Pradhan Mohan R, Pal Arumay, Hu Zhongqiao, Kannan Srinivasaraghavan, Chee Keong Kwoh, Lane David P, Verma Chandra S
Biomolecular Modeling and Design Division, Bioinformatics Institute, A*STAR (Agency for Science, Technology and Research), 138671, Singapore.
School of Computer Engineering, Nanyang Technological University, 639798, Singapore.
Proteins. 2016 Feb;84(2):254-66. doi: 10.1002/prot.24976. Epub 2016 Jan 7.
Aggregation is an irreversible form of protein complexation and often toxic to cells. The process entails partial or major unfolding that is largely driven by hydration. We model the role of hydration in aggregation using "Dehydrons." "Dehydrons" are unsatisfied backbone hydrogen bonds in proteins that seek shielding from water molecules by associating with ligands or proteins. We find that the residues at aggregation interfaces have hydrated backbones, and in contrast to other forms of protein-protein interactions, are under less evolutionary pressure to be conserved. Combining evolutionary conservation of residues and extent of backbone hydration allows us to distinguish regions on proteins associated with aggregation (non-conserved dehydron-residues) from other interaction interfaces (conserved dehydron-residues). This novel feature can complement the existing strategies used to investigate protein aggregation/complexation.
聚集是蛋白质络合的一种不可逆形式,通常对细胞有毒。该过程需要部分或大量的去折叠,这在很大程度上是由水合作用驱动的。我们使用“脱水子”来模拟水合作用在聚集中的作用。“脱水子”是蛋白质中未满足的主链氢键,它们通过与配体或蛋白质结合来寻求水分子的屏蔽。我们发现聚集界面处的残基具有水合的主链,并且与其他形式的蛋白质 - 蛋白质相互作用相比,在进化上保守的压力较小。结合残基的进化保守性和主链水合程度,使我们能够区分蛋白质上与聚集相关的区域(非保守脱水子残基)和其他相互作用界面(保守脱水子残基)。这一新颖特征可以补充用于研究蛋白质聚集/络合的现有策略。