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一个紊乱的环通过改变天然构象来介导有序蛋白质的异质展开。

A Disordered Loop Mediates Heterogeneous Unfolding of an Ordered Protein by Altering the Native Ensemble.

机构信息

Department of Biotechnology, Bhupat & Jyoti Mehta School of Biosciences, Indian Institute of Technology Madras, Chennai 600036, India.

出版信息

J Phys Chem Lett. 2020 Aug 20;11(16):6749-6756. doi: 10.1021/acs.jpclett.0c01848. Epub 2020 Aug 6.

Abstract

The high flexibility of long disordered or partially structured loops in folded proteins allows for entropic stabilization of native ensembles. Destabilization of such loops could alter the native ensemble or promote alternate conformations within the native ensemble if the ordered regions themselves are held together weakly. This is particularly true of downhill folding systems that exhibit weak unfolding cooperativity. Here, we combine experimental and computational methods to probe the response of the native ensemble of a helical, downhill folding domain PDD, which harbors an 11-residue partially structured loop, to perturbations. Statistical mechanical modeling points to continuous structural changes on both temperature and mutational perturbations driven by entropic stabilization of partially structured conformations within the native ensemble. Long time-scale simulations of the wild-type protein and two mutants showcase a remarkable conformational switching behavior wherein the parallel helices in the wild-type protein sample an antiparallel orientation in the mutants, with the C-terminal helix and the loop connecting the helices displaying high flexibility, disorder, and non-native interactions. We validate these computational predictions via the anomalous fluorescence of a native tyrosine located at the interface of the helices. Our observations highlight the role of long loops in determining the unfolding mechanisms, sensitivity of the native ensembles to mutational perturbations and provide experimentally testable predictions that can be explored in even two-state folding systems.

摘要

折叠蛋白质中长的无序或部分结构环的高柔韧性允许对天然整体进行熵稳定化。如果有序区域本身结合较弱,则这些环的去稳定化可能会改变天然整体或促进天然整体内的替代构象。对于表现出弱解折叠协同性的下坡折叠系统尤其如此。在这里,我们结合实验和计算方法来探测具有 11 个残基部分结构环的螺旋下坡折叠结构域 PDD 的天然整体对扰动的响应。统计力学模型表明,在天然整体中部分结构构象的熵稳定化驱动下,温度和突变扰动都会导致连续的结构变化。对野生型蛋白和两个突变体的长时间尺度模拟展示了一种显著的构象切换行为,其中野生型蛋白中的平行螺旋在突变体中呈现出反平行取向,C 末端螺旋和连接螺旋的环显示出高的柔韧性、无序和非天然相互作用。我们通过位于螺旋界面处的天然酪氨酸的异常荧光来验证这些计算预测。我们的观察结果强调了长环在确定解折叠机制、天然整体对突变扰动的敏感性方面的作用,并提供了可在甚至是两态折叠系统中探索的实验可测试的预测。

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