Concept explainers
(a)
Interpretation: To determine the number of ATP molecules formed from each NADH molecule that enters the ETC.
Concept introduction: Electron transport chain
There are four complexes associated with the electron transport chain that is present in the inner mitochondrial membrane. The four complexes that help in the electron transfer in the electron transport chain are:
Complex I:
Complex II:
Complex III:
Complex IV:
NADH is the reduced form of nicotinamide adenine dinucleotide. It is employed as an oxidizing agent in various reactions like oxidation of secondary alcohol into a ketone. Its structure consists of three subunits: nicotinamide, ribose, and ADP.
(b)
Interpretation: To determine the number of ATP molecules that are formed from each NADH molecule that enters the ETC.
Concept introduction: Electron transport chain is a sequence of biochemical reactions in which electrons and hydrogen atoms from the citric acid cycle are transferred to various intermediate carriers and finally reacts with molecular oxygen to form a water molecule. The reaction of the formation of the water is:
There are four complexes associated with the electron transport chain that is present in the inner mitochondrial membrane. The four complexes that help in the electron transfer in the electron transport chain are:
Complex I:
Complex II:
Complex III:
Complex IV:
FADH2 is the reduced form of flavin adenine dinucleotide. The main function of flavin adenine dinucleotide is to act as an oxidizing agent and used by the cell in oxidation reactions like oxidation of fatty acid.
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Study Guide with Selected Solutions for Stoker's General, Organic, and Biological Chemistry, 7th
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- 8. Proteins that contain iron in the electron transport chain are called a. ATPases b. coenzymes C. cytochromes d. transferasesarrow_forwardIf sugar must be broken down to release energy through cellular respiration, why is ATP needed in the process? Explain.arrow_forwardWhat is the substrate for pyruvate dehydrogenase? a. pyruvic acid b. water c. hydrogen d. coenzyme Aarrow_forward
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