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Spectroscopic studies of protein folding: Linear and nonlinear methods

机译:蛋白质折叠的光谱研究:线性和非线性方法

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摘要

Although protein folding is a simple outcome of the underlying thermodynamics, arriving at a quantitative and predictive understanding of how proteins fold nevertheless poses huge challenges. Therefore, both advanced experimental and computational methods are continuously being developed and refined to probe and reveal the atomistic details of protein folding dynamics and mechanisms. Herein, we provide a concise review of recent developments in spectroscopic studies of protein folding, with a focus on new triggering and probing methods. In particular, we describe several laser-based techniques for triggering protein folding/unfolding on the picosecond and/or nanosecond timescales and various linear and nonlinear spectroscopic techniques for interrogating protein conformations, conformational transitions, and dynamics.
机译:尽管蛋白质折叠是基本热力学的简单结果,但是对蛋白质如何折叠的定量和预测性理解仍然构成了巨大的挑战。因此,高级实验和计算方法都在不断发展和完善,以探测和揭示蛋白质折叠动力学和机理的原子细节。本文中,我们简要概述了蛋白质折叠光谱研究的最新进展,重点是新的触发和探测方法。特别是,我们描述了几种在皮秒和/或纳秒级时标上触发蛋白质折叠/展开的基于激光的技术,以及用于询问蛋白质构象,构象转变和动力学的各种线性和非线性光谱技术。

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