Helicobacter pylori oki112: HPOKI112_03135
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Entry
HPOKI112_03135 CDS
T03723
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
hpyc
Helicobacter pylori oki112
Pathway
hpyc00020
Citrate cycle (TCA cycle)
hpyc00630
Glyoxylate and dicarboxylate metabolism
hpyc00640
Propanoate metabolism
hpyc00720
Other carbon fixation pathways
hpyc01100
Metabolic pathways
hpyc01110
Biosynthesis of secondary metabolites
hpyc01120
Microbial metabolism in diverse environments
hpyc01200
Carbon metabolism
hpyc01210
2-Oxocarboxylic acid metabolism
hpyc01230
Biosynthesis of amino acids
Module
hpyc_M00010
Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
Brite
KEGG Orthology (KO) [BR:
hpyc00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
HPOKI112_03135
00630 Glyoxylate and dicarboxylate metabolism
HPOKI112_03135
00640 Propanoate metabolism
HPOKI112_03135
09102 Energy metabolism
00720 Other carbon fixation pathways
HPOKI112_03135
Enzymes [BR:
hpyc01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.3 aconitate hydratase
HPOKI112_03135
4.2.1.99 2-methylisocitrate dehydratase
HPOKI112_03135
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SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Aconitase_2_N
Aconitase_B_N
Aconitase
Motif
Other DBs
NCBI-ProteinID:
AHN36079
UniProt:
X2HSA5
LinkDB
All DBs
Position
complement(617490..620048)
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AA seq
852 aa
AA seq
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MKDFLEDYKKSVSERESEGIPPLPLSAKQVQAVVEILTKDPTNAAFAKELLIHRVSPGVD
EGAKVKAEFLAQLSQKKLECAHISALEATTLLGTMLGGYNVEPLIMGLESQDKNIAKESA
KALKTTLLVYGSFDKIATMSKTNALAKEVLESWANAEWFLNKEPLNECIEACVFKIDGET
NTDDLSPASDAFTRSDIPLHAKAMLKNRIENYEQRIKAIKAKGVPVAYVGDVVGTGSSRK
SATNSIMWHFGKDIPFVPNKRSGGIVIGGVIAPIFFATCEDSGALPIVADVKDLKEGDLI
KIYPYKGEITLNDKVVSTFKLEPETLLDEVRASGRIPLIIGRGLTNKARKFLGLGESEAF
KKPSAPKSDAKGYTLAQKIVGHACGVKGILPGAYCEPKVTTVGSQDTTGAMTRDEVKELA
SLKFDAPFVLQSFCHTAAYPKPSDVSLHASLPSFITQRGGVALHPGDGVIHTWLNRMGLP
DTLGTGGDSHTRFPLGISFPAGSGLVAFAAVTGTMPLNMPESVLVRFKGEMNPGITLRDL
VNAIPYYAIKKGLLTVEKKGKINVFNGRILEIEGLPDIKMEQAFELSDASAERSAAACVV
RLNKEPMIEYLKSNIKLIDEMIASGYEDKETLKKRRDAMQAWVDNPVLLEPDSNAQYAAV
IEIDVAEITEPILACPNDPDDVATLSEVLADTTGKRPHAIDEVFIGSCMTNIGHFRAFGE
IVKNAPPSQARLWVVPPSKMDEQELINEGYYAIFGAAGARTEVPGCSLCMGNQARVRDNA
VVFSTSTRNFDNRMGRGAKVYLGSAELGAACALLGRIPTKEEYMNLVSEKLESQKDKIYR
YMNFNLMENFRL
NT seq
2559 nt
NT seq
+upstream
nt +downstream
nt
atgaaagattttttagaagattacaaaaaaagcgtttcagaaagagaaagtgagggtatt
ccgccgctccctttaagcgctaaacaagttcaagccgtcgttgagattttaacaaaagat
