KEGG   Gloeocapsa sp. PCC 7428: Glo7428_0079
Entry
Glo7428_0079      CDS       T02400                                 
Name
(GenBank) aconitase
  KO
K01682  aconitate hydratase 2 / 2-methylisocitrate dehydratase [EC:4.2.1.3 4.2.1.99]
Organism
glp  Gloeocapsa sp. PCC 7428
Pathway
glp00020  Citrate cycle (TCA cycle)
glp00630  Glyoxylate and dicarboxylate metabolism
glp00640  Propanoate metabolism
glp00720  Other carbon fixation pathways
glp01100  Metabolic pathways
glp01110  Biosynthesis of secondary metabolites
glp01120  Microbial metabolism in diverse environments
glp01200  Carbon metabolism
glp01210  2-Oxocarboxylic acid metabolism
glp01230  Biosynthesis of amino acids
Module
glp_M00010  Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
Brite
KEGG Orthology (KO) [BR:glp00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    Glo7428_0079
   00630 Glyoxylate and dicarboxylate metabolism
    Glo7428_0079
   00640 Propanoate metabolism
    Glo7428_0079
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    Glo7428_0079
Enzymes [BR:glp01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.3  aconitate hydratase
     Glo7428_0079
    4.2.1.99  2-methylisocitrate dehydratase
     Glo7428_0079
SSDB
Motif
Pfam: Aconitase_2_N Aconitase_B_N Aconitase
Other DBs
NCBI-ProteinID: AFZ28696
UniProt: K9X9F8
LinkDB
Position
83262..85868
AA seq 868 aa
MLEEYRQHVTQRQAMGIPPLPLDAQQTADVCELLKAPPAGEEETLLHLLRDRVPPGVDPA
AYVKAGFLTAIAKGETTSPLISPTYAIELLGTMMGGYNVRSLVELLSAEDELATAATTAL
SKTLLVYDAFHDVEELAKTNSYAQKVMQSWADAEWFTARSPLPEAITVTVFKVPGETNTD
DLSPATHATTRPDIPLHALAMLESRLPGALDTIAELKQKGHPLAYVGDVVGTGSSRKSAI
NSVLWHIGQDIPYVPNKRAGGYVLGSAIAPIFFNTAEDAGALPIQCDVTKMETGMVITIY
PYKGEITNEAGDVISTFKLQPDTITDEVRAGGRIPLLIGRTLTDKTRIAMGLEPSSVFIR
PQQPIDTGKGYTLAQKMVGKACGLPGVRPGTSCEPIMTTVGSQDTTGPMTRDELKELACL
GFSADLVMQSFCHTAAYPKPVDIKTHHELPDFFASRGGVALRPGDGIIHSWLNRMLLPDT
VGTGGDSHTRFPLGISFPAGSGLVAFAAALGVMPLNMPESVLVRFKGELQPGVTLRDIVN
AIPYVAIQKGLLTVAKQNKKNVFSGRIMEIEGLPDLKVEQAFELTDATAERSCAGCTIKL
SVETISEYLRSNVALMKNMVARGYQDARTIMRRVAKMEQWLANPVLMEADADAEYAEIIE
IDLNEIKEPIVAAPNDPDNVKLLSEVANDPVQEVFVGSCMTNIGHYRATAKVLEGAGSVQ
TRLWICPPTRMDENQLKEEGVYGIFGAAGARTEMPGCSLCMGNQARVADKTTVFSTSTRN
FNNRMGKDARVYLGSAELAAVCALLGRIPTVEEYMDIVAHKIHPFADDLYRYLNFDQIAG
FEDEGRVIPLEEMPKIEDILGIPAGTLS
NT seq 2607 nt   +upstreamnt  +downstreamnt
atgctggaagaatatcggcaacacgtcacccaaagacaagcgatgggaattcccccgtta
cctttggacgcacagcaaacagcagatgtatgtgaattattaaaagcaccacccgcaggg
gaagaagaaactttattgcatctattacgcgatcgcgtcccgcctggagtcgatcccgcc
