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question: a researcher is studying a novel synapse in the central nervo…

Question

question:

a researcher is studying a novel synapse in the central nervous system. under whole-cell voltage-clamp, they record an excitatory postsynaptic current (epsc) with a reversal potential of exactly 0 mv. assuming typical physiological intracellular and extracellular ionic concentrations for a mammalian neuron, which of the following mechanisms best explains this reversal potential?

a. the postsynaptic channels are exclusively permeable to \\(\text{k}^+\\) and \\(\text{na}^+\\), allowing an equal net flux of both ions at 0 mv.
b. the postsynaptic channels are equally permeable to \\(\text{na}^+\\), \\(\text{k}^+\\), and \\(\text{cl}^-\\), driving the membrane potential to the weighted average of their nernst potentials.
c. the postsynaptic current is entirely mediated by voltage-gated calcium channels opening at the soma.
d. the postsynaptic receptors are ligand-gated cation channels (e.g., ampa or nmda) that do not allow \\(\text{cl}^-\\) passage, but are permeable to both \\(\text{k}^+\\) and \\(\text{na}^+\\).

Explanation:

Analyze the reversal potential of EPSCs

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Evaluate channel properties and permeability

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Compare options

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Answer:

  • A. The postsynaptic channels are exclusively permeable to K⁺ and Na⁺, allowing an equal net flux of both ions at 0 mV.
  • B. The postsynaptic channels are equally permeable to Na⁺, K⁺, and Cl⁻, driving the membrane potential to the weighted average of their Nernst potentials.
  • C. The postsynaptic current is entirely mediated by voltage-gated calcium channels opening at the soma.
  • D. The postsynaptic receptors are ligand-gated cation channels (e.g., AMPA or NMDA) that do not allow Cl⁻ passage, but are permeable to both K⁺ and Na⁺. (Correct answer)