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Imaging the recruitment and loss of proteins and lipids at single sites of calcium-triggered exocytosis

机译:在钙触发的胞吐作用的单个位点成像蛋白质和脂质的募集和丢失

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摘要

How and when the dozens of molecules that control exocytosis assemble in living cells to regulate the fusion of a vesicle with the plasma membrane is unknown. Here we image with two-color total internal reflection fluorescence microscopy the local changes of 27 proteins at single dense-core vesicles undergoing calcium-triggered fusion. We identify two broad dynamic behaviors of exocytic molecules. First, proteins enriched at exocytic sites are associated with DCVs long before exocytosis, and near the time of membrane fusion, they diffuse away. These proteins include Rab3 and Rab27, rabphilin3a, munc18a, tomosyn, and CAPS. Second, we observe a group of classical endocytic proteins and lipids, including dynamins, amphiphysin, syndapin, endophilin, and PIP2, which are rapidly and transiently recruited to the exocytic site near the time of membrane fusion. Dynamin mutants unable to bind amphiphysin were not recruited, indicating that amphiphysin is involved in localizing dynamin to the fusion site. Expression of mutant dynamins and knockdown of endogenous dynamin altered the rate of cargo release from single vesicles. Our data reveal the dynamics of many key proteins involved in exocytosis and identify a rapidly recruited dynamin/PIP2/BAR assembly that regulates the exocytic fusion pore of dense-core vesicles in cultured endocrine beta cells.
机译:尚不清楚数十种控制胞吐作用的分子如何以及何时在活细胞中组装以调节囊泡与质膜的融合。在这里我们用两色全内反射荧光显微镜成像在经历钙触发的融合的单个致密囊泡中27种蛋白质的局部变化。我们确定了胞外分子的两种广泛的动力学行为。首先,在胞吐位点富集的蛋白质早在胞吐作用之前就与DCV相关联,并且在膜融合时,它们就会扩散出去。这些蛋白质包括Rab3和Rab27,rabphilin3a,munc18a,tomosyn和CAPS。其次,我们观察到一组经典的内吞蛋白和脂质,包括动力蛋白,两亲,两性蛋白,syndapin,内吞蛋白和PIP2,它们在膜融合时迅速而短暂地被募集到胞外位点。无法募集无法结合两性药物的动力蛋白突变体,表明两性药物与动力蛋白在融合位点的定位有关。突变体动力蛋白的表达和内源性动力蛋白的敲除改变了单囊泡中货物释放的速率。我们的数据揭示了参与胞吐作用的许多关键蛋白的动力学特性,并确定了一种快速募集的动力蛋白/ PIP2 / BAR装配体,该装配体调节培养的内分泌β细胞中致密囊泡的胞外融合孔。

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