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Control of membrane gaps by synaptotagmin-Ca2+ measured with a novel membrane distance ruler

机译:新型膜距标尺测量突触结合蛋白-Ca 2 + 控制膜间隙

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摘要

Fast synchronous neurotransmitter release is triggered by calcium that activates synaptotagmin-1 ( syt-1 ), resulting in fusion of synaptic vesicles with the presynaptic membrane. Syt-1 possesses two Ca2+-binding C2 domains that tether membranes via interactions with anionic phospholipids. It is capable of crosslinking membranes and has recently been speculated to trigger fusion by decreasing the gap between them. As quantitative information on membrane gaps is key to understanding general cellular mechanisms, including the role of syt-1 , we developed a fluorescence-lifetime based inter-membrane distance ruler using membrane-anchored DNAs of various lengths as calibration standards. Wild-type and mutant data provide evidence that full-length syt-1 indeed regulates membrane gaps: without Ca2+, syt-1 maintains membranes at distances of ~7–8?nm. Activation with 100?μM Ca2+ decreases the distance to ~5?nm by binding the C2 domains to opposing membranes, respectively. These values reveal that activated syt-1 adjusts membrane distances to the level that promotes SNARE complex assembly.
机译:快速同步的神经递质释放由激活突触突触素1(syt-1)的钙触发,导致突触囊泡与突触前膜融合。 Syt-1具有两个与Ca 2 + 结合的C2域,通过与阴离子磷脂的相互作用来束缚膜。它能够交联膜,并且最近被认为可以通过减小膜之间的间隙来触发融合。由于关于膜间隙的定量信息是理解一般细胞机制(包括syt-1的作用)的关键,因此,我们使用各种长度的膜锚定DNA作为校准标准,开发了一种基于荧光寿命的膜间距离标尺。野生型和突变型数据提供了证据,全长syt-1确实调节膜间隙:没有Ca 2 + ,syt-1可以将膜保持在约7-8?nm的距离。用100?μMCa 2 + 激活,通过将C2域分别结合到相对的膜上,将距离减小到〜5?nm。这些值表明激活的syt-1将膜距离调节到促进SNARE复杂装配的水平。

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