KEGG   Burkholderia contaminans: NL30_02880
Entry
NL30_02880        CDS       T03969                                 
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
bcon  Burkholderia contaminans
Pathway
bcon00020  Citrate cycle (TCA cycle)
bcon00630  Glyoxylate and dicarboxylate metabolism
bcon00640  Propanoate metabolism
bcon00720  Other carbon fixation pathways
bcon01100  Metabolic pathways
bcon01110  Biosynthesis of secondary metabolites
bcon01120  Microbial metabolism in diverse environments
bcon01200  Carbon metabolism
bcon01210  2-Oxocarboxylic acid metabolism
bcon01230  Biosynthesis of amino acids
Module
bcon_M00009  Citrate cycle (TCA cycle, Krebs cycle)
bcon_M00010  Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
bcon_M00012  Glyoxylate cycle
bcon_M00982  Methylcitrate cycle
Brite
KEGG Orthology (KO) [BR:bcon00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    NL30_02880
   00630 Glyoxylate and dicarboxylate metabolism
    NL30_02880
   00640 Propanoate metabolism
    NL30_02880
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    NL30_02880
Enzymes [BR:bcon01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.3  aconitate hydratase
     NL30_02880
    4.2.1.99  2-methylisocitrate dehydratase
     NL30_02880
SSDB
Motif
Pfam: Aconitase_2_N Aconitase_B_N Aconitase Ketoacyl-synt_C
Other DBs
NCBI-ProteinID: AKM38912
UniProt: A0AAN0TAB1
LinkDB
Position
1:complement(666853..669438)
AA seq 861 aa
MLENFRAHVAARAALGIPPLPLTAQQTAELVELLTNPPAGEEQTLLDLITHRVPAGVDEA
ARVKAGFLAAVAKGETACSLISRERATELLGTMLGGYNIQPLIELLSDEAVAAVAANALK
KTLLMFDQFHDVKELADKGNAHAKAVLQSWADAEWFTSRPEVPQSLTITVFKVTGETNTD
DLSPAPDATTRPDIPMHALAMLKNARPGITPEQDGKRGPVKFIESLKEKGHLVAYVGDVV
GTGSSRKSATNSVLWFTGEDIPFVPNKRFGGVCLGGKIAPIFYNTMEDAGALPIELDVSQ
MEMGDVVELRPYEGKALKDGKVIAEFQVKSDVLFDEVRAGGRIPLIIGRGLTAKAREALG
LAPSTLFRLPHQPADSGKGFSLAQKMVGRACGLPEGQGVRPGTYCEPKMTSVGSQDTTGP
MTRDELKDLACLGFSADLVMQSFCHTAAYPKPVDVKTHQTLPNFISTRGGIALRPGDGVI
HSWLNRMLLPDTVGTGGDSHTRFPIGISFPAGSGLVAFAAATGTMPLDMPESVLVRFKGK
MQPGVTLRDLVNAIPLYAIKQGMLTVAKQGKKNIFSGRILEIEGLPDLKVEQAFELSDAS
AERSAAGCSVHLNKEPIIEYLNSNITLLKWMIAQGYQDPRSLQRRIQAMEQWLADPQLLA
PDADAEYAAVIEIDLADIHEPIVACPNDPDDVKTLSDVAGAKIDEVFIGSCMTNIGHFRA
ASKLLEGKRDIPVKLWVAPPTKMDQKQLTEEGHYGVFGTAGARTEMPGCSLCMGNQAQVR
EGATVMSTSTRNFPNRLGKNTNVYLGSAELAAICSRLGKIPTKEEYMADMGVLSANGDKI
YKYMNFDQIEDFKEVADTVQV
NT seq 2586 nt   +upstreamnt  +downstreamnt
atgcttgaaaactttcgtgctcacgtggccgcccgcgccgcgctcggtattcctcccctg
ccgctgacggctcagcagaccgccgaactggtggaactgctgacgaacccgcccgccggc
gaagagcagacactgctcgacctgatcacccatcgcgtgcctgccggcgtcgacgaagcc
