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Roles of Amphipathic Helices and the Bin/Amphiphysin/Rvs (BAR) Domain of Endophilin in Membrane Curvature Generation*

机译:两亲性螺旋和内啡肽的Bin / Amphiphysin / Rvs(BAR)结构域在膜曲率产生中的作用*

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摘要

Control of membrane curvature is required in many important cellular processes, including endocytosis and vesicular trafficking. Endophilin is a bin/amphiphysin/rvs (BAR) domain protein that induces vesicle formation by promotion of membrane curvature through membrane binding as a dimer. Using site-directed spin labeling and EPR spectroscopy, we show that the overall BAR domain structure of the rat endophilin A1 dimer determined crystallographically is maintained under predominantly vesiculating conditions. Spin-labeled side chains on the concave surface of the BAR domain do not penetrate into the acyl chain interior, indicating that the BAR domain interacts only peripherally with the surface of a curved bilayer. Using a combination of EPR data and computational refinement, we determined the structure of residues 63–86, a region that is disordered in the crystal structure of rat endophilin A1. Upon membrane binding, residues 63–75 in each subunit of the endophilin dimer form a slightly tilted, amphipathic α-helix that directly interacts with the membrane. In their predominant conformation, these helices are located orthogonal to the long axis of the BAR domain. In this conformation, the amphipathic helices are positioned to act as molecular wedges that induce membrane curvature along the concave surface of the BAR domain.
机译:在许多重要的细胞过程中,包括内吞作用和囊泡运输,都需要控制膜曲率。内皮糖蛋白是一种bin / amphiphysin / rvs(BAR)域蛋白,通过作为二聚体的膜结合促进膜曲率来诱导囊泡形成。使用定点自旋标记和EPR谱,我们显示结晶确定的大鼠内啡肽A1二聚体的整体BAR结构域在主要囊泡条件下得以维持。 BAR结构域的凹表面上的自旋标记侧链不渗透到酰基链内部,表明BAR结构域仅在外围与弯曲双层的表面相互作用。使用EPR数据和计算精度的组合,我们确定了残基63-86的结构,该区域在大鼠内啡肽A1的晶体结构中是无序的。膜结合后,内啡肽二聚体每个亚基中的63-75位残基形成一个略微倾斜的两亲性α-螺旋,直接与膜相互作用。这些螺旋的主要构型与BAR域的长轴正交。在这种构型中,两亲性螺旋被定位为充当分子楔形物,该分子楔形物引起沿BAR域凹面的膜曲率。

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