Exaiptasia diaphana (Aiptasia): 110237866
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Entry
110237866 CDS
T05080
Name
(RefSeq) cytoplasmic aconitate hydratase isoform X1
KO
K01681
aconitate hydratase [EC:
4.2.1.3
]
Organism
epa
Exaiptasia diaphana (Aiptasia)
Pathway
epa00020
Citrate cycle (TCA cycle)
epa00630
Glyoxylate and dicarboxylate metabolism
epa01100
Metabolic pathways
epa01200
Carbon metabolism
epa01210
2-Oxocarboxylic acid metabolism
epa01230
Biosynthesis of amino acids
Module
epa_M00009
Citrate cycle (TCA cycle, Krebs cycle)
epa_M00010
Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
Brite
KEGG Orthology (KO) [BR:
epa00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
110237866
00630 Glyoxylate and dicarboxylate metabolism
110237866
Enzymes [BR:
epa01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.3 aconitate hydratase
110237866
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Ortholog
Paralog
GFIT
Motif
Pfam:
Aconitase
Aconitase_C
Motif
Other DBs
NCBI-GeneID:
110237866
NCBI-ProteinID:
XP_020899143
UniProt:
A0A913X679
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All DBs
Position
Unknown
AA seq
921 aa
AA seq
DB search
MANETVPYQACIKSLNVNSNEFKYFDVASLDQKRFARLPFSIRVLLESAVRNCDNFQVHT
KDVENILNWEANQNSNVEIPFRPSRVVLQDFTGVPAVVDFAAMRDAVKRLGGDPSKINPL
CPADLVIDHSVQVDYSRNMPSKLFDPGGTWPAREQNCPFHSLPCQCADSLKMNQDIEFQR
NQERFQFLKWGSKALKNMTIVPPGSGIVHQVNLEYLARVVFDNNSILYPDSVVGTDSHTT
MINGLGVVGWGVGGIEGEAVMLGQAISMVLPRVVGYKLLGNVNQLVTSTDIVLTVTKDLR
QRGMVGKFVEFFGPGVASLSIADRATIANMCPEYGATIGFFPVDEKSILYLKQTARDDDR
IELIEAYLKASQMFRDYTDAETDPVFSEVIELDLSTVVPSCSGPKRPHDRVPVSKMKEDF
ASCLSNKIGFKGFGIPEEKHADQVPFKFEDQDFMLKHGSVVIAAITSCTNTSNPSVMLGA
GLLAKKAVEYGLSVSPYVKTSLSPGSGVVTYYLQDSGVMPFLEQLGFSVVGYGCMTCIGN
SGPLPEPVAEAIEKGDLVACGVLSGNRNFEGRIHPLTRANYLASPPLVIAYALAGTVLID
FDKEPIGVSKDGKDIFLQDIWPTRDEIQAVERQFVIPAMFREVYGKIQTGNPKWNALDAP
DSLLYPWDVKSTYIKNPPFFEKMNKDLPEIKSIENAXVLLNLGDSVTTDHISPAGSISRT
SPAARYLAGKGLVPREFNSYGSRRGNDAIMARGTFANIRLLNKFMGKAMPKTKHFPSEDT
MDIFDAAERYKTEXRPTIILAGKDYGSGSSRDWAAKGPWMQGIKAVIAQSFERIHRSNLV
GMGIIPLEFMPDQNADTLGLTGKESYTIIVPEDLKIGTITDVKLSDGRSFQAKIRFDTDV
ELTYFKHGGILNYMIRRMLDN
NT seq
2766 nt
NT seq
+upstream
nt +downstream
nt
atggcgaacgaaactgtaccataccaagcgtgtatcaagtctcttaatgtcaactcaaac
gaattcaaatattttgatgtcgcaagcttggaccaaaaacgttttgctcgtcttccattc
tccatccgcgtgcttcttgaatcagctgtacgaaattgtgacaactttcaagttcatacc
aaagatgtagagaatatcttgaactgggaagcaaaccaaaacagcaatgttgagattcct
tttcgaccatctagggttgtcctacaagatttcactggggtgcctgccgtwgtagatttt
gctgctatgagagatgctgtcaagagacttggaggtgacccatctaaaataaacccatta
