Alteromonas macleodii Black Sea 11: AMBLS11_03295
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Entry
AMBLS11_03295 CDS
T02260
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
amk
Alteromonas macleodii Black Sea 11
Pathway
amk00020
Citrate cycle (TCA cycle)
amk00630
Glyoxylate and dicarboxylate metabolism
amk00640
Propanoate metabolism
amk00720
Other carbon fixation pathways
amk01100
Metabolic pathways
amk01110
Biosynthesis of secondary metabolites
amk01120
Microbial metabolism in diverse environments
amk01200
Carbon metabolism
amk01210
2-Oxocarboxylic acid metabolism
amk01230
Biosynthesis of amino acids
Module
amk_M00009
Citrate cycle (TCA cycle, Krebs cycle)
amk_M00010
Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
amk_M00012
Glyoxylate cycle
amk_M00982
Methylcitrate cycle
Brite
KEGG Orthology (KO) [BR:
amk00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
AMBLS11_03295
00630 Glyoxylate and dicarboxylate metabolism
AMBLS11_03295
00640 Propanoate metabolism
AMBLS11_03295
09102 Energy metabolism
00720 Other carbon fixation pathways
AMBLS11_03295
Enzymes [BR:
amk01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.3 aconitate hydratase
AMBLS11_03295
4.2.1.99 2-methylisocitrate dehydratase
AMBLS11_03295
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Aconitase_2_N
Aconitase
Aconitase_B_N
Motif
Other DBs
NCBI-ProteinID:
AFT77249
LinkDB
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Position
774424..777234
Genome browser
AA seq
936 aa
AA seq
DB search
MSLYSEYLAEIETRKTELGLNPKPIDSAELLSEIIAQIKDTTNEHREDSLKFFIYNTLPG
TTPAAGVKAQFLKEIVLGEEKVEEITPEFALELLSHMKGGPSVEVLLDLALSDNEAVAKP
AAEVLKTQVYLYEADTERLETAFKAGNAIAKDVLESYAKAEFFTKLPEVPEKIEVVTYIA
AEGDISTDLLSPGNQAHSRADRELHGQCMISPEAQQEIVELGKKHPNAKVMLIAEKGTMG
VGSSRMSGVNNVALWAGEPTSPYIPFVNKAPIVAGTNGIAPIFLTTVDVTGGIGLDLKNW
VKKTDENGEVVRDANGDPVLEEAYSVATGTVLTIDTKAKKLYNGSQELADVSASFTPQKM
EFMKAGGSYAVVFGKQLQSFAARTLGVKAPAVYAPSKEVSHEGQGLTAVEKIFNRNAVGV
NSDAPLHAGSDVRVKVNIVGSQDTTGPMTCQELESMAASTISPTVDGAYQSGCHTASVWD
KKAQANIPKLMSFMNNFGVITARDPKGVYHSMTDVIHKVLNDITVDDRAIIIGGDSHTRM
SKGVAFGADSGTVALALATGEAAMPIPESVKVTFKGKMKEHMDFRDVVHATQAQMLKQFS
GENVFQGRVIEVQIGTLLADQAFTFTDWSAEMKAKASICISNDETMIASLELAKSRIQIM
IDKGMDNEAKMLQGLIDLADKRIAEIKSGEEPALAPDDNAKYYAEVVIDLDQIDEPMIAD
PDVNNEDVSKRYTHDVIRPVSYYDGKPVDLGFVGSCMVHKGDMQIIAQMLRNLEKLNGSV
EFKAPLVVAPPTYNIVDELKAEGDWEILQKYAGFEFDDAKPKEAARTKYDNILYLERPGC
NLCMGNQEKAEPGDTVIATSTRLFQGRVVADSAEKKGESLLGSTPLVVLSTVLGRFPTTE
EYKQAVAGIDLTKFAPPSEDLAVKPKFEADVAVKRV
NT seq
2811 nt
NT seq
+upstream
nt +downstream
nt
atgagtttgtattcagaatatctggcagagatcgaaacccgtaaaacggaactaggtctt
aaccctaagccaattgacagtgctgagctgctgtctgaaattattgctcaaatcaaagat
acaacaaacgagcatcgcgaagactctctaaaattctttatctataacacgctaccaggt
