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Question
Explain the reactions taking place in mitochondrial inner membrane.
Long Answer
Solution
Electron and hydrogen (proton) transport takes place across four multiprotein complexes (I-IV). They are.
- Complex-I (NADH dehydrogenase):
It contains a flavoprotein (FMN) and associated with non-heme iron Sulphur protein (Fe-S). This complex is responsible for passing electrons and protons from mitochondrial NADFI (Internal) to Ubiquinone (UQ)
\[\ce{NADH + H+ + UQ ⇌ NAD+ + UQH2}\] - In plants, an additional NADH dehydrogenase (External) complex is present on the outer surface of inner membrane of mitochondria which can oxidise cytosolic NADH + H+.
Ubiquinone (UQ) or Coenzyme Quinone (CoQ) is a small, lipid-soluble electron, proton carrier located within the inner membrane of mitochondria). - Complex-II (succinic dehydrogenase):
It contains FAD flavoprotein is associated with non-heme iron Sulphur (Fe-S) protein. This complex receives electrons and protons from succinate in Kerbs cycle and is converted into fumarate and passes to ubiquinone.
\[\ce{Succinate + UQ -> Fumaraic + UQH2}\] - Complex-III (Cytochrome bc1 complex): This complex oxidises reduced ubiquinone (ubiquinol) and transfers the electrons through Cytochrome bc1 Complex (Iron Sulphur centci bcl complex) to cytochrome c.
- Complex IV (Cytochrome c oxidase): Complex IV is the terminal oxidase and brings about the reduction of 1/2 O2 to H2O. TWO protons are needed to form a molecule of H2O (terminal oxidation).
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Stages of Respiration
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