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Multiple Choice
How is energy released from a molecule of ATP?
A
By forming a bond between the first and second phosphate groups
B
By adding a phosphate group to ADP
C
By breaking the bond between the second and third phosphate groups
D
By converting ATP directly into glucose
Verified step by step guidance
1
Understand the structure of ATP: ATP (adenosine triphosphate) consists of an adenosine molecule bonded to three phosphate groups. The bonds between these phosphate groups are high-energy bonds.
Identify the process of energy release: Energy is released from ATP when the bond between the second and third phosphate groups is broken. This process converts ATP into ADP (adenosine diphosphate) and an inorganic phosphate (Pi).
Recognize the role of hydrolysis: The breaking of the bond between the second and third phosphate groups involves a hydrolysis reaction, where water is used to break the bond, releasing energy.
Understand the significance of this reaction: The energy released during the conversion of ATP to ADP is used by cells to perform various functions, such as muscle contraction, active transport, and chemical synthesis.
Connect to cellular processes: This mechanism of energy release is crucial for cellular metabolism and is a fundamental concept in understanding how cells harness and utilize energy.