actacacctgctgctggtgttaaagcacaattcctaaaagaaattgtacttggcgaagag
aaagtagaagaaattacgcctgaattcgcactagagctgctttcacacatgaaaggcggc
ccgtctgtagaagtgctattagacctggcgctttctgacaacgaagcggttgctaagcct
gcggcagaagtattgaagactcaagtttatctatacgaagctgacactgaacgtctagaa
acagcgtttaaagcgggtaacgccattgctaaagacgtactagaaagctacgcaaaagcg
gaattcttcaccaagcttcctgaggttccagagaaaattgaagtagtaacttacattgct
gctgaaggtgatatttcaactgaccttctttctccaggtaaccaagcgcactctcgtgca
gaccgtgaacttcacggccagtgcatgatttctcctgaagcacagcaagaaattgttgag
cttggtaaaaagcaccctaacgccaaagtaatgctaattgctgaaaaaggcacaatgggt
gtaggttcttcacgtatgtctggtgtgaacaacgttgcactatgggcaggtgagccaaca
agtccttacattccttttgtaaacaaagcgccaattgttgctggtactaacggtatcgca
ccaatcttccttactaccgtagatgtaactggtggtattggtcttgaccttaaaaactgg
gttaagaaaacagacgagaacggcgaagtagttcgcgatgctaacggcgacccagtgcta
gaagaagcttactctgttgcaacaggtaccgtactaactatcgatactaaagcgaaaaag
ctttacaacggttcacaagagctagcagacgtatctgcatcatttactcctcagaaaatg
gagttcatgaaagcgggtggttcttacgcagtagtattcggtaagcagctacaatctttc
gcagcacgtactttaggtgttaaagcgccagcggtttatgcaccgtcgaaagaagtgtct
cacgaaggccaaggtctaacagcggttgagaaaatctttaaccgtaatgcagtaggcgta
aactcagatgcaccgcttcacgctggttctgacgttcgcgttaaagttaacatcgtaggt
tctcaggacactacgggcccaatgacttgccaagagctagagtcaatggcggcttcaaca
atttctccaacagttgatggtgcttaccagtcgggttgtcacacggcgtcggtatgggac
aagaaagcgcaggctaacattcctaagctaatgtctttcatgaacaactttggtgtaatc
actgcgcgtgaccctaaaggcgtttaccactcaatgactgacgttattcacaaagtgctt
aacgacatcacagtagacgaccgtgcaattatcatcggtggtgactcgcacacgcgtatg
tctaaaggtgtagcattcggtgctgactcaggtacggtagcgctagcgcttgcgacaggt
gaagcggcaatgccaattccagagtctgtgaaagttacctttaaaggtaaaatgaaagag
cacatggacttccgtgacgtggttcacgctactcaagcgcaaatgcttaagcagttctct
ggcgagaacgtgttccaaggtcgcgtaattgaagtacaaattggtacgctattagcggat
caagcgttcacattcactgactggtctgcagaaatgaaggcgaaagcgtcaatctgtatc
tctaacgacgagacaatgattgcgtcacttgagcttgcgaagagccgtatccagattatg
atcgacaagggcatggacaacgaagcgaagatgcttcagggccttattgaccttgctgac
aagcgtatcgctgaaatcaagtcgggtgaagagccagcgcttgcaccagatgacaacgct
aagtactacgcagaagtggttatcgacctggatcaaatcgatgagccaatgattgctgac
ccggacgtaaacaacgaagacgtatctaagcgttatacccacgacgttatccgtccagtt
tcttactacgatggtaagcctgtagatctaggctttgttggttcttgtatggttcacaaa
ggtgacatgcaaattatcgcacaaatgctgcgtaacctagagaagcttaacggctctgta
gagttcaaggcgccgctagttgttgcgccacctacatacaacatcgttgatgagcttaaa
gcagaaggcgattgggaaatccttcagaagtacgcaggttttgaatttgacgacgctaag
cctaaagaagcggcgcgtactaagtacgacaacattctttacctagagcgccctggatgt
aacctatgtatgggtaaccaagaaaaagctgagccaggcgacacagtaattgcgacgtct
actcgtcttttccaaggtcgtgttgtagctgactctgctgagaagaaaggtgaatcacta
cttggctctacgccgctagtagtactttcaacggttcttggtcgtttcccaacgacagaa
gagtacaagcaagcggttgcaggcattgacctaactaagtttgctcctccttcagaagac
ttagcagttaagccaaagtttgaagctgatgtagcggttaagcgcgtataa
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