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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Rotational and Translational Dynamics of Ras Proteins upon Binding to Model Membrane Systems
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Rotational and Translational Dynamics of Ras Proteins upon Binding to Model Membrane Systems

机译:Ras蛋白与模型膜系统结合后的旋转和平移动力学。

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摘要

Plasma-membrane-associated Ras proteins typically control signal transduction processes. As nanoclustering and membrane viscosity sensing provide plausible signaling mechanisms, determination of the rotational and translational dynamics of membrane-bound Ras isoforms can help to link their dynamic mobility to their function. Herein, by using time-resolved fluorescence anisotropy and correlation spectroscopic measurements, we obtain the rotational-correlation time and the translational diffusion coefficient of lipidated boron-dipyrromethene-labeled Ras, both in bulk Ras and upon membrane binding. The results show that the second lipidation motif of N-Ras triggers dimer formation in bulk solution, whereas K-Ras4B is monomeric. Upon membrane binding, an essentially free rotation of the G-domain is observed, along with a high lateral mobility; the latter is essentially limited by the viscosity of the membrane and by lipid-mediated electrostatic interactions. This high diffusional mobility warrants rapid recognition–binding sequences in the membrane-bound state, there-by facilitating efficient interactions between the Ras proteins and scaffolding or effector proteins. The lipid-like rapid lateral diffusion observed here complies with in vivo data.
机译:血浆膜相关的Ras蛋白通常控制信号转导过程。由于纳米簇和膜粘度传感提供了合理的信号传导机制,因此确定膜结合的Ras亚型的旋转和平移动力学可以帮助将其动态迁移率与其功能联系起来。在本文中,通过使用时间分辨荧光各向异性和相关光谱测量,我们获得了脂化硼-双吡咯二烯标记的Ras在体积Ras和膜结合中的旋转相关时间和平移扩散系数。结果表明,N-Ras的第二个脂化基序在本体溶液中触发了二聚体的形成,而K-Ras4B是单体的。在膜结合后,观察到G结构域基本上自由旋转,同时具有高的横向迁移率。后者基本上受膜的粘度和脂质介导的静电相互作用的限制。这种高扩散迁移率保证了膜结合状态下的快速识别-结合序列,从而促进了Ras蛋白与支架蛋白或效应蛋白之间的有效相互作用。此处观察到的类脂质快速横向扩散符合体内数据。

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