首页> 外文期刊>The Journal of Physiology >Ca(2+) permeable AMPA receptors switch allegiances: mechanisms and consequences.
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Ca(2+) permeable AMPA receptors switch allegiances: mechanisms and consequences.

机译:Ca(2+)渗透性AMPA受体转换效忠:机制和后果。

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摘要

The subunit composition of synaptic AMPA receptors can undergo dynamic changes during physiological functioning and under pathological conditions. This switch in AMPA receptor phenotype involves changes in the level of GluA2 subunits that are mediated via regulated AMPA receptor trafficking, modification of local protein synthesis and altered gene transcription of GluA2 subunits. Incorporation of the GluA2 subunits into an AMPA receptor alters a number of key biophysical properties, including Ca(2+) permeability and the waveform of the synaptic current. These changes alter the ability of synaptic currents to evoke an action potential and therefore have a profound effect on the computational capability of individual neurons and thus the output of neuronal circuits.
机译:突触AMPA受体的亚基组成可以在生理功能过程中和病理条件下发生动态变化。 AMPA受体表型的这种转换涉及通过调控的AMPA受体运输,修饰的局部蛋白质合成和改变的GluA2亚基介导的GluA2亚基水平的变化。 GluA2亚基并入AMPA受体会改变许多关键的生物物理特性,包括Ca(2+)的渗透性和突触电流的波形。这些变化改变了突触电流引起动作电位的能力,因此对单个神经元的计算能力以及神经元回路的输出产生了深远的影响。

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