Alligator sinensis (Chinese alligator): 102388603
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Entry
102388603 CDS
T02922
Symbol
ACO1
Name
(RefSeq) cytoplasmic aconitate hydratase
KO
K01681
aconitate hydratase [EC:
4.2.1.3
]
Organism
asn
Alligator sinensis (Chinese alligator)
Pathway
asn00020
Citrate cycle (TCA cycle)
asn00630
Glyoxylate and dicarboxylate metabolism
asn01100
Metabolic pathways
asn01200
Carbon metabolism
asn01210
2-Oxocarboxylic acid metabolism
asn01230
Biosynthesis of amino acids
Module
asn_M00009
Citrate cycle (TCA cycle, Krebs cycle)
asn_M00010
Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
Brite
KEGG Orthology (KO) [BR:
asn00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
102388603 (ACO1)
00630 Glyoxylate and dicarboxylate metabolism
102388603 (ACO1)
Enzymes [BR:
asn01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.3 aconitate hydratase
102388603 (ACO1)
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Ortholog
Paralog
GFIT
Motif
Pfam:
Aconitase
Aconitase_C
Motif
Other DBs
NCBI-GeneID:
102388603
NCBI-ProteinID:
XP_025061524
UniProt:
A0A3Q0GP23
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Position
Unknown
AA seq
889 aa
AA seq
DB search
MSSPFTQIAEPLDSNQSEKKFFNLNKLKDERYERLPFSIKVLLESAIRNCDEFLVKKEDV
ENILNWQVMQHKNVEVPFKPARVILQDFTGVPAVVDFAAMRDAVKKLGGDPEKINPICPA
DLVIDHSIQVDFNRRTDSLQKNQDLEFERNKERFEFLKWGSQAFHNMRIIPPGSGIIHQV
NLEYLARVVFDQNGYYYPDSVVGTDSHTTMIDGLGVLGWGVGGIEAEAVMLGQPISMVLP
EVIGYKLKGNPQPLITSTDIVLTVTKHLRQVGVVGKFVEFFGPGVAQLSIADRATIANMC
PEYGATAAFFPVDEVSIRYLIQTGRDEKKIKHIKTYLEAVGMFRDFSRSSQDPDFTQVVE
LDLHTVVPCCSGPKRPQDKVAVSDMKKDFETCLGAKQGFKGFQIAPKHHSDRVKFVYEGS
DFEITHGSVVIAAITSCTNTSNPSVMLGAGLLAKKAVNAGLTVKPYIKTSLSPGSGVVTY
YLRDSGVMPYLSQLGFDVVGYGCMTCIGNSGPLPEPVVAAITQGDLVAVGVLSGNRNFEG
RVHPNTRANYLASPPLVIAYAIAGTVRIDFEKEPLGVNAEGNKIFLRDIWPTRDEIQAVE
RQYVIPGMFKEVYKKIETGNESWNALDAPSDKLYTWNPKSTYIKSPPFFENLTLEPSPPK
SIVDAYVLLNFGDSVTTDHISPAGNIARNSPAARYLTSRGLTPREFNSYGSRRGNDDVMA
RGTFANIRLLNKFINKQGPQTIHFPSGETLDVFDAAERYMQAGQPLIVLTGKEYGSGSSR
DWAAKGPFLLGIKAVIAESYERIHRSNLVGMGVIPLQYLPGENAGTLGLTGRERYTIVIP
EELKPRMNVQIKLDTGKTFQTIMRFDTDVELTYFHNGGILNYMIRKMAT
NT seq
2670 nt
NT seq
+upstream
nt +downstream
nt
atgagcagccctttcacgcagatcgcggagccattagactccaaccagtctgaaaagaaa
ttcttcaatctgaacaaattgaaagatgaaagatatgaacggttgccattttctattaaa
gtccttctggagtcagcaatccgtaactgtgatgagtttctagtgaagaaggaagatgtt
gagaacatcctcaactggcaggtgatgcaacacaagaatgttgaagtgccatttaaacct
gcacgagttattctacaggacttcaccggtgtacctgcagtggttgactttgctgcaatg