gcccgcgtgaaggccggcttcctggccgccgtggccaagggcgagaccgcctgctcgctg
atctcgcgcgaacgcgcgaccgaactgctcggcacgatgctgggcggctacaacatccag
ccgctgatcgagctgctgtccgatgaagccgtggctgccgtggccgccaacgcactgaag
aaaaccctgctgatgttcgaccagttccatgacgtcaaggaactcgccgacaagggcaac
gcgcacgcgaaggccgtgctgcaaagctgggccgatgccgaatggttcacgagccgcccg
gaagtgccgcaaagcctgaccatcaccgtgttcaaggtgacgggagaaaccaacaccgac
gacctgtcgccggctccggacgccaccacccgcccggacatcccgatgcacgcgctggcg
atgctgaagaacgcacgcccgggcatcacgccggaacaagacggcaagcgcggcccggtc
aagttcatcgaatcgctgaaggaaaagggtcatctggtcgcctacgtgggcgacgtggtc
ggcaccggctcctcgcgcaagtcggccaccaactcggtactgtggttcacgggcgaagac
atcccgttcgtcccgaacaagcgcttcggcggcgtgtgcctcggcggcaagatcgccccg
atcttctacaacacgatggaagacgccggcgcactgccgatcgagctcgacgtgtcgcag
atggaaatgggcgacgtggtcgaactgcgcccgtacgaaggcaaggcgctgaaggacggc
aaggtcatcgccgaattccaggtcaagtccgacgtgctgttcgacgaagtgcgcgccggc
ggccgcattccgctgatcatcggccgcggcctgaccgcgaaggcacgtgaagcgctcggc
ctcgcgccgtcgacgctgttccgcctgccgcaccagccggccgacagcggcaagggcttc
tcgctcgcacagaagatggtcggccgcgcatgcggtctgccggaaggccagggcgtgcgc
ccgggcacgtactgcgaaccgaagatgacctcggtcggctcgcaggacaccacgggcccg
atgacccgcgacgaactgaaggatctcgcgtgcctcggcttctcggccgatctcgtgatg
caatcgttctgccacaccgccgcttatccgaagccggtcgacgtgaagacgcaccagacg
ctgccgaacttcatcagcacgcgcggcggcatcgcgctgcgcccgggcgacggcgtgatc
cactcgtggctgaaccgcatgctgctgcccgacaccgtcggcaccggcggcgattcgcac
acgcgcttcccgatcggcatcagcttcccggcaggttcgggcctggtcgcgttcgcggcc
gccaccggcacgatgccgctggacatgccggaatcggtgctggtccgcttcaagggcaag
atgcagccgggcgtcacgctgcgtgacctcgtcaacgcgattccgctgtacgcgatcaag
caaggcatgctgacggtcgccaagcaaggcaagaagaacatcttctcgggccgcatcctc
gaaatcgaaggcctgcccgacctgaaggtcgagcaagcgttcgagctgtcggatgcgtcg
gccgagcgttcggcagccggttgctcggtccacctgaacaaggaaccgatcatcgagtac
ctgaacagcaacatcacgctgctgaagtggatgatcgcgcagggctaccaggatccgcgc
agcctgcagcgccgcatccaggcgatggaacagtggctggccgacccgcaactgctcgcg
ccggatgccgacgccgagtacgcggccgtcatcgagatcgacctcgccgacatccacgag
ccgatcgtcgcgtgcccgaacgacccggacgacgtgaagacgctgtcggacgtcgcaggc
gcgaagatcgacgaagtgttcatcggctcgtgcatgaccaacatcggtcacttccgtgcg
gcgtcgaagctgctcgaaggcaagcgcgacattccggtcaagctgtgggtcgcgccgccg
accaagatggaccagaagcagctgaccgaagaaggccactacggcgtcttcggcacggcc
ggtgcgcgcaccgaaatgccgggctgctcgctgtgcatgggtaaccaggctcaggtgcgc
gaaggcgcgacggtcatgtcgacgtcgacccgcaacttcccgaaccgtctcggcaagaac
acgaacgtgtatctcggctcggcggaactggcggcgatctgctcgcgtctgggcaagatc
ccgaccaaggaagagtacatggccgacatgggcgtgctcagcgcgaacggcgacaagatc
tacaagtacatgaacttcgaccagatcgaagacttcaaggaagtggccgacaccgtgcag
gtgtaa

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