SMP0347154
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Escherichia coli O103:H2 str. 12009
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0347136
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Escherichia coli APEC O1
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0347149
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Escherichia coli ED1a
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0330884
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Bacteroides finegoldii DSM 17565
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0347156
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Escherichia coli O111:H- str. 11128
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0330904
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Bacteroides xylanisolvens SD CC 1b
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0331001
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Alistipes indistinctus YIT 12060
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0331004
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Parabacteroides johnsonii DSM 18315
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0331052
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Neisseria cinerea ATCC 14685
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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SMP0331047
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2-Oxoglutarate Decarboxylation to Succinyl-CoA
Parasutterella excrementihominis YIT 11859
Matched Description: succinyltransferase and dihydrolipoyl dehydrogenase), which is a rate-limiting enzyme of the citric acid … OGDHC reaction cycle, 2-oxoglutarate is bound and decarboxylated by E1(o), a thiamin-diphosphate … is carried to the active site and transferred to coenzyme A, forming succinyl-CoA. During this … transfer the lipoyl group is reduced to dihydrolipoyl. The succinyl-CoA is released and the lipoyl domain … of E2(o) is oxidized by E3 via transfer of protons to NAD, forming NADH and regenerating the lipoyl
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