Corynebacterium kefirresidentii: I6I12_08140
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Entry
I6I12_08140 CDS
T07267
Name
(GenBank) multifunctional oxoglutarate decarboxylase/oxoglutarate dehydrogenase thiamine pyrophosphate-binding subunit/dihydrolipoyllysine-residue succinyltransferase subunit
KO
K01616
multifunctional 2-oxoglutarate metabolism enzyme [EC:
2.2.1.5
4.1.1.71
1.2.4.2
2.3.1.61
]
Organism
ckf
Corynebacterium kefirresidentii
Pathway
ckf00020
Citrate cycle (TCA cycle)
ckf00630
Glyoxylate and dicarboxylate metabolism
ckf00785
Lipoic acid metabolism
ckf01100
Metabolic pathways
ckf01110
Biosynthesis of secondary metabolites
ckf01120
Microbial metabolism in diverse environments
ckf01200
Carbon metabolism
ckf01210
2-Oxocarboxylic acid metabolism
Module
ckf_M00009
Citrate cycle (TCA cycle, Krebs cycle)
ckf_M00011
Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:
ckf00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
I6I12_08140
00630 Glyoxylate and dicarboxylate metabolism
I6I12_08140
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
I6I12_08140
Enzymes [BR:
ckf01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.4 With a disulfide as acceptor
1.2.4.2 oxoglutarate dehydrogenase (succinyl-transferring)
I6I12_08140
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.5 2-hydroxy-3-oxoadipate synthase
I6I12_08140
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.61 dihydrolipoyllysine-residue succinyltransferase
I6I12_08140
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.71 2-oxoglutarate decarboxylase
I6I12_08140
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1_dh
2-oxoacid_dh
OxoGdeHyase_C
Transket_pyr
2-oxogl_dehyd_N
FAM60A
Motif
Other DBs
NCBI-ProteinID:
QQN47111
LinkDB
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Position
1701978..1705715
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AA seq
1245 aa
AA seq
DB search
MRRIPAVSTSNIFGPNAWLIDEQFQQYSKDPSSVDKEWRDYFEANGAPKSKAPAKEAAKP
SKPAAKKTEGTTTARKQEVRETNVDKSVSKAQEKSAKAQQSVKKSESPLDHIADYKGGEE
RQLKGMFKAIAKNMEESLEIPTATTVRDMPVKLMWENRSMINDHLKRTRGGKISFTHIIG
YAMVKAVQLHPDMNVRYELKDGKPYVIQPEHINLGLAIDLPQKDGSRALVVAAIKECETK
SFSEFVAAYEDIVTRSRKNKLTMDDFSGVTINLTNPGGIGTRHSIARLTKGAGSIIGVGS
MDYPAEFAGASADRLADLGVGRLVTLTSTYDHRVIQGAESGEFLRTIGQLLVDGAFWDDL
FSSMGVPYEPFRWAQDVPNSGVDKNTRVMQLIESYRSRGHLLADTNPLGWVQPGLPNPDH
RDLDIATHGLTIWDLDRTFNVGGFGGKEQMTLREVLSRLRAAYTLKVGSEYTHILDRDER
SWLQDRLEAGMPKPTNAEQKYILQKVNAAEAFENFLQTKYVGQKRFSLEGAETLIPLLDS
IIDTAAGQDLDEVVIGMPHRGRLNVLFNIVGKPLADIFGEFDGNYKGGQLGGSGDVKYHL
GSEGHHLQMFGDGEIKVTLAANPSHLEAVDPVMEGIARAKQDILDKGPEGHTVVPVMLHG
DASFTGLGIVQETINLSQLRGYTNGGTVHIVVNNQVGFTTTPDSGRSTHYATDLAKGFDC
PVFHVNGDDPEAVVWVGQMAAEYRRQFGKDVFIDLMVYRLRGHNEADDPSMTQPELYSVI
DEHKAVRERYTNDLIGRGDLSAEDAEAAARDFHDQMESVFAEHKEAGKARPKEQTGITSS
QELTRGLDTSITAEELAELGAAYGNPPEDFEYHKRVGKVAKDREKSSREGGIDWGWGELI
AFGSLAGEGKVVRLAGEDSRRGTFTQRHAVTFDPRNGNEYNPMHAIATSKGNGGKFMVYN
SALTEYAGMGFEYGYTVGNPDALVAWEAQFGDFANGAQTIIDEYISSGEAKWGQLSSLVL
LLPHGYEGQGPDHSSARIERYLQLCAEGSMTVAQPSTPANHFHLLRRQALGEMKRPLVVF
TPKSMLRNKAATSAVEDFTEVKRFQSVINDPNYVDVDGKKVGDTDKVKTIMLVSGKLYWD
LEKKREADGRDDIAIVRVEMLHPIPFNRLREAFEAYPNATQIRFVQDEPANQGPWPFYNE
HLRTLIPDMPEMVRVSRRAQSSTATGNAKVHQIEQKNLLEEAFDI
NT seq
3738 nt
NT seq
+upstream
nt +downstream
nt
atgaggcgaatacctgccgtgagcacatcgaatatcttcggccccaatgcgtggctgata
gacgagcagttccagcagtactccaaggacccgagctccgtagataaggagtggcgcgac
tacttcgaggcaaacggcgcgcctaagtctaaggccccagccaaggaggccgcgaagccg
tctaagccagccgcgaagaagactgagggtactactaccgcccgcaagcaggaggtccgc
gaaaccaacgtggataagtccgtgtccaaggcacaggagaagtccgctaaggcacagcag
