首页> 外文期刊>The Journal of Physiology >Voltage-dependent interaction between the muscarinic ACh receptor and proteins of the exocytic machinery.
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Voltage-dependent interaction between the muscarinic ACh receptor and proteins of the exocytic machinery.

机译:毒蕈碱型ACh受体与胞外机制蛋白之间的电压依赖性相互作用。

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摘要

1. Release of neurotransmitter into the synaptic cleft is the last step in the chain of molecular events following the arrival of an action potential at the nerve terminal. The neurotransmitter exerts negative feedback on its own release. This inhibition would be most effective if exerted on the first step in this chain of events, i.e. a step that is mediated by membrane depolarization. Indeed, in numerous studies feedback inhibition was found to be voltage dependent. 2. The purpose of this study is to investigate whether the mechanism underlying feedback inhibition of transmitter release resides in interaction between the presynaptic autoreceptors and the exocytic apparatus, specifically the soluble NSF-attachment protein receptor (SNARE) complex. 3. Using rat synaptosomes we show that the muscarinic ACh autoreceptor (mAChR) is an integral component of the exocytic machinery. It interacts with syntaxin, synaptosomal-associated protein of 25 kDa (SNAP-25), vesicle-associated membrane protein (VAMP) andsynaptotagmin as shown using both cross-linking and immunoprecipitation. 4. The interaction between mAChRs and both syntaxin and SNAP-25 is modulated by depolarization levels; binding is maximal at resting potential and disassembly occurs at higher depolarization. 5. This voltage-dependent interaction of mAChRs with the secretory core complex appears suitable for controlling the rapid, synchronous neurotransmitter release at nerve terminals.
机译:1.动作电位到达神经末梢后,神经递质释放到突触间隙是分子事件链中的最后一步。神经递质对其自身释放施加负反馈。如果施加在该事件链的第一步,即由膜去极化介导的步骤,则这种抑制将是最有效的。实际上,在许多研究中发现反馈抑制与电压有关。 2.这项研究的目的是调查反馈抑制递质释放的机制是否存在于突触前自体受体与胞外装置之间的相互作用,特别是可溶性NSF-附着蛋白受体(SNARE)复合物之间的相互作用。 3.使用大鼠突触小体,我们表明毒蕈碱型ACh自身受体(mAChR)是胞外机制不可或缺的组成部分。使用交联和免疫沉淀法显示,它可与语法素,25 kDa的突触体相关蛋白(SNAP-25),囊泡相关膜蛋白(VAMP)和突触标签蛋白相互作用。 4. mAChR与syntaxin和SNAP-25之间的相互作用受去极化水平的调节;结合在静止电位时最大,而解离在更高的去极化时发生。 5. mAChR与分泌核心复合物的这种电压依赖性相互作用似乎适合控制神经末梢快速,同步的神经递质释放。

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