The F₁F. - ATP synthase is a molecular machine that converts the proton motive force into enzymatic activity. a. Discuss the assembly of the F, subunit and describe the role each component plays in the function of the ATP synthase complex. b. Describe the proton path that results in rotation within the F₁F-ATP synthase. c. Explain how the F, subunit contributes to the binding change mechanism.

Biochemistry
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ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
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Chapter1: Biochemistry: An Evolving Science
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DG1:
The F₁F - ATP synthase is a molecular machine that converts the proton motive
force into enzymatic activity.
a. Discuss the assembly of the F, subunit and describe the role each component
plays in the function of the ATP synthase complex.
b. Describe the proton path that results in rotation within the F₁F-ATP synthase.
c. Explain how the F subunit contributes to the binding change mechanism.
Transcribed Image Text:DG1: The F₁F - ATP synthase is a molecular machine that converts the proton motive force into enzymatic activity. a. Discuss the assembly of the F, subunit and describe the role each component plays in the function of the ATP synthase complex. b. Describe the proton path that results in rotation within the F₁F-ATP synthase. c. Explain how the F subunit contributes to the binding change mechanism.
Expert Solution
Step 1: Understanding what is F1-F0 ATP synthase

The molecular device known as F1F0-ATP synthase transforms the proton motive force into enzymatic activity. The F1 subunit rotates as a result of the F0 subunit, which is situated in the membrane, pumping protons. As a result of this rotation, ATP is produced from ADP and inorganic phosphate through the binding change process.

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