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A quantitative imaging-based screen reveals the exocyst as a network hub connecting endocytosis and exocytosis

机译:基于定量成像的屏幕显示,囊泡是连接内吞作用和胞吐作用的网络枢纽

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The coupling of endocytosis and exocytosis underlies fundamental biological processes ranging from fertilization to neuronal activity and cellular polarity. However, the mechanisms governing the spatial organization of endocytosis and exocytosis require clarification. Using a quantitative imaging-based screen in budding yeast, we identified 89 mutants displaying defects in the localization of either one or both pathways. High-resolution single-vesicle tracking revealed that the endocytic and exocytic mutants she4 ? and bud6 ? alter post-Golgi vesicle dynamics in opposite ways. The endocytic and exocytic pathways display strong interdependence during polarity establishment while being more independent during polarity maintenance. Systems analysis identified the exocyst complex as a key network hub, rich in genetic interactions with endocytic and exocytic components. Exocyst mutants displayed altered endocytic and post-Golgi vesicle dynamics and interspersed endocytic and exocytic domains compared with control cells. These data are consistent with an important role for the exocyst in coordinating endocytosis and exocytosis.
机译:内吞作用和胞吐作用的结合是从受精到神经元活性和细胞极性的基本生物学过程的基础。但是,控制内吞作用和胞吐作用的空间组织的机制需要澄清。在萌芽期酵母中使用基于定量成像的筛选,我们确定了89个突变体,在一个或两个途径的定位中均显示出缺陷。高分辨率的单囊泡跟踪显示,胞内和胞外突变体she4?和bud6吗?以相反的方式改变后高尔基体的囊泡动力学。内吞途径和胞外途径在极性建立期间显示出强烈的相互依赖性,而在极性维持期间则更加独立。系统分析确定囊外复合体为关键网络枢纽,与胞吞和胞外成分之间具有丰富的遗传相互作用。与对照细胞相比,囊外突变体显示出改变的内吞和高尔基后囊泡动力学,以及散布的内吞和胞外域。这些数据与胞囊在协调内吞作用和胞吐作用中的重要作用相一致。

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