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Kiss-and-Coat and Compartment Mixing: Coupling Exocytosis to Signal Generation and Local Actin Assembly

机译:亲密的外衣和隔室混合:胞吐作用耦合到信号生成和局部肌动蛋白组装。

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摘要

Regulated exocytosis is thought to occur either by “full fusion,” where the secretory vesicle fuses with the plasma membrane (PM) via a fusion pore that then dilates until the secretory vesicle collapses into the PM; or by “kiss-and-run,” where the fusion pore does not dilate and instead rapidly reseals such that the secretory vesicle is retrieved almost fully intact. Here, we describe growing evidence for a third form of exocytosis, dubbed “kiss-and-coat,” which is characteristic of a broad variety of cell types that undergo regulated exocytosis. Kiss-and-coat exocytosis entails prolonged maintenance of a dilated fusion pore and assembly of actin filament (F-actin) coats around the exocytosing secretory vesicles followed by direct retrieval of some fraction of the emptied vesicle membrane. We propose that assembly of the actin coats results from the union of the secretory vesicle membrane and PM and that this compartment mixing represents a general mechanism for generating local signals via directed membrane fusion.
机译:调节的胞吐作用被认为是通过“完全融合”发生的,在这种情况下,分泌囊泡通过融合孔与质膜(PM)融合,然后扩张直至分泌囊泡塌陷到PM中。或通过“亲吻和跑动”,融合孔不会扩张,而是迅速重新密封,从而分泌囊泡几乎完全恢复。在这里,我们描述了第三种形式的胞吐作用的越来越多的证据,被称为“亲亲”,它是经历调节性胞吐作用的多种细胞类型的特征。亲亲和包膜的胞吐作用需要长期维持扩张的融合孔,并在胞吐的分泌性囊泡周围聚集肌动蛋白丝(F-肌动蛋白)膜,然后直接取回一部分空泡的囊膜。我们提出肌动蛋白涂层的组装是由分泌性囊泡膜和PM的结合引起的,并且这种隔室的混合代表了通过定向膜融合产生局部信号的一般机制。

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