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Motion Matters: Secretory Granule Motion Adjacent to the Plasma Membrane and Exocytosis

机译:运动问题:邻近血浆膜和胞吐作用的分泌颗粒运动

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Total internal reflection fluorescence microscopy was used to monitor changes in individual granule motions related to the secretory response in chromaffin cells. Because the motions of granules are very small (tens of nanometers), instrumental noise in the quantitation of granule motion was taken into account. ATP and Ca2+, both of which prime secretion before fusion, also affect granule motion. Removal of ATP in permeabilized cells causes average granule motion to decrease. Nicotinic stimulation causes a calcium-dependent increase in average granule motion. This effect is more pronounced for granules that undergo exocytosis than for those that do not. Fusion is not preceded by a reduction in mobility. Granules sometimes move 100 nm or more up to and within a tenth of a second before fusion. Thus, the jittering motion of granules adjacent to the plasma membrane is regulated by factors that regulate secretion and may play a role in secretion. Motion continues until shortly before fusion, suggesting that interaction of granule and plasma membrane proteins is transient. Disruption of actin dynamics did not significantly alter granule motion.
机译:全内反射荧光显微镜用于监测与嗜铬细胞分泌反应有关的单个颗粒运动的变化。因为颗粒的运动非常小(数十纳米),所以在颗粒运动定量中考虑了仪器噪声。 ATP和Ca 2 + 都是融合前的主要分泌物,它们也会影响颗粒运动。去除透化细胞中的ATP会导致平均颗粒运动降低。烟碱刺激导致平均颗粒运动中钙依赖性增加。这种作用对于经历胞吐作用的颗粒比没有经历胞吐作用的颗粒更为明显。融合之前没有减少移动性。颗粒有时会在融合前十分之一秒内移动100 nm甚至更多。因此,邻近质膜的颗粒的抖动运动受到调节分泌的因素的调节,并可能在分泌中起作用。运动一直持续到融合之前,这表明颗粒和质膜蛋白之间的相互作用是短暂的。肌动蛋白动力学的破坏并没有明显改变颗粒运动。

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