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首页> 外文期刊>The Biological Bulletin >Critical role of cortical vesicles in dissecting regulated exocytosis: Overview of insights into fundamental molecular mechanisms
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Critical role of cortical vesicles in dissecting regulated exocytosis: Overview of insights into fundamental molecular mechanisms

机译:皮层囊泡在解剖调节的胞吐过程中的关键作用:基本分子机制的见解概述

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Regulated exocytosis is one of the defining features of eukaryotic cells, underlying many conserved and essential functions. Definitively assigning specific roles to proteins and lipids in this fundamental mechanism is most effectively accomplished using a model system in which distinct stages of exocytosis can be effectively separated. Here we discuss the establishment of sea urchin cortical vesicle fusion as a model to study regulated exocytosis-a system in which the docked, release-ready, and late Ca~(2+)-triggered steps of exocytosis are isolated and can be quan-titatively assessed using the rigorous coupling of functional and molecular assays. We provide an overview of the in-sights this has provided into conserved molecular mecha-nisms and how these have led to and integrate with findings from other regulated exocytotic cells.
机译:调控的胞吐作用是真核细胞的定义特征之一,是许多保守和必要功能的基础。使用这种模型系统可以有效地分离出胞吐作用的不同阶段,从而最有效地完成了在这种基本机制中明确赋予蛋白质和脂质特定作用的任务。在这里,我们讨论建立海胆皮层小泡融合模型作为研究受调控的胞吐作用的模型,在该系统中,对接的,释放就绪的Ca〜(2+)和晚期Ca〜(2+)触发的胞吐作用步骤是分离的,可以量化。使用功能和分子分析的严格耦合进行滴定评估。我们提供了对保守分子机制的见解的概述,以及它们如何导致和整合了其他受调控的胞吐细胞的发现。

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