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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Order-disorder skewness in alpha-synuclein: a key mechanism to recognize membrane curvature
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Order-disorder skewness in alpha-synuclein: a key mechanism to recognize membrane curvature

机译:α-突触核蛋白的订单障碍偏振:识别膜曲率的关键机制

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摘要

Currently, membrane curvature is understood as an active mechanism to control cells spatial organization and activity. Protein processes involved in sensing and generating curvature are therefore of major interest. In this work, we have studied alpha-synuclein interactions with a model lipid bilayer, inducing curvature in a controlled manner and describing protein responses at molecular level. We show that the intrinsically disordered region of alpha-synuclein binds to the bilayer as an acknowledgment to the induced curvature, a mechanism used by the interacting protein-membrane assembly to relieve free energy. We have calculated free energies for bending the bilayer with alpha-synuclein adsorbed on the surface and we have established the crucial role of the intrinsically disordered region, suggesting that a dynamic order/disorder interplay takes place as the bilayer reorganizes to bend.
机译:目前,膜曲率被理解为控制细胞空间组织和活性的活性机制。 因此,感应和产生曲率的蛋白质方法是主要的兴趣。 在这项工作中,我们研究了与模型脂质双层的α-突触核蛋白相互作用,以受控的方式诱导曲率,并在分子水平下描述蛋白质反应。 我们表明,α-突触核蛋白的本质无序区域与诱导曲率的确认结合双层,相互作用蛋白质 - 膜组件用于缓解自由能的机制。 我们已经计算了与表面上吸附的α-突触核蛋白弯曲双层的自由能量,我们已经建立了本质无序区域的至关重要,这表明在双层重组弯曲时发生动态秩序/障碍相互作用。

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