Exercises · 12.6
Q.Explain ETS.
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Start your 14-day free trial to unlock the full solution →The electron transport system is a series of carriers on the inner mitochondrial membrane that passes electrons from NADH and FADH2 to oxygen, releasing energy that drives ATP synthesis by oxidative phosphorylation.
The Electron Transport System (ETS) is present in the inner mitochondrial membrane. Its job is to release and utilise the energy stored in NADH + H+ and FADH2 that were formed in glycolysis and the Krebs' cycle.
Path of electrons
- NADH + H+ produced in the matrix is oxidised by NADH dehydrogenase (complex I), and its electrons are transferred to ubiquinone (UQ / coenzyme Q) located within the membrane.
- FADH2 (generated in the oxidation of succinate in the Krebs' cycle) donates electrons to ubiquinone via succinate dehydrogenase (complex II).
- Reduced ubiquinone (ubiquinol) is oxidised, transferring electrons to cytochrome c through the cytochrome bc1 complex (complex III).
- Cytochrome c is a small protein on the outer surface of the inner membrane that acts as a mobile carrier shuttling electrons between complex III and complex IV.
- Cytochrome c oxidase (complex IV), containing cytochromes a and a3 and two copper centres, transfers the electrons to oxygen (O2), the final electron acceptor, reducing it to water (H2O).
Coupling to ATP synthesis …
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