KEGG   Acinetobacter baumannii TCDC-AB0715: ABTW07_2521
Entry
ABTW07_2521       CDS       T01908                                 
Symbol
acnB
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
abd  Acinetobacter baumannii TCDC-AB0715
Pathway
abd00020  Citrate cycle (TCA cycle)
abd00630  Glyoxylate and dicarboxylate metabolism
abd00640  Propanoate metabolism
abd00720  Other carbon fixation pathways
abd01100  Metabolic pathways
abd01110  Biosynthesis of secondary metabolites
abd01120  Microbial metabolism in diverse environments
abd01200  Carbon metabolism
abd01210  2-Oxocarboxylic acid metabolism
abd01230  Biosynthesis of amino acids
Module
abd_M00009  Citrate cycle (TCA cycle, Krebs cycle)
abd_M00010  Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
abd_M00012  Glyoxylate cycle
abd_M00982  Methylcitrate cycle
Brite
KEGG Orthology (KO) [BR:abd00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    ABTW07_2521 (acnB)
   00630 Glyoxylate and dicarboxylate metabolism
    ABTW07_2521 (acnB)
   00640 Propanoate metabolism
    ABTW07_2521 (acnB)
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    ABTW07_2521 (acnB)
Enzymes [BR:abd01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.3  aconitate hydratase
     ABTW07_2521 (acnB)
    4.2.1.99  2-methylisocitrate dehydratase
     ABTW07_2521 (acnB)
SSDB
Motif
Pfam: Aconitase_2_N Aconitase_B_N Aconitase
Other DBs
NCBI-ProteinID: ADX92945
LinkDB
Position
complement(2671202..2673841)
AA seq 879 aa
MLEAYRQHVAERAALGVPPKPLDDAQTAQLVELLKNPPAGEEAFLVDLLENRVPAGVDQA
AYVKAAFLAAIAKGEATSPLVSKERAVYLLGTMLGGYNVAPLVELLDDAELGSLAAEALK
KTLLVFDAFHDVADKAKAGNANAKAVLQSWADAEWFTSRKDVPEEIKITVFKVTGETNTD
DLSPAQDAWSRPDIPLHANAMLKNERDGINPEKPGEVGPLSQIKELIAKGNQVAYVGDVV
GTGSSRKSATNSVLWFFGDEIAHIPNKKDGGVCLGGKIAPIFFNTMEDAGALPVEIDVSN
MNMGDEVTLKIDHAAAKVTAFKNGEQIAESELKTPVLLDEVRAGGRINLIIGRGLTAKAR
EALGLAPSTLFRTPVQPADTGKGFTLAQKMVGRACGLPEGQGIRPGTYCEPKMTTVGSQD
TTGPMTRDELKDLACLGFSADLVMQSFCHTAAYPKPVDVQMQHTLPDFIMNRGGVSLRPG
DGIIHSWLNRMLLPDTVGTGGDSHTRFPIGISFPAGSGLVAFAAATGVMPLDMPESVLVK
FKGKMQPGITLRDLVHAIPYYAIKEGDLTVEKKGKKNIFSGRILEIDLTEMETDLTVEQA
FELSDASAERSAAGCAITLSEEKVAEYLRSNITMLKWMISQGYGDARTMARRVENMEKWL
ANPSLLKADADAEYTKVYEIDLSEIKEPILCCPNDPDDAKLLSDVQGDKIDEVFIGSCMT
NIGHFRAAGQLLEKVPSGSLTTRLWLAPPTRMDEHQLMEEGFYNTYGRAGARTEMPGCSL
CMGNQARVAPNTTVVSTSTRNFPNRLGQGSNVYLASAELASVAAVLGKLPTPEEYQQYAA
QIDSMSADIYKYLNFDQMGEYTNAADKVDTKKIAAAQLT
NT seq 2640 nt   +upstreamnt  +downstreamnt
gtgctagaagcttaccgccaacacgttgctgaacgtgccgcactcggagtcccaccgaag
ccacttgatgatgctcaaactgctcaacttgttgagttattaaaaaacccaccggcaggt
gaagaagcattcttggttgatttgcttgaaaaccgtgttcctgcaggtgttgaccaagca