gcctatgtcaaagctggatttctcacggcgatcgctaaaggcgaaacgacaagcccgtta
atttctcccacttatgcaattgaactgttaggcacaatgatgggcggatacaacgtgcga
tcgcttgtggaattactatccgcagaggatgaattagccacagcagcgacaacggcttta
agtaaaactttactagtctacgacgcctttcatgatgttgaagaattagcaaaaacgaat
tcttacgcgcaaaaagttatgcagtcgtgggcggatgcggaatggtttacagcgcgatcg
cccttacctgaagcgattaccgttaccgtctttaaagttccaggcgaaacaaacaccgac
gatctttctccagcgacacacgcgacaacacgtcccgatattcccttacacgcgctagca
atgctagagtcacgtcttcctggggcattagacacaattgccgaattaaagcaaaaagga
catcctttagcgtatgtcggtgatgttgtggggacaggatcgtcgcgcaaatccgcgatt
aactcagtattgtggcacattgggcaagatattccgtacgtgccgaacaaacgcgcaggg
ggatatgttttaggaagtgcgatcgcgccgattttcttcaacactgctgaagacgcaggg
gcgttaccgattcagtgcgatgtgactaagatggaaacgggaatggttattaccatctat
ccctacaaaggtgaaattaccaacgaagccggagacgtcatttctacctttaaactgcaa
cctgatacaataaccgatgaagtccgcgccggtggacgcattcctttactcattgggcgc
accctcaccgacaaaacgcgcatcgcgatgggattagaaccgagttctgtcttcattcgt
ccgcagcaaccaatagatacaggcaaaggttacaccctcgcgcagaaaatggtaggcaaa
gcttgtggcttacctggtgttcgtcctggaacatcatgcgaaccgattatgacaacagtt
ggttctcaagataccacaggaccaatgacccgcgacgaacttaaagaacttgcgtgtctc
ggctttagcgcagatttggtgatgcagagtttctgtcataccgccgcttatccgaaacct
gtcgatattaaaacgcatcacgaacttcctgatttcttcgcctcgcggggtggtgttgct
ttacgccctggcgatggcattattcactcatggttaaatcggatgctgctacccgacacg
gtgggaactggtggcgattcgcatacgcgctttcctttaggaatttccttccccgctggt
tcaggattagtcgcattcgcggcggcgttgggtgtcatgccattaaatatgccagaatcg
gttttagttcgatttaaaggcgagttgcaaccaggcgtgaccttacgcgatattgtcaac
gcgattccttacgttgcgattcaaaaaggtttactcaccgttgctaaacaaaacaagaaa
aacgtcttttctgggcggattatggaaatcgaaggcttacccgatttaaaagtcgaacaa
gcttttgaattaaccgatgcaacagcagagcgatcgtgtgcaggttgtacgattaagttg
agtgtcgagacaatttctgagtatttgcgttccaacgtcgcgctgatgaaaaatatggtg
gcgcggggttatcaagatgcgcggacgattatgcgtcgcgttgccaagatggaacaatgg
ctcgcaaatccagtattaatggaagcagatgcagatgcagaatatgcagagattatcgaa
attgatttgaacgaaatcaaagaaccaattgtcgccgcgcccaacgaccctgataatgtc
aaattattatctgaagtcgctaacgatcctgtacaagaagtctttgtcggttcgtgcatg
acgaatattggtcattaccgcgctaccgctaaagtcttagaaggcgcaggttcggtgcaa
actcgcttgtggatttgtccgccaacgcgcatggacgaaaatcaacttaaagaagaaggc
gtttacggtatctttggggcagctggggcgcgaactgaaatgcctggttgtagtttgtgc
atggggaatcaagcacgagttgcagataaaacaacagtcttttctacctctacacgcaac
ttcaataaccgcatgggaaaagatgcgcgcgtctatctcggttcagcagaattagccgca
gtttgtgccttgttaggacgcattcctacagttgaggaatacatggatattgttgcgcat
aaaattcatccgtttgctgatgatttgtatcgctatctcaacttcgatcaaatcgctggt
tttgaagatgaagggcgcgtaattcctttagaagaaatgcctaaaattgaagacatttta
ggaattcccgcaggtacattgtcgtag

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