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Allosteric modulation of heterodimeric G-protein-coupled receptors.

机译:异二聚体G蛋白偶联受体的变构调节。

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摘要

G-protein-coupled receptors (GPCRs) are, and will probably remain, the most tractable class of targets for the development of small-molecule therapeutic medicines. Currently, all approved GPCR-directed medicines are agonists or antagonists at orthosteric binding sites - except for the calcimimetic cinacalcet, which is a positive allosteric modulator of Ca(2+)-sensing receptors, and maraviroc, an allosteric inhibitor of CC-chemokine receptor (CCR) 5. It is now widely accepted that GPCRs exist and might function as dimers, and there is growing evidence for the physiological presence and relevance of GPCR heterodimers. Molecules that can regulate a GPCR within a heterodimer, through allosteric effects between the two protomers of the dimer or between a protomer or protomers and the associated G protein, offer the potential to function in a highly selective and tissue-specific way. Despite the conceptual attraction of such allosteric regulators of GPCR heterodimers as drugs, they cannot be identified by screening approaches that routinely use a 'one GPCR target at a time' strategy. In our opinion, this will require the development of new approaches for screening and a return to the use of physiologically relevant cell systems at an early stage in compound identification.
机译:G蛋白偶联受体(GPCR)是并且很可能仍然是小分子治疗药物开发中最易处理的目标类别。目前,所有批准的GPCR定向药物在正构结合位点都是激动剂或拮抗剂-除拟钙剂西那卡塞特(即Ca(2+)敏感受体的正变构调节剂)和maraviroc(CC趋化因子受体的变构抑制剂)外(CCR)5.现在,人们普遍认为GPCR存在并且可能起二聚体的作用,并且越来越多的证据表明GPCR异二聚体的生理存在和相关性。通过二聚体的两个前体之间或一个或多个前体与相关的G蛋白之间的变构作用,可以调节异二聚体中的GPCR的分子具有以高度选择性和组织特异性方式起作用的潜力。尽管这类GPCR异二聚体的变构调节剂在药物上具有吸引力,但无法通过筛选常规使用“一次一个GPCR靶标”策略的方法来鉴定它们。我们认为,这将需要开发新的筛选方法,并在化合物鉴定的早期阶段重新使用生理相关的细胞系统。

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