tccgtaaagaagtctgagtccccgctggaccatattgcggactacaagggcggcgaagag
cgccagctcaagggcatgttcaaggccattgctaagaacatggaagaatccctggaaatt
cctaccgctaccaccgtgcgcgatatgccggtcaagctcatgtgggaaaaccgttccatg
atcaatgaccacctcaagcgcacccgcggtggcaagatctcctttacccacatcatcggc
tacgccatggtcaaggccgtgcagctgcacccagatatgaacgtgcgctacgagctcaag
gatggcaagccttatgtcatccagcccgagcacatcaacctgggcctagccattgacctc
ccgcagaaggatggctcccgcgcgctggtcgttgccgccatcaaggagtgcgagaccaag
tccttctccgagtttgttgcggcttatgaggatattgttacccgttcccgcaagaacaag
ctcaccatggatgacttctctggtgtgaccattaacctcaccaacccgggcggcatcggc
acccgccactccatcgcccgcctgactaagggcgcaggctccatcatcggcgtgggctct
atggattatccggccgagttcgccggtgcttccgcagatcgcttggctgacctaggtgta
ggccgcctggttaccttgacctccacctatgaccaccgcgttatccagggtgcagagtcc
ggcgaatttttgcgcaccattggccagctgcttgtcgacggcgcgttctgggacgacctc
ttctcctccatgggcgtgccttatgagccattccgttgggcacaggacgtgccaaactcc
ggcgtggacaagaacacccgcgtcatgcagctcatcgagtcctaccgctcccgcggccac
ctgcttgccgataccaacccgctgggttgggtacagccgggactgcctaacccggatcac
cgcgacctcgatatcgcgacccacggcctgaccatttgggatctggaccgcaccttcaac
gtcggtggctttggcggcaaggagcagatgactctgcgcgaggtgctgtctcgcctgcgc
gccgcctataccttgaaggtcggctccgagtacacccacatcttggaccgcgatgagcgc
agctggctgcaggaccgcctcgaggctggcatgccgaagcccaccaacgcggagcagaag
tacatcctgcagaaggttaatgccgccgaggcattcgagaacttcttgcagaccaagtac
gtgggccagaagcgcttctccctcgagggcgctgagaccctcattccgttgctggattcc
atcatcgatactgccgctggccaggatttggacgaggtcgtcatcggtatgccgcaccgc
ggccgcctgaacgttctcttcaatatcgtgggcaagccgctggccgatatcttcggcgag
ttcgacggcaactacaagggcggccagctcggcggctccggtgacgttaagtaccacttg
ggttctgagggccaccacctccagatgttcggcgatggcgaaatcaaggtcacccttgct
gccaacccgtcccacctcgaggccgtggacccagtcatggaaggcatcgcgcgcgctaag
caggacattttggacaagggcccagagggccacaccgttgttccggtcatgctccacggc
gatgcatccttcaccggcctgggcattgtccaggagaccatcaacctgtcccagctgcgc
ggttataccaacggcggcaccgtccacatcgtggtcaataaccaggtgggcttcaccact
accccggattccggccgttccacccactacgccaccgacttggccaagggcttcgactgc
ccggtcttccacgtcaatggcgacgacccagaagcagttgtctgggtgggccagatggct
gccgagtaccgccgccagtttggcaaggatgtcttcatcgacctcatggtctaccgcctg
cgcggtcacaacgaggccgatgacccatccatgacccagccagagctttactctgtcatc
gacgagcacaaggcagtgcgcgagcgctacaccaacgacctcatcggccgtggtgacctc
tccgccgaagacgccgaagcagccgcacgcgacttccatgatcagatggagtccgtcttt
gctgagcacaaggaagctggcaaggctcgcccgaaggagcagactggcatcacctcctcc
caggagctcacccgcggcctggatacctccatcaccgccgaggaactcgccgagctgggt
gccgcctatggcaacccaccagaggacttcgagtaccacaagcgcgtgggcaaggtagcc
aaggatcgcgagaagtcttcccgcgagggcggcatcgactggggttggggcgaactcatc
gccttcggttccctggccggcgagggcaaggtcgtccgcctggctggtgaagattcccgc
cgcggtaccttcacccagcgccacgccgttacattcgacccacgcaacggcaatgagtac
aacccgatgcacgccatcgccacctccaagggcaatggcggcaagttcatggtctacaac
tccgcgctgaccgagtacgctggcatgggcttcgaatacggctacaccgtgggcaaccca
gacgccctcgtggcgtgggaggcacagttcggtgacttcgccaacggcgcccagaccatt
atcgatgagtacatctcctccggtgaggccaagtggggccagctgtccagcctggtactc
ctcctgccgcacggctacgagggccagggtccggaccactcctccgcccgcatcgagcgc
tacctccagctgtgcgctgagggttccatgaccgtggctcagccttccaccccggctaac
cacttccacctgctgcgccgccaggctctcggtgagatgaagcgtccattggtcgtcttc
accccgaagtccatgctgcgcaacaaggcggccacctccgccgtggaggacttcaccgag
gtcaagcgcttccagtccgttatcaacgatccgaactacgttgacgttgacggcaagaag
gttggcgataccgacaaggtcaagaccatcatgctggtttccggcaagctgtactgggat
ctggagaagaagcgcgaggccgacggccgcgatgacatcgccatcgtccgcgtggagatg
ctccacccgattccgttcaaccgcctgcgcgaggcatttgaggcttacccgaatgccacc
cagattcgcttcgtacaggacgagccggccaaccagggtccatggccgttctacaatgag
cacctgcgcaccctgatcccagatatgcctgaaatggttcgcgtttcccgccgtgcccag
tcctcgactgctaccggcaatgccaaggtgcaccagattgagcagaaaaacctgctggaa
gaggcttttgacatctaa
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