Alteromonas stellipolaris LMG 21861: AVL57_04865
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Entry
AVL57_04865 CDS
T04545
Name
(GenBank) aconitate hydratase B
KO
K01682
aconitate hydratase 2 / 2-methylisocitrate dehydratase [EC:
4.2.1.3
4.2.1.99
]
Organism
asq
Alteromonas stellipolaris LMG 21861
Pathway
asq00020
Citrate cycle (TCA cycle)
asq00630
Glyoxylate and dicarboxylate metabolism
asq00640
Propanoate metabolism
asq00720
Other carbon fixation pathways
asq01100
Metabolic pathways
asq01110
Biosynthesis of secondary metabolites
asq01120
Microbial metabolism in diverse environments
asq01200
Carbon metabolism
asq01210
2-Oxocarboxylic acid metabolism
asq01230
Biosynthesis of amino acids
Module
asq_M00009
Citrate cycle (TCA cycle, Krebs cycle)
asq_M00010
Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
asq_M00012
Glyoxylate cycle
asq_M00982
Methylcitrate cycle
Brite
KEGG Orthology (KO) [BR:
asq00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
AVL57_04865
00630 Glyoxylate and dicarboxylate metabolism
AVL57_04865
00640 Propanoate metabolism
AVL57_04865
09102 Energy metabolism
00720 Other carbon fixation pathways
AVL57_04865
Enzymes [BR:
asq01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.3 aconitate hydratase
AVL57_04865
4.2.1.99 2-methylisocitrate dehydratase
AVL57_04865
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Gene cluster
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Motif
Pfam:
Aconitase_2_N
Aconitase_B_N
Aconitase
Ketoacyl-synt_C
Motif
Other DBs
NCBI-ProteinID:
AMJ73366
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Position
891133..893745
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AA seq
870 aa
AA seq
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MLQDYRKHVEERAVEGIPPKPLNAEQVAGLVELIKNPPEGEEDTLLELLSERVPPGVDEA
AYVKAGFLSAIVKGEDSCSLISKEKAVELLGNMHGGYNIVTLVELLDDENLAPLAAKELK
HTLLMFDAFHDVEEKHKAGNKFATDIIRSWAEGEWFTSRKLMDDKITYSVFKVTGETNTD
DLSPAPDAWSRPDIPLHALAAYKMTRDGLEPEEHGVKGPMQQIEDVKNQGYPVAFVGDVV
GTGSSRKSATNSVLWFFGEDLPGVPNKRGGGVCIGSKVAPIFFNTMEDAGALVFEADVEK
MNMGDVIDIYPFEGKITNHETGEVLAEYDYKSKVILDEVRAGGRINLIIGRALTEKARET
LGLGATDLFRTPEQPADTGKGYTLAQKMVGKACGVEGIRPGTYCEPKMTTVGSQDTTGPM
TRDELKDLACLGFTADLTMQSFCHTAAYPKPVDIETQHTLPDFMMNRGGVSLRPGDGIIH
SWLNRMLLPDTVGTGGDSHTRFPLGISFPAGSGLVAFAAATGVMPLDMPESILVRFKGEM
QPGITLRDLVHAIPLYGIKQGLLTVEKKGKINAFSGRVLEIEGLEHLTVEQAFELSDASA
ERSAAGCSINLSEESIAEYLNSNITMLRWMINEGYGDPRTLERRAQKMEEWLANPELMRA
DADAEYKEIIEIDLNDIKEPIVCCPNDPDDAKTLSDVAGENVDEVFIGSCMTNIGHFRAA
GKLLEQFNKTLPTRLWMSPPTKMDKAQLMEEGYYNIYGRVGVRTEMPGCSLCMGNQARVD
AGTTVLSTSTRNFPNRLGDGANVYLTSAELAAVGAIVGRIPTAEEYMEYASKINSMSSEV
FRYLNFDKMPSFKKAEEEAKANIIPTLNVA
NT seq
2613 nt
NT seq
+upstream
nt +downstream
nt
