KEGG   Helicobacter pylori UM298: K748_01175
Entry
K748_01175        CDS       T02757                                 
Name
(GenBank) aconitate hydratase 2
  KO
K01682  aconitate hydratase 2 / 2-methylisocitrate dehydratase [EC:4.2.1.3 4.2.1.99]
Organism
hem  Helicobacter pylori UM298
Pathway
hem00020  Citrate cycle (TCA cycle)
hem00630  Glyoxylate and dicarboxylate metabolism
hem00640  Propanoate metabolism
hem00720  Other carbon fixation pathways
hem01100  Metabolic pathways
hem01110  Biosynthesis of secondary metabolites
hem01120  Microbial metabolism in diverse environments
hem01200  Carbon metabolism
hem01210  2-Oxocarboxylic acid metabolism
hem01230  Biosynthesis of amino acids
Module
hem_M00010  Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
Brite
KEGG Orthology (KO) [BR:hem00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    K748_01175
   00630 Glyoxylate and dicarboxylate metabolism
    K748_01175
   00640 Propanoate metabolism
    K748_01175
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    K748_01175
Enzymes [BR:hem01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.3  aconitate hydratase
     K748_01175
    4.2.1.99  2-methylisocitrate dehydratase
     K748_01175
SSDB
Motif
Pfam: Aconitase_2_N Aconitase_B_N Aconitase
Other DBs
NCBI-ProteinID: AGR62130
LinkDB
Position
1580988..1583546
AA seq 852 aa
MKDFLEDYKKSVLEREGEGIPPLPLNAKQVEAVVEILMKDPTNATFAKELLIHRVSPGVD
EGAKVKAEFLAKLSQKKLECAHISALEATTLLGTMLGGYNVEPLIMGLESQDKNIAKESA
KALKATLLVYGSFDKIAAMSKTNALAKEVLESWANAEWFLNKEPLNECIEACVFKIDGET
NTDDLSPASDAFTRSDIPLHAKAMLKNRIENYEQRIKAIKAKGVPVAYVGDVVGTGSSRK
SATNSIMWHFGKDIPFVPNKRSGGIVIGGVIAPIFFATCEDSGSLPIVADVKDLKEGDII
KIYPYKGEITLNDKVVSAFKLEPETLLDEVRASGRIPLIIGRGLTNKARKFLGLGESEAF
KKPSAPKSDAKGYTLAQKIVGHACGVKGILPGTYCEPKVTTVGSQDTTGAMTRDEVKELA
SLKFDAPFVLQSFCHTAAYPKPSDVSLHATLPSFITQRGGVALHPGDGVIHTWLNRMGLP
DTLGTGGDSHTRFPLGISFPAGSGLVAFAAVTGTMPLNMPESVLVRFKGEMNPGITLRDL
VNAIPYYAIKKGLLTVEKKGKINVFNGRILEIEGLPDIKMEQAFELSDASAERSAAACVV
RLNKEPMIEYLKSNIKLIDEMIASGYEDKETLKKRRDAMQAWVDNPVLLEPDSNAQYAAV
IEIDVAEITEPILACPNDPDDVATLSEVLADTTGKRPHAIDEVFIGSCMTNIGHFRAFGE
IVKNAPPSQARLWVVPPSKMDEQELINEGYYAIFGAAGARTEVPGCSLCMGNQARVRDNA
VVFSTSTRNFDNRMGRGAKVYLGSAELGAACALLGRIPTKEEYMNLVSEKLESQKDKIYR
YMNFNLMENFRL
NT seq 2559 nt   +upstreamnt  +downstreamnt
atgaaagattttttagaagattataaaaaaagcgttttagaaagagagggcgagggtatc
ccgccactccctttaaacgctaaacaagtggaggctgtcgttgagattttgatgaaagat
cccacaaacgccactttcgctaaagaattactcattcacagagtgagccctggggttgat