tgtcctgccgatttagttattgatcactccgtgcaagttgattattcacgcaatatgcca
agcaaactgtttgacccaggtggtacatggccagccagagagcaaaattgtccatttcat
tcactgccgtgtcaatgtgccgactccttgaaaatgaaccaagacatagagtttcagaga
aaccaggaacgatttcagtttctcaagtggggatctaaagctctcaagaacatgaccatt
gtacctccaggatctggaattgtccaccaggtgaatcttgagtaccttgctcgtgttgta
tttgataacaacagcatattatatcctgacagcgtggtcggtactgattcccataccacc
atgataaatggtcttggtgttgtcggatggggtgtaggaggtattgagggagaggctgtc
atgcttggtcaagccatcagtatggtactccctagggttgtaggttataagttgttgggt
aatgtcaaccaattagtgacatcaacagacattgttctcactgttaccaaggacttgaga
caaagaggtatggttggcaagtttgtggagttttttggtccaggagttgcatcattatcc
attgcygacagagctaccatagctaatatgtgtccagagtatggtgccacaattggtttc
tttcctgttgatgaaaaaagtatattatatttaaaacaaactgcccgggatgatgacaga
attgaattgattgaagcttacctgaaagcaagtcagatgttcagagactacactgatgca
gagaccgatcctgtgttttcagaggtgatagagctcgacctcagcactgttgtcccatca
tgttctggtccaaaacgtccacatgaccgtgttccagtttcaaaaatgaaagaagacttt
gcgtcttgtctaagtaataaaattggcttcaaaggctttggaatccctgaagaaaagcat
gctgatcaagtaccattcaagtttgaagatcaagactttatgctaaaacatggttcagtg
gtgatagcagccattaccagttgtaccaataccagtaatccatctgttatgcttggcgct
ggtttactagcaaagaaagctgtagaatatggattaagtgtctctccctatgtcaaaaca
agcctgtctccagggtctggtgtagttacctattacttgcaagatagtggtgttatgcca
ttcctggaacaattagggttttcagtagttggttatggatgcatgacttgtataggcaat
tctggtccccttcctgaacctgttgctgaagcaattgaaaagggagatcttgttgcatgt
ggtgtgctgtctggaaatagaaactttgaaggacgtattcacccattgaccagagcaaac
tacctcgcttcaccaccacttgtcattgcttatgcacttgcaggcacagtactgattgac
tttgataaagaaccaattggtgtctcaaaagatggcaaagatatcttccttcaagacatt
tggccaacaagagatgaaattcaggccgtagaaaggcagtttgtcatccctgccatgttt
agagaggtctatggtaagatacagactggaaaccccaaatggaatgctttggatgcacca
gacagtcttttatatccatgggatgtgaagtctacctatatcaaaaaccctcctttcttc
gagaagatgaataaagatttgccagaaattaagagcattgaaaatgcargtgtgcttctg
aaycttggagactcagtcactacagatcacatctcacctgcaggaagcatatctaggacy
agtcccgctgcacgataccttgcagggaaaggactggtaccamgagagtttaattcatat
gggtctcgtcgtgggaatgatgctatcatggctcgtggtacttttgctaacattcgtttg
ttgaataagttcatgggcaaagcyatgcctaaaacaaagcactttccttcagaagataca
atggatatttttgatgctgctgaacgatacaagactgagartcgtccaacaataatacta
gctggcaaggattatggctctggttcatcacgtgactgggctgctaaaggaccttggatg
cagggaatcaaagctgtaattgcacaaagttttgagcgaattcatcgtagtaatcttgtt
ggtatggggatcattcctcttgaattcatgcctgaccagaatgctgataccctgggtctg
actgggaaggagtcttatacaataatagtacctgaagatttgaaaattggcacaattact
gatgtaaagctgagtgatggccgttcatttcaagccaagatacgcttcgacactgatgtt
gagttgacttatttcaaacatggtggaattctgaattacatgataagacgtatgctggac
aattga
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