Institute of Chemistry, Slovak Academy of Sciences, Dúbravska cesta 9, 845 38 Bratislava, Slovakia.
Medical Vision o. z., Záhradnícka 4837/55, 821 08 Bratislava, Slovakia.
Cells. 2023 Jan 14;12(2):324. doi: 10.3390/cells12020324.
Integrins are heterodimeric glycoproteins crucial to the physiology and pathology of many biological functions. As adhesion molecules, they mediate immune cell trafficking, migration, and immunological synapse formation during inflammation and cancer. The recognition of the vital roles of integrins in various diseases revealed their therapeutic potential. Despite the great effort in the last thirty years, up to now, only seven integrin-based drugs have entered the market. Recent progress in deciphering integrin functions, signaling, and interactions with ligands, along with advancement in rational drug design strategies, provide an opportunity to exploit their therapeutic potential and discover novel agents. This review will discuss the molecular modeling methods used in determining integrins' dynamic properties and in providing information toward understanding their properties and function at the atomic level. Then, we will survey the relevant contributions and the current understanding of integrin structure, activation, the binding of essential ligands, and the role of molecular modeling methods in the rational design of antagonists. We will emphasize the role played by molecular modeling methods in progress in these areas and the designing of integrin antagonists.
整合素是异二聚体糖蛋白,对许多生物学功能的生理学和病理学都至关重要。作为黏附分子,它们在炎症和癌症期间调节免疫细胞的迁移、趋化和免疫突触的形成。整合素在各种疾病中的重要作用的认识揭示了它们的治疗潜力。尽管在过去的三十年中付出了巨大的努力,但到目前为止,只有七种基于整合素的药物进入了市场。最近在解析整合素功能、信号转导以及与配体相互作用方面的进展,加上合理药物设计策略的进步,为利用其治疗潜力和发现新型药物提供了机会。本文将讨论用于确定整合素动态特性的分子建模方法,并提供有关理解其在原子水平上的特性和功能的信息。然后,我们将调查整合素结构、激活、关键配体结合以及分子建模方法在合理设计拮抗剂中的相关贡献和当前理解。我们将强调分子建模方法在这些领域的进展和整合素拮抗剂设计中的作用。