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Multiple Choice
ATP hydrolysis involves the hydrolysis of which bond?
A
Phosphoanhydride bond
B
Ester bond
C
Glycosidic bond
D
Peptide bond
Verified step by step guidance
1
Understand the structure of ATP (adenosine triphosphate), which consists of an adenosine molecule attached to three phosphate groups.
Recognize that ATP hydrolysis refers to the chemical reaction where ATP is converted to ADP (adenosine diphosphate) and an inorganic phosphate, releasing energy.
Identify the types of bonds present in ATP: phosphoanhydride bonds between the phosphate groups, ester bonds within the adenosine structure, and glycosidic bonds connecting the ribose sugar to the adenine base.
Focus on the phosphoanhydride bonds, which are high-energy bonds between the phosphate groups. These bonds are broken during ATP hydrolysis.
Conclude that the hydrolysis of ATP involves the breaking of phosphoanhydride bonds, which is the source of energy release in this process.