cgtgatgctgtgaagaagcttggtggagaccctgaaaaaatcaatcccatctgtcctgct
gacctagtaattgatcattccatccaagttgacttcaacaggaggacagacagtttacag
aagaatcaagatctggagtttgaaaggaacaaggagaggtttgagttcttgaagtggggc
tcccaggctttccacaacatgaggattattcccccaggctcggggattatccaccaagtg
aatttagagtacttggcaagagtggtgttcgatcagaatgggtactattatcctgatagt
gtggtgggcactgattcacacactacaatgattgatggtttgggagtgcttggctgggga
gttggtggcattgaggcagaagctgtgatgctgggtcagccaatcagcatggtgcttcct
gaagtgatcggttacaagctgaaaggaaatcctcaacctctcataacatccactgacata
gtgctcacagttaccaagcaccttcgccaggttggcgttgtgggtaaatttgtggagttt
tttgggcctggtgtagcccagctgtccattgcagatcgagccaccattgccaacatgtgt
ccagagtatggagcaactgctgctttctttccagtagatgaagttagcatcaggtacctg
atccaaacgggccgtgatgaaaaaaaaattaagcatataaagacataccttgaagcggtg
ggaatgtttagagacttcagtagatcatctcaagatccagatttcactcaggttgtagag
ctggatctccatactgtcgtgccttgctgtagtggacccaaaagacctcaggacaaagta
gccgtgtcagacatgaagaaggactttgagacttgcctgggagccaagcaaggattcaaa
ggattccagattgcccctaaacatcacagtgaccgggtgaagtttgtttatgaaggctcc
gattttgagattacccatggttcagtagtcattgcagccattaccagctgtactaatacg
agcaacccctcagttatgctaggagctggattgctagcgaagaaagctgtcaatgctggt
ctgactgtcaagccatacattaaaactagcttgtccccaggaagtggagtagtgacttac
tatctgagggacagtggagtaatgccttacctttctcaactagggtttgatgttgtgggt
tatgggtgtatgacctgcattgggaacagtggacctctaccagagcctgttgttgcagcc
atcactcagggagacctcgtagctgtgggtgtgttgtctggaaacaggaatttcgagggt
cgcgtccatcccaatacgcgtgccaattacctagcctcaccaccactggtgatagcttat
gctattgcagggaccgtaaggattgactttgagaaagaacctttgggagtaaacgcagaa
ggaaataagatttttctaagagacatttggccaacaagagatgagatccaggctgttgaa
cgtcagtatgttattcctgggatgttcaaggaagtctacaagaaaatagaaacaggaaat
gaatcctggaatgccttagatgccccatcagataaattatatacttggaatcccaagtct
acatatataaagtctccccctttctttgaaaacctgactttggagccttcccctcctaaa
tctatagtagatgcctatgtcctgctaaattttggagattctgtgacaactgaccacata
tctccagctgggaatatagcaaggaacagccctgctgcccgttacttaaccagcagaggt
ttgactcctagagaattcaactcttacggctcgcgcagaggtaatgacgatgtcatggcc
agaggaacatttgccaacattcgcttgttaaacaaattcatcaataaacagggacctcag
accatccactttccttctggggaaactcttgatgtgtttgatgctgctgagaggtacatg
caggctggccagcccctcatcgtgctgactggtaaggaatatggctcaggaagctctcgg
gactgggcagcaaagggacctttcctgctgggcatcaaagctgtcattgctgagagctac
gagcgaattcatcgcagtaacttagtaggaatgggggtgattcccttgcaatacctgcct
ggggagaatgctgggactctaggcctcactggacgggaacgctacacaatcgtcattcct
gaagaactcaaaccaaggatgaatgtccagatcaagctggatactgggaaaacctttcaa
accatcatgagattcgacactgatgtggaactcacttatttccacaatggcggcattctg
aactacatgattcgcaaaatggcaacctaa
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