Tenacibaculum retecalamus: PG912_07515
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Entry
PG912_07515 CDS
T08858
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
trt
Tenacibaculum retecalamus
Pathway
trt00020
Citrate cycle (TCA cycle)
trt00630
Glyoxylate and dicarboxylate metabolism
trt00640
Propanoate metabolism
trt00720
Other carbon fixation pathways
trt01100
Metabolic pathways
trt01110
Biosynthesis of secondary metabolites
trt01120
Microbial metabolism in diverse environments
trt01200
Carbon metabolism
trt01210
2-Oxocarboxylic acid metabolism
trt01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
trt00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
PG912_07515
00630 Glyoxylate and dicarboxylate metabolism
PG912_07515
00640 Propanoate metabolism
PG912_07515
09102 Energy metabolism
00720 Other carbon fixation pathways
PG912_07515
Enzymes [BR:
trt01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.3 aconitate hydratase
PG912_07515
4.2.1.99 2-methylisocitrate dehydratase
PG912_07515
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Gene cluster
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Motif
Pfam:
Aconitase_2_N
Aconitase
Aconitase_B_N
Motif
Other DBs
NCBI-ProteinID:
WBX70142
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Position
complement(1576280..1579057)
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AA seq
925 aa
AA seq
DB search
MSIYKEYIKEIEDRKVQELHPKPIDGAELLSQIIEQIKDLDNEFREDSLNFFIYNVLPGT
TSAAGVKAQFLKEIILRESIVKEITPTFAFEQLSHMKGGPSVNVLLDLALGNDEDLAKQA
AEVLKTQVFLYEADTARLEEAFKLGNTIAKELIESYAKAEFFTKLPEIDEKIEVVTFIAG
IGDISTDLLSPGGDAHSRSDRELHGQCLFEHNKEQQAELKAVQAQHPDKRVMLIAEKGTM
GVGSSRMSGVNNVALWTGIKSSPYVPFINIAPAIAGTNGISPIFLTTVGVTGGIGLDLKN
WVQQKDAEGNTIRDENGDPVLKEEYSVATGTVLTINTKEKKLYNGNKELKDISAAFTPQK
MEFMKAGGSYAVVFGKKLQTFASKVLNIDVIPVYAPSKEITIEGQGLTAVEKIFNKNAVG
TTPGAVLHAGSDVRVEVNIVGSQDTTGLMTSQELEMMAATVISPIVDGAYQSGCHTASVW
DDKSKANIPRLMSFMNDFGLITGRDPKGKYFPMTDVIHKVLNDITVGDWDIIIGGDSHTR
MSKGVAFGADSGTVALALATGEASMPIPQSVKVTFKGQMKSYMDFRDVVHATQSQMLKQF
GGENVFQGRIIEVHIGTLTADEAFTFTDWTAEMKAKASICISEDDTLIESLEIAKGRIQI
MIDKGMDNAKQVLKGLVDKANTRITELKTGIKPSLRPDANAKYHAEVIIDLDEIAEPMIA
DPDVNNDDVSKRYTHDNIRPLSFYGGTKKVDLGFVGSCMVHKGDMKILAQMLKNIETQHG
KVEFKAPLVVAPPTYNIVDELKAEGDWEVLQKYSGFEFDDNAPKGLARTKYENMLYLERP
GCNLCMGNQEKAAPGDTVMATSTRLFQGRVVKDSGEKKGESLLSSTPVVVLSTILGRTPT
MAEYEAAVDGIVLTKFKPSTKQLVR
NT seq
2778 nt
NT seq
+upstream
nt +downstream
nt
atgagtatttataaagagtatataaaagagatagaagacaggaaagttcaagaacttcat
ccaaagccaattgatggagctgaattattaagtcaaattattgagcaaataaaagattta
gataatgagtttagagaagattctcttaatttctttatctataatgttttgccaggtact
acaagtgcagctggtgtaaaagctcaatttttaaaggaaatcattttaagagaatcaata