gcttacgtaaaagcagctttcttggcagcgattgcaaaaggcgaagcgacatctccgcta
gtttctaaagaacgtgcagtttatttactaggtacgatgcttggtggctataacgtagcg
cctttagttgagcttctggatgatgctgaattaggtagcttagctgctgaagctttgaaa
aaaacattacttgtatttgatgcgttccatgacgtagctgataaagctaaagctggcaat
gcaaatgcaaaagctgttttacaatcttgggctgatgctgaatggttcactagtcgtaaa
gatgtaccagaagaaatcaaaatcactgtgttcaaagtaacaggtgaaacaaacactgat
gacttgtctccagctcaagacgcatggagccgtccagacatcccattgcatgcaaatgca
atgttgaaaaatgagcgtgatggtatcaaccctgaaaaaccaggtgaagttggtccatta
agccaaattaaagaactcattgctaaaggcaaccaagttgcttatgttggtgacgttgtt
ggtacaggttcatctcgtaaatctgcaacaaactctgttctttggttctttggtgatgaa
atcgctcacattccaaacaaaaaagacggtggtgtgtgcttaggcggtaaaattgctccg
atcttctttaacacaatggaagatgctggtgcattaccagtagagatcgatgtttctaac
atgaacatgggtgacgaagttactcttaaaatcgatcatgctgctgcaaaagtaactgcg
ttcaaaaatggcgaacaaatcgctgagtctgaacttaaaactccagtacttttagatgaa
gtacgtgctggtggtcgtattaacttgatcattggtcgtggcttaactgctaaagcgcgt
gaagctttaggtttagctccatctacattattccgtactccagtacaaccagctgacact
ggcaaaggtttcactttagctcagaagatggttggtcgcgcatgtggtctcccagaaggt
caaggtatccgtccaggtacttactgtgaacctaaaatgactacagtgggttctcaagat
acaactggtcctatgactcgtgatgagttaaaagacctagcttgcttgggcttctctgct
gacttagtaatgcagtctttctgtcacactgctgcttatccaaagccagttgacgtacaa
atgcaacatacacttccagacttcatcatgaaccgtggtggtgtatctttacgtccaggt
gacggtattatccactcttggttaaaccgtatgcttcttccagatacagtaggtactggt
ggtgactcgcatactcgtttcccaattggtatttcattcccagcaggttctggtcttgta
gctttcgctgctgcaactggtgtaatgccacttgatatgcctgaatcagttcttgttaag
tttaaaggtaaaatgcagcctggtatcactttacgtgaccttgtacatgcgattccttac
tatgcaatcaaagaaggcgatcttactgttgagaaaaaaggtaagaaaaacatcttctct
ggtcgtatcttagaaatcgacttaacagaaatggaaactgacttaacagttgagcaagca
ttcgaactttctgatgcttctgctgaacgttcagctgctggttgtgcaatcacactttca
gaagagaaagttgctgagtacttacgttctaacatcacaatgcttaagtggatgatttca
caaggctatggtgatgcacgtacgatggcccgccgtgttgaaaacatggaaaaatggtta
gcaaacccaagcttacttaaagctgatgctgatgctgaatacactaaagtgtatgaaatt
gacttgtcagaaatcaaagaacctatcctttgctgcccgaacgatccagatgatgcgaaa
cttctttctgacgttcaaggcgacaaaattgatgaagtattcatcggttcttgtatgact
aacattggtcacttccgtgctgctggtcagttacttgagaaagtaccaagcggttcatta
acaactcgtttatggttggctccaccaacacgtatggacgaacatcagttaatggaagaa
ggcttctataacacttatggccgtgctggtgcgcgtacagaaatgcctggttgttcatta
tgtatgggtaaccaagcacgtgttgcgccgaacacaactgttgtttcgacttctacacgt
aacttccctaaccgtttaggccaaggttctaacgtttacttagcatctgctgagcttgca
tctgttgctgctgtacttggtaaattaccaactccagaagaataccaacaatatgcagct
caaattgacagtatgtctgctgacatctacaaatatttgaatttcgaccaaatgggcgaa
tatacaaatgctgctgataaagtagatactaagaaaattgctgctgctcagttgacttaa

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