gagggggcgaaagtgaaagcggaatttttagccaaattgtctcaaaaaaaactagaatgt
gcacacattagcgctttagaagcgaccactcttttaggcacaatgcttggggggtataat
gtagagcctttgattatgggcttagaaagtcaagacaaaaacatcgctaaagagagcgcg
aaagctttaaaagccactcttttagtctatggatcgtttgataaaatcgctgcaatgagt
aaaaccaacgctctggctaaagaggtgctagagtcttgggcgaacgctgaatggttttta
aataaagagcctttgaatgaatgcattgaagcgtgcgtgtttaagattgatggcgaaacc
aataccgatgatttaagcccagcaagcgatgctttcacacgaagcgatattcctttacac
gccaaagccatgctaaaaaacaggattgaaaattacgaacaacgcatcaaagccattaag
gctaaaggcgttcctgtagcgtatgtgggcgatgtggtcggcacaggaagctccagaaaa
agcgcgacaaactctatcatgtggcattttggtaaggacattccttttgtgcctaataaa
aggagtgggggcattgtgattgggggggtgatcgctccgattttctttgcgacttgtgaa
gatagtgggtcgttacccattgtggctgatgttaaggatttaaaagagggcgatatcatt
aaaatctatccttataaaggcgaaatcacactgaatgataaggtggttagcgcctttaag
ctagagcctgaaaccttattagatgaagtcagggcttctgggcgtatccctttaatcatt
ggtaggggtttgacgaataaagcgcgtaaatttttagggctaggcgaatctgaagcgttt
aaaaagccatccgctcccaaaagcgacgccaaaggctacactttagcccaaaaaattgta
ggtcatgcttgtggggtaaaagggatcttacctggcacttattgtgagccaaaggttacc
accgtgggcagtcaggacaccacaggggcgatgactagagatgaggttaaagaattagcg
agtttgaaatttgatgcgccttttgtgttgcagagtttttgccataccgccgcttaccca
aagcctagcgatgtgagtttgcatgcaaccttgcctagctttatcactcaaagaggcggt
gtggcgttgcatccgggcgatggcgtgatccacacatggctaaaccgcatgggattgcct
gacactttaggcacagggggggatagccacactcgtttccctttaggcattagtttcccg
gcagggagcgggttagtcgcttttgcagcggttacaggcacgatgcccttgaacatgcca
gaatctgtgttggtgcgttttaaaggggaaatgaatcctgggatcactttaagagatcta
gtgaatgcgatcccttattatgcgatcaaaaaagggttactcacggtggagaaaaagggt
aaaatcaatgtctttaacgggcgtattttagagattgaaggcttgcctgatattaaaatg
gagcaggcttttgaattgagcgatgcgagcgcagaaaggagtgcggctgcttgcgtggtg
cgtttgaataaagagccaatgattgaatacttgaaatccaatatcaagcttattgatgag
atgattgcgagcggttatgaagacaaagaaactttgaaaaaacgcagagatgcgatgcaa
gcttgggtggataatccggtattgttagagccagatagtaacgctcaatacgccgctgtc
attgaaattgatgtggcagaaatcactgagcctattttggcatgccctaatgaccctgat
gatgtcgctactttgagcgaagttttagcggatacgaccggcaaaagaccccacgctatt
gatgaagtgtttattggctcttgcatgacgaatatcgggcattttagagcctttggcgaa
atcgttaaaaacgctcctcccagtcaagcacgcctttgggtagtgccacccagtaaaatg
gatgaacaagagcttattaatgagggctattatgcgatttttggggctgccggggcaagg
actgaagtcccaggctgtagcttgtgcatgggcaatcaagcgagggttagggataatgcg
gtcgtcttttctacttccacacggaattttgataatcgtatgggtagaggggctaaagtg
tatttaggcagcgcagagcttggggcggcgtgcgctttactagggagaatccccactaaa
gaagaatacatgaatttagtgagtgagaagctagagagccaaaaagacaagatctatcgc
tacatgaactttaacttaatggagaatttcaggctctag

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