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首页> 外文期刊>Journal of Molecular Biology >Entropic Control of an Excited Folded-Like Conformation in a Disordered Protein Ensemble
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Entropic Control of an Excited Folded-Like Conformation in a Disordered Protein Ensemble

机译:在无序的蛋白质集合中的激发折叠形构象的熵控制

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摘要

Many intrinsically disordered proteins switch between unfolded and folded-like forms in the presence of their binding partner. The possibility of a pre-equilibrium between the two macrostates is challenging to discern given the complex conformational landscape. Here, we show that CytR, a disordered DNA-binding domain, samples a folded-like excited state in its native ensemble through equilibrium multi-probe spectroscopy, kinetics and an Ising-like statistical mechanical model. The population of the excited state increases upon stabilization of the native ensemble with an osmolyte, while decreasing with increasing temperatures. A conserved proline residue, the mutation of which weakens the binding affinity to the target promoter, is found to uniquely control the population of the minor excited state. Semi-quantitative statistical mechanical modeling reveals that the conformational diffusion coefficient of disordered CytR is an order of magnitude slower than the estimates from folded domains. The osmolyte and proline mutation smoothen and roughen up the landscape, respectively, apart from modulation of populations. Our work uncovers general strategies to probe for excited structured states in disordered ensembles, and to measure and modulate the roughness of the disordered landscapes, inter-conversion rates of species and their populations.
机译:许多本质上无序的蛋白质在其结合伴侣存在下在展开和折叠的形式之间切换。考虑到复杂的构象景观,两个宏晶之间的预平衡预平衡的可能性是挑战。在这里,我们显示Cytr,一种无序的DNA结合结构域,通过平衡多探针光谱,动力学和待遇统计机械模型来在其天然集合中对折叠式激发态进行样本。激发态的群体在用渗透液体聚糖稳定时增加,同时随着温度的增加而降低。保守的脯氨酸残基,其突变削弱了对目标启动子的结合亲和力,发现唯一控制轻微激发态的群体。半定量统计机械建模揭示了无序的CYTR的构象扩散系数比折叠域的估计值慢的数量级。除了群体的调节之外,渗透渗透性和脯氨酸突变分别使景观分别粗糙。我们的工作揭示了在无序的集合中探讨了兴奋的结构状态的一般策略,并测量和调节无序景观的粗糙度,种类的转换率及其种群。

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