Laboratory of Macromolecular Structure, Department of Molecular Biology' and Biochemistry, Charlie Dunlop School of Biological Sciences, University of California Irvine, Irvine, California.
Curr Protoc. 2024 Jul;4(7):e1105. doi: 10.1002/cpz1.1105.
Interactions between proteins and small molecules or nucleic acids play a pivotal role in numerous biological processes critical for human health and are fundamental for advancing our understanding of biological systems. Proteins are the workhorses of the cell, executing various functions ranging from catalyzing biochemical reactions to transmitting signals within the body. Small molecules, including drugs and metabolites, can modulate protein activity, thereby impacting cellular processes and disease pathways. Similarly, nucleic acids, such as DNA and RNA, regulate protein synthesis and function through intricate interactions. Understanding these interactions is crucial for drug discovery and development and can shed light on gene regulation, transcriptional control, and RNA processing, providing insights into genetic diseases and developmental disorders. Moreover, studying protein-small molecule and protein-nucleic acid interactions enhances our comprehension of fundamental biological mechanisms. A wide array of methods to study these interactions range in cost, sensitivity, materials usage, throughput, and complexity. Notably in the last decade, new techniques have been developed that enhance our understanding of these interactions. In this review, we aim to summarize the new state-of-the-art methods for detecting interactions between proteins and small molecules or nucleic acids, as well as discuss older methods that still hold value today. © 2024 Wiley Periodicals LLC.
蛋白质与小分子或核酸之间的相互作用在许多对人类健康至关重要的生物过程中起着关键作用,是深入了解生物系统的基础。蛋白质是细胞的主力军,执行着从催化生化反应到在体内传递信号等各种功能。小分子,包括药物和代谢物,可以调节蛋白质的活性,从而影响细胞过程和疾病途径。同样,核酸,如 DNA 和 RNA,通过复杂的相互作用调节蛋白质的合成和功能。理解这些相互作用对于药物发现和开发至关重要,并且可以揭示基因调控、转录控制和 RNA 处理的机制,为遗传疾病和发育障碍提供深入的见解。此外,研究蛋白质-小分子和蛋白质-核酸的相互作用可以增强我们对基本生物机制的理解。有许多方法可以研究这些相互作用,这些方法在成本、灵敏度、材料使用、通量和复杂性方面存在差异。值得注意的是,在过去的十年中,已经开发出了一些新技术,这些技术增强了我们对这些相互作用的理解。在这篇综述中,我们旨在总结用于检测蛋白质与小分子或核酸之间相互作用的最新方法,并讨论当今仍然具有价值的旧方法。