Biased Agonism or “Biaism” for Dummies: A Commentary

Receptors Pub Date : 2024-01-25 DOI:10.3390/receptors3010002
Jean A. Boutin, Jérôme Leprince
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Abstract

That signaling bias is a nth level of complexity in the understanding of G protein-coupled receptor (GPCR) activation is a first fact. That its exhaustive description, including the mode d’emploi of its quantitative measurement, remains a challenge is a second fact. That the use of this concept is promising for the design of drug candidates is a third fact. That the translation of signaling biases observed into in vivo specific effects is well documented is a fourth fact. However, the road to apply those aspects of receptology to a systematic description of a ligand and, a fortiori, of a drug candidate, still necessitates a huge body of studies. In the present commentary, the merits of the molecular description of receptor bias signaling are highlighted and the ligand induced-fit impact on GPCR structure, as well as on the functional repertoire of GPCRs, is discussed. An emphasis is given to the practical aspects during drug design, and, thus, the practical limitations of the current approaches, particularly in the context of as soon as the data are transferred to more integrated/living systems, might be a major limitation.
有偏见的辩论或 "傻瓜式辩论":评论
信号偏差是了解 G 蛋白偶联受体(GPCR)活化的第 n 个复杂层次,这是第一个事实。第二个事实是,对信号偏差的详尽描述,包括其定量测量方法,仍然是一个挑战。第三个事实是,利用这一概念设计候选药物大有可为。第四个事实是,将所观察到的信号传导偏差转化为体内特异效应已得到充分证实。然而,要将受体学的这些方面应用于配体的系统描述,更确切地说,应用于候选药物的系统描述,仍然需要大量的研究。本评论强调了分子描述受体偏置信号的优点,并讨论了配体诱导拟合对 GPCR 结构以及 GPCR 功能谱系的影响。重点强调了药物设计过程中的实际问题,因此,当前方法的实际局限性,尤其是在将数据传输到更综合/活体系统的情况下,可能是一个主要的限制因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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