CAS Key Labratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Angew Chem Int Ed Engl. 2023 Aug 28;62(35):e202301345. doi: 10.1002/anie.202301345. Epub 2023 Jul 20.
Protein dynamics play a crucial role in their diverse functions. The intracellular environment significantly influences protein dynamics, particularly for intrinsically disordered proteins (IDPs). To comprehensively capture structural information from various proteins within cells and characterize protein dynamics, chemical cross-linking mass spectrometry was employed. In this study, we introduce a hierarchical decoding strategy that enables the investigation of protein dynamics in vivo. Computational analysis based on distance restraints derived from cross-links is used to infer protein dynamics in cells. To facilitate this analysis, we leverage the prior structure obtained from AlphaFold2. By employing this strategy, we can characterize the full-length structure of multi-domain proteins taking into account their distinct dynamic features. Furthermore, by combining restraint sampling with an unbiased sampling and evaluation approach, we can provide a comprehensive description of the intrinsic motion of IDPs. Consequently, the hierarchical strategy we propose holds significant potential in advancing our understanding of the molecular mechanisms that undelie protein functions in cells.
蛋白质动力学在其多样化功能中起着至关重要的作用。细胞内环境对蛋白质动力学有显著影响,特别是对无序蛋白质(IDPs)而言。为了全面捕捉细胞内各种蛋白质的结构信息并描述蛋白质动力学,我们采用了化学交联质谱技术。在本研究中,我们引入了一种分层解码策略,以研究体内蛋白质动力学。基于交联衍生的距离约束的计算分析被用于推断细胞内的蛋白质动力学。为了便于分析,我们利用来自 AlphaFold2 的先验结构。通过采用这种策略,我们可以描述多结构域蛋白质的全长结构,同时考虑到它们独特的动态特征。此外,通过将约束采样与无偏采样和评估方法相结合,我们可以提供 IDPs 固有运动的全面描述。因此,我们提出的分层策略在深入了解细胞内蛋白质功能的分子机制方面具有重要的应用潜力。