Dang Dung Thanh
Faculty of Biotechnology, Ho Chi Minh City Open University, Ho Chi Minh City, Vietnam.
Front Chem. 2022 Feb 8;10:829312. doi: 10.3389/fchem.2022.829312. eCollection 2022.
Protein dimerization plays a key role in many biological processes. Most cellular events such as enzyme activation, transcriptional cofactor recruitment, signal transduction, and even pathogenic pathways are significantly regulated via protein-protein interactions. Understanding and controlling the molecular mechanisms that regulate protein dimerization is crucial for biomedical applications. The limitations of engineered protein dimerization provide an opportunity for molecular chemistry to induce dimerization of protein in biological events. In this review, molecular control over dimerization of protein and activation in this respect are discussed. The well known molecule glue-based approaches to induced protein dimerization provide powerful tools to modulate the functionality of dimerized proteins and are shortly highlighted. Subsequently metal ion, nucleic acid and host-guest chemistry are brought forward as novel approaches for orthogonal control over dimerization of protein. The specific focus of the review will be on host-guest systems as novel, robust and versatile supramolecular approaches to modulate the dimerization of proteins, using functional proteins as model systems.
蛋白质二聚化在许多生物过程中起着关键作用。大多数细胞事件,如酶激活、转录辅因子募集、信号转导,甚至致病途径,都通过蛋白质-蛋白质相互作用受到显著调控。理解和控制调节蛋白质二聚化的分子机制对于生物医学应用至关重要。工程化蛋白质二聚化的局限性为分子化学在生物事件中诱导蛋白质二聚化提供了机会。在这篇综述中,讨论了在这方面对蛋白质二聚化和激活的分子控制。基于分子胶水的诱导蛋白质二聚化的方法提供了强大的工具来调节二聚化蛋白质的功能,并将简要介绍。随后,金属离子、核酸和主客体化学作为对蛋白质二聚化进行正交控制的新方法被提出。本综述的具体重点将是主客体系统,它是一种新颖、强大且通用的超分子方法,以功能蛋白质为模型系统来调节蛋白质的二聚化。