首页> 外文期刊>Journal of chemical information and modeling >Dynamic View of Allosteric Regulation in the Hsp70 Chaperones by J-Domain Cochaperone and Post-Translational Modifications: Computational Analysis of Hsp70 Mechanisms by Exploring Conformational Landscapes and Residue Interaction Networks
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Dynamic View of Allosteric Regulation in the Hsp70 Chaperones by J-Domain Cochaperone and Post-Translational Modifications: Computational Analysis of Hsp70 Mechanisms by Exploring Conformational Landscapes and Residue Interaction Networks

机译:J-Domain Cochaperone和翻译后修改Hsp70伴侣蛋白的变构调控动态视图:通过探索构象景观和残留互动网络来计算HSP70机制的计算分析

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Structural and biochemical studies of Hsp70 chaperones have provided a molecular view of the chaperone biochemical cycle by revealing a complex interplay between allosteric conformational states that controls the feedback loop between stimulation of the adenosinetriphosphatase (ATPase) activity and the substrate release. Allosteric regulation in the Hsp70 chaperones and efficient substrate targeting are mediated by J-domain cochaperones through a dynamic interaction network controlled by the regulatory hotspots. In the current work, we have simulated conformational landscapes and residue interaction networks in the open, closed, and cochaperone-bound DnaK structures. The results of this work have shown that J-domain can selectively enhance direction-specific signal propagation from the substrate-binding domain to the catalytic center and promote the structural environment required for ATP hydrolysis. By employing different network-based approaches, we examined the role and contribution of post-translational modification sites in allosteric regulation of human Hsp70. The central finding of this analysis indicated that conserved phosphorylation sites localized preferentially in the nucleotide-binding domain regions are often aligned with the allosteric control points and serve as effector centers in Hsp70. We have found that cooperation of post-translational modifications sites is based on the governing role of phosphorylation sites in dictating regulatory switching functions, whereas the bulk of acetylation sites can be involved in sensing the long-range signals and executing allosteric changes during the ATPase cycle. The results of this study highlight the important role of phosphorylation sites in exerting control over allosteric changes in Hsp70. The network-centric framework for the analysis of conformational dynamics and chaperone landscapes can explain a range of structural and functional experiments, providing a robust dynamic model of Hsp70 regulation by cochaperones and sites of post-translational modifications.
机译:HSP70伴侣的结构和生化研究通过揭示了控制腺苷类磷酸酯酶(ATP酶)活性和基材释放的刺激之间的反馈回路之间的复杂构象状态,通过揭示复杂的相互作用,提供了伴侣生化循环的分子视图。 HSP70伴侣和有效衬底靶向的变构调节由J-域Cochaperones通过由监管热点控制的动态相互作用网络介导的。在当前的工作中,我们在开放式,封闭和科切式DNAK结构中模拟了构象景观和残留互动网络。该工作的结果表明,J-结构域可以选择性地从基材结合结构域中选择性地增强催化中心的方向的信号传播,并促进ATP水解所需的结构环境。通过采用不同的基于网络的方法,我们研究了翻译后改性位点在人HSP70的变构调控中的作用和贡献。该分析的中央发现表明,优先在核苷酸结合域区中定位的保守磷酸化位点通常与变构对照点对齐,并用作Hsp70中的效应中心。我们已经发现,翻译后修改的合作基于磷酸化位点在指示调节器切换功能方面的控制作用,而大量乙酰化位点可以参与感测远程信号并在ATPase周期中执行变构变化。本研究的结果突出了磷酸化位点在施加对Hsp70中的变构变化的控制中的重要作用。用于分析构象动态和伴侣景观的网络为中心的框架可以解释一系列结构和功能实验,提供了通过双层电池和翻译后修改的HSP70调节的强大动态模型。

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