gtgttacaagactatcgcaaacatgtagaagaacgtgctgttgaagggatccctccaaag
ccactgaatgctgagcaggtagcaggcttagttgaattaattaaaaatccaccagaaggc
gaagaagacacccttttagaattgctttcagagcgcgtccctcccggggttgatgaagct
gcttacgtaaaagcaggatttttaagtgctatcgtaaaaggcgaagacagctgctcgtta
atctcaaaagaaaaggccgttgaactattaggcaacatgcatggtggatacaacatcgtg
acattggttgagcttctcgacgatgaaaacctagcgccactagccgcaaaagagcttaag
cacacgctgcttatgtttgacgccttccatgatgtggaagaaaaacacaaagccggaaac
aagtttgccacagacattattagatcgtgggccgaaggcgagtggtttacttcacgtaaa
ttaatggacgataaaattacatactccgtttttaaagtgaccggcgaaaccaataccgat
gacttatcaccggcacccgatgcatggtcgcggcctgatattccccttcacgccttagcc
gcttataaaatgacccgtgatggcctagagccagaagagcatggtgtgaaaggcccaatg
caacaaattgaagatgtgaaaaatcaaggttatcccgttgcctttgtaggtgatgtggta
ggtacggggtcgtcacgtaaatccgcaactaactcagtattatggtttttcggggaagac
ttacctggcgtccccaacaagcgcggcggtggtgtatgtattggtagcaaagtggcgcca
atcttctttaataccatggaagatgcaggggccttggtgtttgaagccgatgtagaaaaa
atgaatatgggcgatgttatcgacatctacccgtttgaaggcaaaatcaccaatcacgaa
accggcgaagtattagctgaatatgactataaatctaaagtgattttagatgaagtgcgc
gcaggtggtcgtatcaacctgattattggccgcgcgctcactgaaaaagcacgagaaaca
ttaggtttaggcgcaacagatttgtttcgtaccccagagcaacctgccgataccggaaag
ggctatacccttgcccagaagatggtaggtaaagcgtgcggtgttgaaggtattcgccct
ggcacttattgcgaacctaagatgaccaccgtaggctcgcaagataccacaggccctatg
acgcgagacgagctaaaagatttagcctgtcttggtttcactgccgacttaaccatgcag
tcgttctgtcataccgcggcatatcctaaacctgttgatattgaaacccaacatactctg
cctgactttatgatgaacagaggcggtgtttcacttcgccctggcgatggcattattcac
agctggttaaaccgcatgctattgcctgatacagtcggtacaggtggtgattcacacacc
cgttttcccctgggtatttcattcccagcagggtctggattagtcgcttttgctgccgca
accggtgtgatgccccttgatatgccggaatctattctggtgcggtttaaaggcgaaatg
cagccaggtattaccctacgtgatttagtgcacgccattcccttatacggtattaagcaa
ggcttactcaccgtagagaaaaaaggcaaaattaatgcgttctctggtcgcgtactagaa
attgaaggacttgagcacctaacggtagagcaagcatttgaattatctgacgcatcagct
gagcgttctgcggcaggttgtagtattaatctgtctgaagagtctattgctgaatactta
aactcaaacatcactatgcttcgttggatgattaacgaaggctacggtgacccacgtacc
cttgagcgccgtgcccagaaaatggaagagtggttggctaaccctgaacttatgcgcgcc
gatgcggatgctgagtacaaagaaattatcgagatagaccttaacgatattaaagagcct
attgtgtgttgcccgaacgaccctgacgacgcgaaaactttatcagacgtagccggtgaa
aacgtagacgaagtcttcattggttcgtgtatgacaaatattggccatttccgtgctgca
ggtaaactccttgagcagtttaataaaaccttacctacccgtttgtggatgtcgccaccg
acaaaaatggataaggctcagttaatggaagaaggctactacaacatctatggtcgagtg
ggcgtgcgcacagagatgcctgggtgttcactgtgtatgggtaaccaagcacgtgtagat
gcaggcactacagtactgtctacttcaactcgtaacttccctaaccgtttaggtgatggg
gcgaatgtgtacctaacatcggctgaattagcggcggtaggtgctatcgttggtcgtatt
cctacggcagaagaatacatggaatatgcgagtaaaattaactccatgtcgtctgaagta
ttccgctacttaaactttgataaaatgccaagtttcaagaaggcagaagaagaggcgaag
gccaatatcattccaacgttgaatgttgcctga
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