cccacaaacgccgctttcgctaaagaattactcattcacagagtgagccctggggttgat
gagggggcgaaagtgaaagcggaatttttagcccaattgtctcaaaaaaaactagaatgc
gcacacattagcgctttagaagcgaccactcttttaggcacgatgcttggggggtataat
gtagagcctttgattatgggcttagaaagtcaagacaaaaacatcgctaaagagagtgcg
aaagctttaaaaaccactcttttagtctatggatcgtttgataaaatcgctacaatgagt
aaaaccaacgctctggctaaagaggtattagaatcttgggcgaacgctgaatggtttttg
aataaagagcctttgaatgaatgcattgaagcgtgcgtgtttaagattgatggcgaaacc
aatactgatgatttaagcccagcgagcgatgctttcacacgaagcgatattcctttacac
gccaaagcgatgctcaaaaacaggattgaaaattacgaacaacgcatcaaagccattaaa
gctaaaggcgttcctgtagcgtatgtgggcgatgtggtcggcacaggaagctctagaaaa
agcgcgactaactctatcatgtggcattttggtaaggacattccttttgtgcctaataaa
aggagtgggggcattgtgattgggggggtgatcgctccgattttctttgcgacttgtgaa
gatagcggggcgttacccattgtggctgatgttaaggatttaaaagagggtgatttgatt
aaaatctatccttataaaggcgaaatcacgctgaacgataaagtggtcagtaccttcaaa
ctagagcctgaaactttgttagatgaagtcagggcttctgggcgtatccctttaatcatt
ggcaggggtttgacgaataaagcgcgtaaatttttagggctaggcgaatcggaagcgttt
aaaaagccatccgctcctaaaagcgacgccaaaggctacactttagcccaaaaaattgta
ggccatgcttgtggggtaaaagggatcttacctggtgcttattgtgagccaaaggttacc
accgtgggcagtcaagacaccacaggggcgatgactagagatgaggttaaagaattagcg
agtttgaagtttgatgcgccttttgtgttgcagagtttttgccataccgccgcttaccca
aagcctagcgatgtgagtttgcatgcgagcttgcctagctttatcacccaaagagggggc
gtggcgttgcatccgggcgatggcgtgatccatacatggctgaatcgcatgggattgcct
gacactttaggcacagggggggatagccacactcgtttccctttaggcattagtttcccg
gcagggagcgggttagtcgcttttgcagcggttacaggcacgatgccattaaacatgcca
gaatccgtattagtgcgttttaaaggggaaatgaatcctgggatcaccttaagggattta
gtgaatgcgatcccttattatgcgatcaaaaaagggttactcacggtggagaaaaagggt
aaaatcaatgtctttaacgggcgtattttagagattgaaggcttgcctgatattaaaatg
gagcaggcttttgaattaagcgatgcgagcgcagaaaggagtgcggcagcttgcgtggtg
cgtttgaataaagagccgatgattgaatacttgaaatccaatatcaagctcattgatgag
atgattgcgagcggttatgaagataaagagactttgaaaaaacgccgagatgcgatgcaa
gcttgggtggataatccggtattgttagagccagatagtaacgctcaatacgccgctgtc
attgaaattgatgtggcagaaatcacggagcctattttggcatgccctaatgaccctgat
gatgtcgctactttgagcgaagttttagcggatacgaccggcaaaagaccgcacgctatt
gatgaagtgtttattggctcttgcatgacgaatattgggcattttagagcctttggcgaa
atcgttaaaaacgctcctcccagtcaagcacgcctttgggtagtgccacccagtaaaatg
gacgaacaagagcttattaatgagggctattatgcgatttttggagctgccggggcaagg
actgaagtcccaggctgtagcttgtgcatgggcaatcaagcgagggttagggataatgcg
gtcgtcttttccacttccacgcgcaattttgataatcgtatgggtagaggggctaaagtg
tatttaggcagtgcggagcttggggcggcgtgcgctttactagggcgaatccccactaaa
gaagaatacatgaatttagtgagcgaaaaactagagagccaaaaagacaagatctatcgc
tacatgaactttaacttaatggagaatttcaggctctag
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