gtaaaagaaattacaccaacttttgctttcgaacagttatctcacatgaaaggaggtcct
tcagtaaatgttttattggatcttgctttaggtaatgatgaagatttagctaaacaagct
gcagaagttcttaaaactcaagtttttctttatgaagcagatactgctcgcttagaagaa
gcttttaaattaggaaacactattgcaaaagagcttattgaaagctatgcaaaagcggag
ttttttacgaaattaccagaaatagatgaaaaaatagaggtggtaacatttatcgcagga
attggtgatatctcaacagatttattatctccaggtggtgatgcacactctcgttcagat
agagaattacacggtcagtgtttatttgagcacaataaagaacaacaagccgaactaaaa
gcagtacaagcgcagcatcctgataaaagagtgatgttaattgctgaaaaaggaacaatg
ggagttggttcttctagaatgtctggtgtaaacaacgtcgcattatggacaggaattaaa
tcgagtccgtatgtaccttttattaatatcgctccggcaattgctggaacaaacggaatt
tctccaattttcttaacaactgttggtgtaactggtggtattggtttagaccttaaaaac
tgggttcaacaaaaagatgcagaaggaaacacaattcgtgatgaaaatggagatccagta
ttaaaagaagagtattctgttgctacaggaacagtactgacgattaatacaaaagagaaa
aaattatacaacggcaataaagagttaaaagatatttctgctgcatttacaccacaaaaa
atggagtttatgaaagcaggtggttcttatgctgttgttttcggtaaaaaattacaaact
tttgcatctaaagtattaaatattgatgtgataccagtttatgcaccatcaaaagaaatt
actattgaagggcaaggcttaacagctgttgaaaaaatattcaataaaaatgccgttggt
actacaccaggagctgttttacatgcaggatctgatgttcgtgtagaagtaaatattgta
ggttctcaagatactacagggttaatgacttctcaagaattagagatgatggctgctaca
gttatttctccaattgtagatggtgcttaccaatcgggttgtcatacagcttcagtttgg
gatgataaatcgaaagcaaacataccaagattaatgagctttatgaacgattttggttta
attactggtcgtgatcctaaagggaaatattttccaatgacagatgttattcataaagta
ctgaacgatattactgttggtgattgggacattattattggaggagattctcacacacgt
atgtctaaaggagttgcttttggagcagattcaggaacagttgccttagcattagctaca
ggtgaggcttcaatgccaattccacaatctgtaaaagttacttttaaaggacaaatgaaa
tcttatatggatttccgtgatgtagtgcacgctacacaatctcaaatgttaaagcaattt
ggtggtgaaaacgtttttcaaggaagaatcattgaggttcatattggaacgcttactgca
gatgaagcttttacattcacagattggactgcagagatgaaagcaaaagcatctatttgt
atttctgaagatgatactttaatagaatctttagagattgctaaaggccgtatccaaatc
atgattgataaaggaatggacaatgcaaagcaagtgcttaaaggtttagttgataaagct
aatactagaataacggaacttaaaacgggtatcaaaccatctttaagaccagatgcaaac
gcgaagtatcatgcagaagttattattgatttagatgaaatcgcagaaccaatgattgcg
gatccagatgtaaataacgatgatgtttctaagcgttatacacacgataatattcgtcca
ttatctttttatggtggaactaaaaaagtagatttaggtttcgtaggatcttgtatggtt
cacaaaggagatatgaaaatattagctcaaatgttaaaaaacattgaaacacaacatggt
aaagttgaatttaaagcacctttagtagttgcaccaccaacatacaatattgttgatgag
ttaaaagcagaaggagattgggaagtattacaaaaatactcaggattcgaatttgacgat
aacgcaccaaaaggtttagcacgtaccaagtacgaaaacatgttatatttagagcgacca
ggttgtaatttatgtatgggtaaccaagaaaaagcagcaccaggagatacggttatggca
acatcaacacgtttatttcaaggtagagttgtaaaagattctggtgagaaaaaaggagaa
tctctattatcatcaactccagtagtagttttatctacaattttaggtagaacaccaact
atggcagaatacgaagcagctgtagatggtattgttttaacgaagtttaaaccttctaca
aagcagttagtgagataa
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