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New insights into the control of secretion

机译:关于分泌控制的新见解

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摘要

Vesicular secretion is a fundamental process in the body with vesicle fusion releasing vesicle contents to the outside. This process called exocytosis is usually thought of as leading to an all-or-none release of content; regulation of secretory output dependent on regulating the numbers of fused vesicles. However, it is well established that the fusion pore that forms when the vesicle membrane fuses with the cell membrane is dynamic. More recent evidence indicates the dynamic opening and closing, and the size of the fusion pore, are limiting factors to the release of vesicle content. What remains unclear is whether these fusion pore behaviors are under cellular control and therefore relevant to cell physiology.Accumulating evidence over the last two years points to myosin 2 as one regulator of fusion pore behavior. This is interesting since myosin 2 activity is in turn controlled by kinases and phosphatases, well known to be under cellular control. We conclude that fusion pore behavior is likely a genuine control point for vesicle content release. This leads to a model for secretion with secretory output controlled not only by the numbers of vesicles fused but also by the regulation of the behavior of individual vesicles.
机译:囊泡分泌是体内的基本过程,囊泡融合将囊泡内容物释放到外部。通常认为这种称为胞吐作用的过程导致内容的全部或完全释放。调节分泌量取决于调节融合囊泡的数量。然而,已经充分确定的是,当囊泡膜与细胞膜融合时形成的融合孔是动态的。最近的证据表明动态的打开和关闭以及融合孔的大小是限制小泡内容物释放的因素。尚不清楚这些融合孔的行为是否受细胞控制,因此是否与细胞生理有关。过去两年的大量证据表明,肌球蛋白2是融合孔行为的一种调节剂。这很有趣,因为肌球蛋白2的活性又受众所周知的细胞控制的激酶和磷酸酶的控制。我们得出结论,融合孔的行为可能是囊泡内容物释放的真正控制点。这导致具有分泌输出的分泌模型,其分泌输出不仅受融合的囊泡的数量控制,而且还受单个囊泡的行为调节的控制。

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