KEGG   Alteromonas mediterranea U7: I876_03760
Entry
I876_03760        CDS       T02721                                 
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
amae  Alteromonas mediterranea U7
Pathway
amae00020  Citrate cycle (TCA cycle)
amae00630  Glyoxylate and dicarboxylate metabolism
amae00640  Propanoate metabolism
amae00720  Other carbon fixation pathways
amae01100  Metabolic pathways
amae01110  Biosynthesis of secondary metabolites
amae01120  Microbial metabolism in diverse environments
amae01200  Carbon metabolism
amae01210  2-Oxocarboxylic acid metabolism
amae01230  Biosynthesis of amino acids
Module
amae_M00009  Citrate cycle (TCA cycle, Krebs cycle)
amae_M00010  Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
amae_M00012  Glyoxylate cycle
amae_M00982  Methylcitrate cycle
Brite
KEGG Orthology (KO) [BR:amae00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    I876_03760
   00630 Glyoxylate and dicarboxylate metabolism
    I876_03760
   00640 Propanoate metabolism
    I876_03760
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    I876_03760
Enzymes [BR:amae01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.3  aconitate hydratase
     I876_03760
    4.2.1.99  2-methylisocitrate dehydratase
     I876_03760
SSDB
Motif
Pfam: Aconitase_2_N Aconitase_B_N Aconitase Ketoacyl-synt_C
Other DBs
NCBI-ProteinID: AGP88637
LinkDB
Position
887205..889817
AA seq 870 aa
MLQDYRKHVEERAQQGIPPKALNAEQVASLVDLLKNPPEGEGEFLLELLSERVPPGVDEA
AYVKAGFLSAIAKGEDSCELISKEKAVTLLGNMHGGYNIATLVELLDDESLAPLAAKELK
HTLLMFDAYHDVEEKHKAGNEYATDIIKSWAEGEWFTSRKLMDDKITYSVFKVTGETNTD
DLSPAPDAWSRPDIPLHALAAYKMPREGLEPEEPGVKGPMTQIEEVKSKGYPVAFVGDVV
GTGSSRKSATNSVLWFFGEDLPGVPNKRGGGVCIGSKVAPIFFNTMEDAGALVFEADVEK
MNMGDVIDIYPFEGKITNHETGELLAEYSYKSKVILDEVRAGGRINLIIGRGLTEKARET
LGLGPTDLFRTPEQPKDSGAGFSLAQKMVGKACGVEGIRPGTYCEPKMTTVGSQDTTGPM
TRDELKDLACLGFTADLTMQSFCHTAAYPKPVDIETQHTLPDFIMNRGGVSLRPGDGIIH
SWLNRMLLPDTVGTGGDSHTRFPLGISFPAGSGLVAFAAATGVMPLDMPESILVRFKGEM
QPGITLRDLVHAIPLYGIKQGLLTVEKKGKINAFSGRILEIEGLENLTVEQAFELSDASA
ERSAAGCTINLSEESIAEYLRSNITMLRWMINEGYGDPRTLERRAQKMEEWLANPELMRA
DADAEYAEVIEIDLNDIKEPIVCCPNDPDDAKTLSEVAGDKVDEVFIGSCMTNIGHFRAA
GKLLEQFNKTLPTRLWMSPPTKMDKAQLMEEGYYNIYGRVGVRTEMPGCSLCMGNQARVD
AGATVLSTSTRNFPNRLGDGANVYLTSAELAAVGAIVGRIPSAEEYMEYASKINAMSGEV
FRYLNFDKMPSFKKAEEEAKARIIPTLNVA
NT seq 2613 nt   +upstreamnt  +downstreamnt
gtgttacaagactatcgcaaacacgttgaagaacgtgcacaacaaggcattcccccaaaa
gcgcttaatgccgaacaggttgctagcctcgtcgatttattaaaaaatccgccagagggt
gaaggcgaattcttactagaactactttcagaacgtgtgccgcctggcgtcgatgaagcg
