Lee Maximillian Taro William, Mahy William, Rackham Mark David
MSD The Francis Crick Institute 1 Midland Road London NW1 1AT UK
RSC Med Chem. 2021 Jun 4;12(8):1281-1311. doi: 10.1039/d1md00113b. eCollection 2021 Aug 18.
Mitochondria are subcellular organelles that perform a variety of critical biological functions, including ATP production and acting as hubs of immune and apoptotic signalling. Mitochondrial dysfunction has been extensively linked to the pathology of multiple neurodegenerative disorders, resulting in significant investment from the drug discovery community. Despite extensive efforts, there remains no disease modifying therapies for neurodegenerative disorders. This manuscript aims to review the compounds historically used to modulate the mitochondrial network through the lens of modern medicinal chemistry, and to offer a perspective on the evidence that relevant exposure was achieved in a representative model and that exposure was likely to result in target binding and engagement of pharmacology. We hope this manuscript will aid the community in identifying those targets and mechanisms which have been convincingly (in)validated with high quality chemical matter, and those for which an opportunity exists to explore in greater depth.
线粒体是执行多种关键生物学功能的亚细胞细胞器,包括ATP生成以及作为免疫和凋亡信号的枢纽。线粒体功能障碍已被广泛认为与多种神经退行性疾病的病理过程相关,这引发了药物研发界的大量投入。尽管付出了巨大努力,但目前仍没有针对神经退行性疾病的疾病修饰疗法。本手稿旨在从现代药物化学的角度回顾历史上用于调节线粒体网络的化合物,并就以下证据提供观点:在一个代表性模型中实现了相关暴露,且该暴露可能导致靶点结合和药理学作用。我们希望本手稿能帮助该领域识别那些已被高质量化学物质令人信服地(证)验证的靶点和机制,以及那些有机会进行更深入探索的靶点和机制。