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首页> 外文期刊>The Journal of Physiology >Temperature enhances exocytosis efficiency at the mouse inner hair cell ribbon synapse
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Temperature enhances exocytosis efficiency at the mouse inner hair cell ribbon synapse

机译:温度提高小鼠内毛细胞带状突触的胞吐效率

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摘要

Hearing relies on fast and sustained neurotransmitter release from inner hair cells (IHCs) onto the afferent auditory nerve fibres. The temperature dependence of Ca~(2+) current and transmitter release at the IHCs ribbon synapse has not been investigated thus far. To assess the influence of temperature on calcium-triggered exocytosis, patch-clamp recordings of voltage-gated L-type Ca~(2+) influx and exocytic membrane capacitance changes were performed at room (25degC) and physiological (35-37degC) temperatures. An increase in temperature within this range increased the L-type Ca~(2+) current amplitude of IHCs (Q_(10) = 1.3) and accelerates the activation kinetics. Fast exocytosis, probed by 20 ms depolarization, was enhanced at physiological temperature with a Q_(10) of 2.1. The amplitude of fast release was elevated disproportionately to the increase in Ca~(2+) influx. In contrast, the rate of sustained exocytosis (exocytic rate between 20 and 100 ms of depolarization) did not show a significant increase at physiological temperature. Altogether, these data indicate that the efficiency of fast exocytosis is higher at physiological temperature than at room temperature and suggest that the number of readily releasable vesicles available at the active zone is higher at physiological temperature.
机译:听力依赖于内部毛细胞(IHC)向传入听觉神经纤维的快速持续释放。到目前为止,尚未研究IHCs带状突触中Ca〜(2+)电流的温度依赖性和发射器释放。为了评估温度对钙触发的胞吐作用的影响,在室温(25℃)和生理温度(35-37℃)下进行电压门控的L型Ca〜(2+)流入和膜细胞膜电容变化的膜片钳记录。温度在此范围内升高会增加IHC的L型Ca〜(2+)电流幅度(Q_(10)= 1.3)并加速激活动力学。在生理温度下,通过20 ms去极化探测的快速胞吐作用在Q_(10)为2.1时得到增强。快速释放的幅度与Ca〜(2+)内流的增加不成比例地增加。相反,持续的胞吐速率(去极化的20到100 ms之间的胞吐速率)在生理温度下没有显示出明显的增加。总而言之,这些数据表明在生理温度下快速胞吐作用的效率比在室温下更高,并且表明在生理温度下在活性区可用的易于释放的囊泡的数量更高。

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