gcctacgttaaagccggttttttaagtgccatcgcaaaaggcgaagacagctgcgagctc
atctctaaggaaaaggcagtaaccctattgggaaacatgcacggcggttacaacattgcc
acgctggtagaactgcttgatgacgagagtctagcgccgttggctgccaaagagcttaaa
cacacgctgttaatgttcgatgcttatcacgatgtggaagagaaacacaaagcgggtaac
gagtacgctactgacattatcaagtcttgggccgaaggtgagtggtttacttcgcgcaaa
ctcatggatgacaaaattacctactcagtatttaaagtaaccggcgaaaccaatactgat
gatttatctccagcgcccgacgcatggtctcgccctgatattcctctgcacgcccttgcg
gcttacaaaatgcctcgcgaaggattggagcccgaagaaccaggcgttaaaggcccaatg
acacaaatagaagaagtcaaaagtaaaggatatccggttgcttttgtgggtgatgttgtc
ggtaccggatcgtcacgtaagtcggcgacgaactcagtgttatggttctttggcgaagat
ttaccgggcgtgccgaataaacgtggcggtggtgtatgtatcggctcaaaagttgcgcct
attttctttaacaccatggaagatgctggcgcactggttttcgaagccgatgtggaaaaa
atgaatatgggggatgtgatagatatctacccatttgaaggcaaaattaccaaccacgaa
accggtgagcttctcgcagaatatagctacaagtcgaaagtgattttagatgaagttcgt
gcggggggacgcattaacctgattattgggcgcggtcttacagagaaagcgcgagagacg
ttaggtttaggtccaacagatcttttccgcacgcctgaacaaccaaaagacagcggagcg
ggtttctcgttagcgcagaaaatggtgggcaaggcttgtggtgttgaaggcattcgcccg
ggcacttactgcgagcctaaaatgacaactgtgggctcgcaagataccacagggcctatg
acccgcgatgagctcaaagacttagcttgtcttggttttactgccgatttaaccatgcag
tcattctgtcacacagcggcttatcctaagccggtggatattgaaacccagcacacattg
cctgattttattatgaatcgcggtggggtatcgcttcgccccggcgatggcattattcac
agctggttaaatcgcatgttgttgcctgacacagtaggaacaggcggcgactcccatacc
cgttttccattaggtatttcgttcccagcgggctcagggctggtggcgtttgctgcggcc
acgggcgtgatgcctcttgatatgcctgaatctattcttgtgcgctttaaaggggaaatg
cagccgggcattaccttaagagaccttgtacacgctattcctttgtacggtattaaacaa
gggctattaacggtagagaaaaaaggcaaaataaacgccttttctggccgtattctagaa
attgaagggttagaaaacctgacggtagagcaggcgtttgagttatccgatgcatcggca
gagcgttcagcggcaggttgtaccatcaacctttctgaagaatcgattgccgagtacctg
cgttcaaatatcactatgcttcgctggatgattaacgaaggttacggcgatccgcgcaca
ttagagcgccgcgctcagaaaatggaagagtggctcgcaaatccagaactaatgcgcgcc
gatgccgacgcggaatatgctgaggttatcgaaatcgaccttaatgatattaaagagccc
attgtgtgctgcccgaatgatccagacgacgcgaaaaccttgtctgaggtggcgggtgat
aaggtggatgaggtctttattggttcatgcatgacaaacattggtcacttccgcgctgcc
ggtaaattgcttgagcagtttaataaaaccttgccaactcgtttgtggatgtcgccacca
acgaagatggataaagcccagttgatggaagaggggtattacaatatttatggtcgtgtt
ggtgtgcgcaccgaaatgcctggatgttctttgtgtatggggaaccaagcccgtgtagac
gctggcgctaccgtactttcaacctctacccgtaacttcccgaatcgcttgggtgatggc
gcaaacgtgtacctgacctccgctgaacttgctgcagtaggagcaattgtggggcgcatt
ccaagtgccgaagagtacatggagtacgccagcaagattaacgctatgtcgggtgaagta
ttccgctacttaaacttcgacaaaatgccaagctttaagaaggcagaagaagaggcaaaa
gcgcgcattattccgacattgaatgttgcttaa

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