Halder Anushka, Anto Arinnia, Subramanyan Varsha, Bhattacharyya Moitrayee, Vishveshwara Smitha, Vishveshwara Saraswathi
Department of Pharmacology, Yale University, New Haven, CT, United States.
Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.
Front Mol Biosci. 2020 Dec 18;7:596945. doi: 10.3389/fmolb.2020.596945. eCollection 2020.
Network theory-based approaches provide valuable insights into the variations in global structural connectivity between different dynamical states of proteins. Our objective is to review network-based analyses to elucidate such variations, especially in the context of subtle conformational changes. We present technical details of the construction and analyses of protein structure networks, encompassing both the non-covalent connectivity and dynamics. We examine the selection of optimal criteria for connectivity based on the physical concept of percolation. We highlight the advantages of using side-chain-based network metrics in contrast to backbone measurements. As an illustrative example, we apply the described network approach to investigate the global conformational changes between the closed and partially open states of the SARS-CoV-2 spike protein. These conformational changes in the spike protein is crucial for coronavirus entry and fusion into human cells. Our analysis reveals global structural reorientations between the two states of the spike protein despite small changes between the two states at the backbone level. We also observe some differences at strategic locations in the structures, correlating with their functions, asserting the advantages of the side-chain network analysis. Finally, we present a view of allostery as a subtle synergistic-global change between the ligand and the receptor, the incorporation of which would enhance drug design strategies.
基于网络理论的方法为深入了解蛋白质不同动态状态之间的全局结构连通性变化提供了有价值的见解。我们的目标是回顾基于网络的分析,以阐明此类变化,特别是在细微构象变化的背景下。我们介绍了蛋白质结构网络构建和分析的技术细节,包括非共价连通性和动力学。我们基于渗流的物理概念研究连通性最佳标准的选择。我们强调与主链测量相比,使用基于侧链的网络指标的优势。作为一个说明性示例,我们应用所描述的网络方法来研究严重急性呼吸综合征冠状病毒2(SARS-CoV-2)刺突蛋白的封闭状态和部分开放状态之间的全局构象变化。刺突蛋白中的这些构象变化对于冠状病毒进入并融合到人类细胞中至关重要。我们的分析揭示了刺突蛋白两种状态之间的全局结构重新定向,尽管在主链水平上两种状态之间的变化很小。我们还在结构中的关键位置观察到一些差异,这些差异与其功能相关,证实了侧链网络分析的优势。最后,我们提出了一种变构观点,即变构是配体和受体之间细微的协同全局变化,将其纳入将增强药物设计策略。