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Unified understanding of folding and binding mechanisms of globular and intrinsically disordered proteins

机译:对球状和固有无序蛋白质的折叠和结合机制的统一理解

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摘要

Extensive experimental and theoretical studies have advanced our understanding of the mechanisms of folding and binding of globular proteins, and coupled folding and binding of intrinsically disordered proteins (IDPs). The forces responsible for conformational changes and binding are common in both proteins; however, these mechanisms have been separately discussed. Here, we attempt to integrate the mechanisms of coupled folding and binding of IDPs, folding of small and multi-subdomain proteins, folding of multimeric proteins, and ligand binding of globular proteins in terms of conformational selection and induced-fit mechanisms as well as the nucleation-condensation mechanism that is intermediate between them. Accumulating evidence has shown that both the rate of conformational change and apparent rate of binding between interacting elements can determine reaction mechanisms. Coupled folding and binding of IDPs occurs mainly by induced-fit because of the slow folding in the free form, while ligand binding of globular proteins occurs mainly by conformational selection because of rapid conformational change. Protein folding can be regarded as the binding of intramolecular segments accompanied by secondary structure formation. Multi-subdomain proteins fold mainly by the induced-fit (hydrophobic collapse) mechanism, as the connection of interacting segments enhances the binding (compaction) rate. Fewer hydrophobic residues in small proteins reduce the intramolecular binding rate, resulting in the nucleation-condensation mechanism. Thus, the folding and binding of globular proteins and IDPs obey the same general principle, suggesting that the coarse-grained, statistical mechanical model of protein folding is promising for a unified theoretical description of all mechanisms.
机译:广泛的实验和理论研究加深了我们对球状蛋白折叠和结合机制以及固有无序蛋白(IDP)偶联折叠和结合机制的理解。负责构象变化和结合的力在两种蛋白质中是共同的;然而,这些机制已经单独讨论过。在这里,我们试图整合IDP的偶联折叠和结合机制,小和多亚域蛋白的折叠,多聚体蛋白的折叠,球状蛋白的配体结合机制,以及介于两者之间的成核-缩合机制。越来越多的证据表明,相互作用元素之间的构象变化速率和表观结合速率都可以决定反应机理。由于自由形式的缓慢折叠,IDP的偶联折叠和结合主要通过诱导拟合发生,而球状蛋白的配体结合主要通过构象选择发生,因为构象变化很快。蛋白质折叠可以看作是分子内片段的结合,伴随着二级结构的形成。多亚结构域蛋白主要通过诱导拟合(疏水塌陷)机制折叠,因为相互作用片段的连接增强了结合(压缩)速率。小蛋白中疏水残基的减少降低了分子内结合速率,从而产生了成核-缩合机制。因此,球状蛋白质和IDP的折叠和结合遵循相同的一般原则,这表明蛋白质折叠的粗粒度统计力学模型对于所有机制的统一理论描述是有希望的。

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