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Multiple Modes of Endophilin-mediated Conversion of Lipid Vesicles into Coated Tubes

机译:内毒素介导的脂质囊泡向包膜管转化的多种模式

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摘要

Endophilin A1 is a BAR (Bin/amphiphysin/Rvs) protein abundant in neural synapses that senses and induces membrane curvature, contributing to neck formation in presynaptic endocytic vesicles. To investigate its role in membrane remodeling, we used cryoelectron microscopy to characterize structural changes induced in lipid vesicles by exposure to endophilin. The vesicles convert rapidly to coated tubules whose morphology reflects the local concentration of endophilin. Their diameters and curvature resemble those of synaptic vesicles in situ. Three-dimensional reconstructions of quasicylindrical tubes revealed arrays of BAR dimers, flanked by densities that we equate with amphipathic helices whose folding and membrane insertion were attested by EPR. We also observed the compression of bulbous coated tubes into 70-Å-wide cylindrical micelles, which appear to mimic the penultimate (hemi-fission) stage of endocytosis. Our findings suggest that the adaptability of endophilin-lipid interactions underlies dynamic changes of endocytic membranes.
机译:Endophilin A1是在神经突触中丰富的BAR(Bin / amphiphysin / Rvs)蛋白,可感知并诱导膜曲率,从而有助于突触前内吞囊泡的颈部形成。为了研究其在膜重构中的作用,我们使用了低温电子显微镜来表征暴露于内啡肽的脂质囊泡中诱导的结构变化。囊泡迅速转变为包被的小管,其形态反映了内啡肽的局部浓度。它们的直径和曲率类似于原位的突触小泡。准圆柱管的三维重建显示了BAR二聚体阵列,其侧翼是密度,我们等同于两性螺旋,其折叠和膜插入均通过EPR证明。我们还观察到球状包被的管被压缩成70-Å宽的圆柱形胶束,这似乎模仿了内吞作用的倒数第二个(半裂变)阶段。我们的发现表明,内啡肽-脂质相互作用的适应性是内吞膜动态变化的基础。

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