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Local protein dynamics during microvesicle exocytosis in neuroendocrine cells

机译:神经内分泌细胞微肠瘤卵泡期间的局部蛋白质动态

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Calcium-triggered exocytosis is key to many physiological processes, including neurotransmitter and hormone release by neurons and endocrine cells. Dozens of proteins regulate exocytosis, yet the temporal and spatial dynamics of these factors during vesicle fusion remain unclear. Here we use total internal reflection fluorescence microscopy to visualize local protein dynamics at single sites of exocytosis of small synaptic-like microvesicles in live cultured neuroendocrine PC12 cells. We employ two-color imaging to simultaneously observe membrane fusion (using vesicular acetylcholine ACh transporter tagged to pHluorin) and the dynamics of associated proteins at the moments surrounding exocytosis. Our experiments show that many proteins, including the SNAREs syntaxin1 and VAMP2, the SNARE modulator tomosyn, and Rab proteins, are preclustered at fusion sites and rapidly lost at fusion. The ATPase N-ethylmaleimide-sensitive factor is locally recruited at fusion. Interestingly, the endocytic Bin-Amphiphysin-Rvs domain-containing proteins amphiphysin1, syndapin2, and endophilins are dynamically recruited to fusion sites and slow the loss of vesicle membrane-bound cargo from fusion sites. A similar effect on vesicle membrane protein dynamics was seen with the overexpression of the GTPases dynamin1 and dynamin2. These results suggest that proteins involved in classical clathrin-mediated endocytosis can regulate exocytosis of synaptic-like microvesicles. Our findings provide insights into the dynamics, assembly, and mechanistic roles of many key factors of exocytosis and endocytosis at single sites of microvesicle fusion in live cells.
机译:钙触发的外尿精是许多生理过程的关键,包括神经元和内分泌细胞的神经递质和激素释放。数十种蛋白质调节外毒性,然而,囊泡融合期间这些因素的时间和空间动态仍然尚不清楚。在这里,我们使用总内部反射荧光显微镜,以在生物培养的神经内分泌PC12细胞中的小突触微泡的小腹腔异细胞分子的单个位点上可视化局部蛋白质动态。我们采用双色成像以同时观察膜融合(使用覆膜乙酰胆碱ACH转运蛋白,标记为嘌呤蛋白的蛋白质的动态,周围胞尿病的时刻。我们的实验表明,许多蛋白质,包括捕获的Syntaxin1和Vamp2,Snare调节剂Tomosyn和Rab蛋白,在融合位点进行印发,并在融合时迅速丧失。 ATP酶N-乙基马来酰亚胺敏感因子在融合时局部募集。有趣的是,将含内吞的肠道氨磷酰氨酸rVS域蛋白质蛋白蛋白1,Syndapin2和Endophilins动态地募集到融合位点并减慢来自融合位点的囊泡膜结合货物的损失。用GTP酶发作和发动机的过表达观察对囊泡膜蛋白动力学的类似效果。这些结果表明,涉及经典克拉辛介导的内吞作用的蛋白质可以调节突触状微泡的外尿量。我们的调查结果提供了对动态,装配和机械作用的见解,其在活细胞中单粒细胞融合的单个位点的单胞增多率和内吞作用的许多关键因素。

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