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The chaperone toolbox at the single‐molecule level: From clamping to confining

机译:单分子水平的伴侣箱工具箱:从夹紧到限制

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Abstract Protein folding is well known to be supervised by a dedicated class of proteins called chaperones. However, the core mode of action of these molecular machines has remained elusive due to several reasons including the promiscuous nature of the interactions between chaperones and their many clients, as well as the dynamics and heterogeneity of chaperone conformations and the folding process itself. While troublesome for traditional bulk techniques, these properties make an excellent case for the use of single‐molecule approaches. In this review, we will discuss how force spectroscopy, fluorescence microscopy, FCS, and FRET methods are starting to zoom in on this intriguing and diverse molecular toolbox that is of direct importance for protein quality control in cells, as well as numerous degenerative conditions that depend on it.
机译:众所周知,摘要蛋白质折叠是由叫做伴侣的专用蛋白质进行监督。 然而,由于包括伴侣和他们的许多客户之间的相互作用的若干原因,这些分子机器的核心作用方式仍然难以忽视,以及伴侣构象的相互作用的混杂性,以及伴侣构象的动态和异质性和折叠过程本身。 虽然对于传统散装技术的麻烦,但这些属性使得使用单分子方法的优异案例。 在本综述中,我们将讨论如何力量光谱,荧光显微镜,FC和FRET方法开始放大这种有趣和多样化的分子工具箱,这些工具箱在细胞中具有直接重视蛋白质质量控制,以及许多退行性条件 取决于它。

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