Which statement best describes acetylcholine degradation and recycling?

Test your knowledge for the Drug Action 2 Exam. Prepare with detailed questions and in-depth explanations covering essential pharmacology topics. Enhance your study and boost your confidence for the exam success!

Multiple Choice

Which statement best describes acetylcholine degradation and recycling?

Explanation:
When acetylcholine is released at a cholinergic synapse, it is rapidly inactivated by the enzyme acetylcholinesterase in the synaptic cleft, which breaks it down into acetate and choline. The choline is then transported back into the presynaptic neuron, where it’s reused to synthesize new acetylcholine with acetyl-CoA. This combination of degradation and recycling is what terminates the signal quickly and maintains a ready supply of transmitter for the next release. That description matches the best answer because it accurately describes both the breakdown by acetylcholinesterase and the recycling of choline into the presynaptic neuron for resynthesis of acetylcholine. The other statements are inconsistent with how acetylcholine signaling is terminated and recycled: it is not left active in the cleft, it is not converted into dopamine, and it is not stored unchanged after release.

When acetylcholine is released at a cholinergic synapse, it is rapidly inactivated by the enzyme acetylcholinesterase in the synaptic cleft, which breaks it down into acetate and choline. The choline is then transported back into the presynaptic neuron, where it’s reused to synthesize new acetylcholine with acetyl-CoA. This combination of degradation and recycling is what terminates the signal quickly and maintains a ready supply of transmitter for the next release.

That description matches the best answer because it accurately describes both the breakdown by acetylcholinesterase and the recycling of choline into the presynaptic neuron for resynthesis of acetylcholine. The other statements are inconsistent with how acetylcholine signaling is terminated and recycled: it is not left active in the cleft, it is not converted into dopamine, and it is not stored unchanged after release.

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