首页> 外文OA文献 >Simultaneous electrical and optical measurements show that membrane fusion precedes secretory granule swelling during exocytosis of beige mouse mast cells.
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Simultaneous electrical and optical measurements show that membrane fusion precedes secretory granule swelling during exocytosis of beige mouse mast cells.

机译:同时的电学和光学测量表明,在米色小鼠肥大细胞胞吐过程中,膜融合先于分泌性颗粒溶胀。

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摘要

Mast cells show dramatic morphological changes when undergoing exocytosis. We have investigated whether the first of those morphological changes, swelling of the secretory granule, precedes--and therefore possibly initiates--secretion or whether it occurs after fusion of the granule and plasma membranes. We used cell membrane capacitance to detect the moment when granule and plasma membrane become continuous. We measured large capacitance increases, often preceded by transients in capacitance. The rise-times of the capacitance increases were half-maximal at 2-59 msec. We observed cells with high-resolution video microscopy while these measurements were done. The capacitance increase always preceded the granular swelling that leads to exocytosis. To rule out the possibility that fusion was induced by a mechanical stress imparted by the internal pressure of a taut granule, we performed control experiments using cells in which vesicles were shrunken with hyperosmotic solutions. With these flaccid granules, again, the capacitance rise always preceded the swelling of the granules. We conclude that swelling cannot be the driving force for membrane fusion in this system.
机译:肥大细胞在胞吐过程中表现出戏剧性的形态变化。我们已经研究了这些形态学变化中的第一个是分泌颗粒的肿胀是否先于并因此可能引发分泌,或者是否在颗粒与质膜融合后发生。我们使用细胞膜电容来检测颗粒和质膜连续的时刻。我们测得了大的电容增加,通常在电容瞬变之前。电容增加的上升时间为2-59毫秒,为最大值的一半。在完成这些测量的同时,我们用高分辨率的视频显微镜观察了细胞。电容增加总是在导致胞吐作用的颗粒状膨胀之前发生。为了排除由绷紧颗粒的内部压力所产生的机械应力诱导融合的可能性,我们使用了其中囊泡被高渗溶液收缩的细胞进行了对照实验。同样,对于这些松弛的颗粒,电容的增加总是在颗粒膨胀之前。我们得出结论,溶胀不能成为该系统中膜融合的驱动力。

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