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Mining electron density for functionally relevant protein polysterism in crystal structures

机译:挖掘电子密度以获取晶体结构中功能相关的蛋白质多态性

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This review focuses on conceptual and methodological advances in our understanding and characterization of the conformational heterogeneity of proteins. Focusing on X-ray crystallography, we describe how polysterism, the interconversion of pre-existing conformational substates, has traditionally been analyzed by comparing independent crystal structures or multiple chains within a single crystal asymmetric unit. In contrast, recent studies have focused on mining electron density maps to reveal previously 'hidden' minor conformational substates. Functional tests of the importance of minor states suggest that evolutionary selection shapes the entire conformational landscape, including uniquely configured conformational substates, the relative distribution of these substates, and the speed at which the protein can interconvert between them. An increased focus on polysterism may shape the way protein structure and function is studied in the coming years.
机译:这项审查侧重于我们对蛋白质构象异质性的理解和表征的概念和方法学进展。着眼于X射线晶体学,我们描述了传统上如何通过比较单个晶体不对称单元内的独立晶体结构或多条链来分析多位立体构象,即先前存在的构象亚状态的相互转化。相反,最近的研究集中在挖掘电子密度图上,以揭示以前“隐藏”的次要构象亚状态。对次要状态的重要性的功能测试表明,进化选择会塑造整个构象格局,包括独特配置的构象子状态,这些子状态的相对分布以及蛋白质在它们之间相互转换的速度。对多态性的日益关注可能会影响未来几年研究蛋白质结构和功能的方式。

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