Chryseobacterium indologenes: CEQ15_00010
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Entry
CEQ15_00010 CDS
T04932
Name
(GenBank) succinate CoA transferase
KO
K18118
succinyl-CoA:acetate CoA-transferase [EC:
2.8.3.18
]
Organism
cio
Chryseobacterium indologenes
Pathway
cio00020
Citrate cycle (TCA cycle)
cio00620
Pyruvate metabolism
cio00650
Butanoate metabolism
cio01100
Metabolic pathways
cio01110
Biosynthesis of secondary metabolites
cio01120
Microbial metabolism in diverse environments
cio01200
Carbon metabolism
Module
cio_M00009
Citrate cycle (TCA cycle, Krebs cycle)
cio_M00011
Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:
cio00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
CEQ15_00010
00620 Pyruvate metabolism
CEQ15_00010
00650 Butanoate metabolism
CEQ15_00010
Enzymes [BR:
cio01000
]
2. Transferases
2.8 Transferring sulfur-containing groups
2.8.3 CoA-transferases
2.8.3.18 succinyl-CoA:acetate CoA-transferase
CEQ15_00010
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
AcetylCoA_hyd_C
AcetylCoA_hydro
CoA_trans
CitF
DUF3826
Motif
Other DBs
NCBI-ProteinID:
ASE60026
UniProt:
A0AAD0YZE8
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Position
complement(442..1953)
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AA seq
503 aa
AA seq
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MLERIRLESLHQKVTTAENAVKIIKDGMTIGSSGFTKAGDSKAILPALAERGKTENLKVT
LMTGASLGHGTDGKLAEADVIRKRMPFQVDPILRNKINNGEILFIDQHLSESAELLHTKN
LQSIDVAVIEAAYIERDGSIVPTTSVGNSVTFAALAKKVIIEINTEVPEEVYGIHDIYQA
EDYPYRNVIPIVAPWNKIGRKSIPVDPDKIEAIVFTNLKDSPADIAEPDEKTTAIARHLL
GFFENEVQLGRLTDRLLPLQAGIGKVANAVLTGFKDSNFYDLTMFSEVLQDSTFDLIDSG
KLSFASASSITVSKECYERVLGNLSKYKEKFVLRPQNISNTPGLIRRLGVIAINTAIEFD
IYGNVNSTHIGGTKIMNGIGGSGDFARNAYLSIFVTQAASKGNNISHVLPMVSHTDHTEH
DVDILVTDIGLADLRGLAPRERAQKIIDNCVHPDYKEELQSYFDRACERGGHTPHLLEES
FSWHLRFAQTGSMKQATEVEISN
NT seq
1512 nt
NT seq
+upstream
nt +downstream
nt
atgttagaaagaatcagattagaaagtctacaccaaaaagtaacaacagctgaaaatgct
gttaaaatcattaaagacgggatgaccatcgggtccagcggctttactaaagcaggagac
agcaaagctattttacctgccctggcagaaagaggaaaaacagaaaaccttaaagtaaca
ttaatgaccggcgcttcgctggggcacggtactgacggaaaattagcggaagctgatgtc
atcaggaaaaggatgcctttccaggtagatcctattttaaggaataagatcaataatggt
gaaattctctttatcgaccagcatttgagcgaaagtgccgaacttctccacaccaaaaat
ttacaaagcatcgacgtagcggttatcgaagcggcttatattgaaagagacggaagcatt
gttcctactacctccgtgggaaattcagtcacctttgctgccttagccaaaaaagtcatc
attgaaatcaataccgaagttcctgaagaagtctacggaatccacgatatttaccaggca
gaagactatccttacagaaacgttattcctattgtagccccatggaacaagatcggaaga
aaaagtattcctgttgatcctgataaaatagaggcaattgttttcaccaatcttaaagac
agcccggcagatattgcggaaccggacgaaaagaccacagccattgccagacatcttctc
ggattctttgaaaacgaagtacagctgggacgtcttaccgaccgcttacttccccttcag
gcaggcatcgggaaagtagccaatgctgtacttacagggtttaaagacagtaacttctat
gatttaacgatgttttctgaagtccttcaggacagtacttttgatttgatagactcaggg
aaattaagttttgcctctgcatcttccattaccgtctctaaggaatgctatgaaagagtg
ttaggaaacctttcaaaatataaagaaaagtttgtcttaagaccccagaatatttccaat
acaccaggcctgatcagaagattgggggtgattgccatcaacacggctattgaatttgat
atctacggaaatgtaaactctacccacatcggcggaaccaaaatcatgaatgggatcggc
ggttctggagactttgccagaaatgcttatttaagtattttcgtcactcaggctgcttca
aaaggcaataatatttcgcatgtgcttcctatggtttctcataccgaccatacagaacat
gatgttgatattctggtaaccgatatcggattggctgacctgcgagggctggcgccaaga
gaaagagctcagaaaatcatagacaactgtgttcaccctgattataaagaagaattgcaa
tcgtattttgacagagcttgtgagaggggtggccatactcctcacctgctggaagaatca
ttcagctggcatctgagatttgcccagacaggaagtatgaaacaagctacagaagtagaa
atttctaattaa
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