EGDVSTDLLSPGNQAHSRSDRELHGKCMISEAAQAEIQDLQKKHPNKRVMLVAEKGTMGV
GSSRMSGVNNVALWTGKKASPYVPFVNIAPIVGGTNGISPIFLTTVGVTGGIGLDLKNWV
KKTDANGNPVLDENGDPELQQEYSIDTGTVLTINTKEKKLYDASGKELADISSALTPQKV
EFIKAGGSYAIVFGKKLQNFAAATLGIDLPSVFAASKEISHEGQGLTAVEKIFNKNAVGT
TPGAVLHAGSDARVQVNIVGSQDTTGLMTSQELEAMAATVISPVVDGAYQSGCHTASVWD
SKAQTNIPKLMKFMNKFGLITARDPKNSYHAMTDVIHKVLNDITVDDWAIIIGGDSHTRM
SKGVAFGADSGTVALALATGEATMPIPESVKVTFKGALKDHMDFRDVVHATQAQMLKQFG
DNVFQGRVIEVHIGTLLSDQAFTFTDWTAEMKAKASICISEDGTLIDSLEISKSRIQIMI
DKGMDNDKGVLQGLIDIADKRINEIKSGEKPALTPDSSAKYFAEVVVDLDEIIEPMIADP
DVNNEDVSKRYTHDTIRPVSFYGGDKKVDLGFVGSCMVHKGDMQIIAQMLRNLEKQNGSV
TFKAPLVVAPPTYNIVDELKAEGDWEVLQKYAGFEFDDTNPKNAARTDYENILYLERPGC
NLCMGNQEKASKGDTVMATSTRLFQGRVVEDSNEKKGESLLSSTPVVVLSTILGRTPTID
EYTAAVEGINLTKFAPPLAS
NT seq 2763 nt   +upstreamnt  +downstreamnt
atgagtttatatacagaatatttaaacgagatcgaaacacgtcaccttcaaggtcttaac
ccaaaaccgattgaaacaggcacgttggtccaagaattaatcaaccagattaacgacact
gcaaatgagcaccgcaaacagtcgctcgatttctttatctcgaacactttgcctggcaca
accagtgcggcaggtgtgaaagcggcttttctaaaagaaatcattctcagaatctcttct
gttgaagaaatatcagtcgacttcgcttttgagctcttgtctcatatgaaaggggggcct
tctgtagaggttctgattgaccttgcactgggcggtgatgaaaagatcgcagctcaagca
gctggtattcttaaaactcaggttttcctctacgaagctgatacagatcgactaaaggct
gcttttaaacgcggtcatgctgttgcgatagatttacttgaaagctatgcaaaagcagaa
ttttttacaaaactccctgccatagaagaaaccattgatgtggtcacttttgtatgtgca
gaaggggatgtatccactgaccttctatcgccggggaaccaagctcattctcgctctgac
cgtgaactgcatgggaagtgtatgatttccgaagcagctcaagctgaaattcaagacctc
caaaaaaagcacccaaataagcgcgtgatgttggttgcagaaaaaggcaccatgggtgtg
gggtcttctcgcatgtctggggtgaataacgttgccctgtggacaggcaaaaaagccagc
ccttatgttccttttgtgaacattgctcctattgtagggggaaccaatggtatctctcca
atctttttaaccactgtaggggtgactggtggtattggtcttgatcttaaaaactgggtg
aagaaaactgacgcgaatggcaacccagttctagatgaaaacggcgaccctgaacttcag
caggaatattccattgatacaggcactgtgttgaccatcaacacgaaagaaaagaaatta
tatgatgcctcaggtaaagagcttgcggatatttcaagtgcgctgaccccacaaaaagtg
gagttcatcaaagcaggcggctcatacgccatcgtctttggtaaaaagctacagaatttt
gcagctgcgacacttggcattgaccttccttctgtctttgcagcttctaaagagatctcc
catgagggacaagggctcaccgctgtagagaagattttcaataaaaacgctgttggcaca
acacctggcgccgttttgcacgcgggttctgatgcgcgtgtacaagtgaatattgtcgga
tcacaagatacaacaggcttgatgacctcccaagaactagaagcaatggctgcaacagtg
atatctcctgttgttgacggcgcctatcaatctgggtgtcacacggcatccgtttgggac
agtaaagcacagacaaacattccaaagctgatgaagtttatgaataaatttggcctgata
actgcccgcgaccctaaaaattcctatcacgccatgaccgatgtcatccacaaagttttg
aatgatatcacggttgatgactgggctattattattggtggcgatagtcacacacgaatg
tctaaaggtgtggcgtttggtgctgattcaggaactgtggctctggcactggcgaccggt
gaagcaaccatgccaattccagaatcagtcaaagttacttttaaaggggctttgaaagat
catatggacttccgcgacgtggttcatgcaactcaagcgcaaatgctcaaacaatttggc
gacaatgttttccagggccgtgttattgaagtccatattggaacccttctttcagaccaa
gcctttacctttacggattggaccgctgaaatgaaggcaaaagcctctatttgtatttct
gaagatggcacattaatcgactctcttgagatctctaaaagccgtatacagattatgata
gataaaggcatggataacgataaaggcgtgttgcaaggacttattgatattgctgataag
cggattaatgaaattaagtcaggggaaaaaccagctcttacccctgactctagtgccaaa
tatttcgcagaggttgtcgttgaccttgatgaaatcatagaaccaatgattgcggatcct
gatgtgaacaatgaagatgtttctaagcgatatacccatgatactattcgccccgtttcc
ttctacggtggtgataagaaagttgaccttggtttcgtaggttcttgtatggttcataaa
ggcgatatgcaaattattgctcaaatgttgagaaaccttgaaaagcaaaatggttcagta
acatttaaagcgccgctcgtcgttgccccgcctacatataatattgttgatgagctcaaa
gcagaaggcgactgggaagtcttacaaaagtatgcaggctttgaatttgacgatactaac
cctaaaaatgcagctcgtactgactatgagaatatcctctatctagagcgtccgggatgt
aacctctgcatggggaaccaagaaaaagcatcaaaaggcgacaccgtcatggcaacttct
acccgtctattccaagggcgagttgtggaagattccaatgagaaaaaaggggagtccttg
ctctcttcaacccctgttgttgttctttcaacaattctcggccgaacaccgacgattgat
gaatatacagctgcagttgagggcattaaccttaccaaatttgccccgcccctagcgagc
taa

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