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Computational Analysis of Residue Interaction Networks and Coevolutionary Relationships in the Hsp70 Chaperones: A Community-Hopping Model of Allosteric Regulation and Communication

机译:Hsp70分子伴侣中残基相互作用网络和协同进化关系的计算分析:变构调控和交流的社区跳跃模型。

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摘要

Allosteric interactions in the Hsp70 proteins are linked with their regulatory mechanisms and cellular functions. Despite significant progress in structural and functional characterization of the Hsp70 proteins fundamental questions concerning modularity of the allosteric interaction networks and hierarchy of signaling pathways in the Hsp70 chaperones remained largely unexplored and poorly understood. In this work, we proposed an integrated computational strategy that combined atomistic and coarse-grained simulations with coevolutionary analysis and network modeling of the residue interactions. A novel aspect of this work is the incorporation of dynamic residue correlations and coevolutionary residue dependencies in the construction of allosteric interaction networks and signaling pathways. We found that functional sites involved in allosteric regulation of Hsp70 may be characterized by structural stability, proximity to global hinge centers and local structural environment that is enriched by highly coevolving flexible residues. These specific characteristics may be necessary for regulation of allosteric structural transitions and could distinguish regulatory sites from nonfunctional conserved residues. The observed confluence of dynamics correlations and coevolutionary residue couplings with global networking features may determine modular organization of allosteric interactions and dictate localization of key mediating sites. Community analysis of the residue interaction networks revealed that concerted rearrangements of local interacting modules at the inter-domain interface may be responsible for global structural changes and a population shift in the DnaK chaperone. The inter-domain communities in the Hsp70 structures harbor the majority of regulatory residues involved in allosteric signaling, suggesting that these sites could be integral to the network organization and coordination of structural changes. Using a network-based formalism of allostery, we introduced a community-hopping model of allosteric communication. Atomistic reconstruction of signaling pathways in the DnaK structures captured a direction-specific mechanism and molecular details of signal transmission that are fully consistent with the mutagenesis experiments. The results of our study reconciled structural and functional experiments from a network-centric perspective by showing that global properties of the residue interaction networks and coevolutionary signatures may be linked with specificity and diversity of allosteric regulation mechanisms.
机译:Hsp70蛋白中的变构相互作用与它们的调节机制和细胞功能有关。尽管在Hsp70蛋白质的结构和功能表征方面取得了重大进展,但有关Hsp70分子伴侣中的变构相互作用网络的模块性和信号传导途径的层次性的基本问题仍在很大程度上未被探索和了解。在这项工作中,我们提出了一种集成的计算策略,该方法将原子模拟和粗粒度模拟与残渣相互作用的协同进化分析和网络建模相结合。这项工作的一个新颖方面是将动态残基相关性和协同进化残基依赖性结合到变构相互作用网络和信号传导途径的构建中。我们发现参与Hsp70的变构调节的功能性位点的特征可能在于结构稳定性,与全局铰链中心的接近性和局部结构环境,这些环境通过高度共进化的柔性残基得以丰富。这些特定特征对于调节变构结构过渡可能是必需的,并且可以将调节位点与无功能的保守残基区分开。观察到的动力学相关性和共进化残基耦合与全局网络特征的融合可能确定变构相互作用的模块化组织,并决​​定关键中介位点的定位。残基相互作用网络的社区分析表明,域间接口处的局部相互作用模块的一致重排可能是导致全球结构变化和DnaK分子伴侣中种群迁移的原因。 Hsp70结构中的域间社区包含与变构信号有关的大多数调控残基,表明这些位点可能是网络组织和结构变化协调的组成部分。使用基于网络的变构形式,我们引入了变构通讯的社区跳跃模型。 DnaK结构中信号通路的原子重建捕获了信号传导的特定方向机制和分子细节,与诱变实验完全一致。我们的研究结果通过显示残基相互作用网络和协同进化特征的整体性质可能与变构调控机制的特异性和多样性有关,从而从网络中心的角度协调了结构和功能实验。

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