Question of 52
Q.Explain the reactions of Krebs cycle.
Telangana TsbieTelangana Board of Intermediate Education 2022Subjective· 8mImportance★★★★★
0% · 0/52 Questions
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →The Krebs (citric acid/TCA) cycle in the mitochondrial matrix takes the 2-carbon acetyl group from acetyl-CoA, oxidizes it fully to CO2 in a cyclic series of reactions, and captures the released energy mainly as NADH and FADH2 for later ATP production.
Location: Mitochondrial matrix.
Overview: Each pyruvate (from glycolysis) is oxidatively decarboxylated to acetyl-CoA (releasing 1 CO2 and 1 NADH); acetyl-CoA then enters the Krebs cycle. Since glycolysis of one glucose gives two pyruvates, the cycle turns twice per glucose molecule.
Reactions of the cycle:
- Acetyl-CoA (2C) condenses with oxaloacetate (OAA, 4C) -> Citrate (6C), catalysed by citrate synthase; CoA is released.
- Citrate is isomerised to Isocitrate (via cis-aconitate, catalysed by aconitase).
- Isocitrate undergoes oxidative decarboxylation -> alpha-ketoglutarate (5C), releasing 1 CO2 and producing 1 NADH.
- Alpha-ketoglutarate undergoes oxidative decarboxylation -> Succinyl-CoA (4C), releasing 1 CO2 and producing 1 NADH.
- Succinyl-CoA -> Succinate, with substrate-level phosphorylation generating 1 GTP (or ATP).
- Succinate is oxidized to Fumarate by succinate dehydrogenase, producing 1 FADH2 (this enzyme is embedded in the inner mitochondrial membrane, linking directly to the ETC).
- Fumarate + H2O -> Malate (catalysed by fumarase). …
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.