A unifying hypothesis for M1 muscarinic receptor signalling in pyramidal neurons

Sameera Dasari, C. Hill, Allan T. Gulledge
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引用次数: 30

Abstract

Phasic release of acetylcholine (ACh) in the neocortex facilitates attentional processes. Acting at a single metabotropic receptor subtype, ACh exerts two opposing actions in cortical pyramidal neurons: transient inhibition and longer‐lasting excitation. Cholinergic inhibitory responses depend on calcium release from intracellular calcium stores, and run down rapidly at resting membrane potentials when calcium stores become depleted. We demonstrate that cholinergic excitation promotes calcium entry at subthreshold membrane potentials to rapidly refill calcium stores, thereby maintaining the fidelity of inhibitory cholinergic signalling. We propose a ‘unifying hypothesis’ for M1 receptor signalling whereby inhibitory and excitatory responses to ACh in pyramidal neurons represent complementary mechanisms governing rapid calcium cycling between the endoplasmic reticulum, the cytosol and the extracellular space.
锥体神经元中M1毒蕈碱受体信号传导的统一假设
新皮层中乙酰胆碱(ACh)的阶段性释放促进了注意过程。乙酰胆碱作用于单一的代谢受体亚型,在皮质锥体神经元中发挥两种相反的作用:短暂抑制和更持久的兴奋。胆碱能抑制反应依赖于细胞内钙储存的钙释放,当钙储存耗尽时,胆碱能抑制反应在静息膜电位下迅速下降。我们证明胆碱能激发促进钙进入阈下膜电位迅速补充钙储存,从而维持抑制胆碱能信号的保真度。我们提出了M1受体信号传导的“统一假设”,即锥体神经元对乙酰胆碱的抑制和兴奋反应代表了内质网、细胞质和细胞外空间之间钙快速循环的互补机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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