School of Mathematical and Physical Sciences, University of Technology Sydney, Sydney, NSW, 2007, Australia.
Sydney Pharmacy School, Faculty of Medicine and Health, University of Sydney, Sydney, NSW, 2000, Australia.
Chemistry. 2024 Aug 19;30(46):e202400931. doi: 10.1002/chem.202400931. Epub 2024 Jul 31.
Mitochondrial uncoupling by small molecule protonophores is a promising strategy for developing novel anticancer agents. Recently, aryl urea substituted fatty acids (aryl ureas) were identified as a new class of protonophoric anticancer agents. To mediate proton transport these molecules self-assemble into membrane-permeable anionic dimers in which intermolecular hydrogen bonds between the carboxylate and aryl-urea anion receptor delocalise the negative charge across the aromatic π-system. In this work, we extend the aromatic π-system by introducing a second phenyl substituent to the aryl urea scaffold and compare the proton transport mechanisms and mitochondrial uncoupling actions of these compounds to their monoaryl analogues. It was found that incorporation of meta-linked phenyl substituents into the aryl urea scaffold enhanced proton transport in vesicles and demonstrated superior capacity to depolarise mitochondria, inhibit ATP production and reduce the viability of MDA-MB-231 breast cancer cells. In contrast, diphenyl ureas linked through a 1,4-distribution across the phenyl ring displayed diminished proton transport activity, despite both diphenyl urea isomers possessing similar binding affinities for carboxylates. Mechanistic studies suggest that inclusion of a second aryl ring changes the proton transport mechanism, presumably due to steric factors that impose higher energy penalties for dimer formation.
小分子质子载体解偶联线粒体是开发新型抗癌药物的有前途的策略。最近,芳基脲取代的脂肪酸(芳基脲)被鉴定为一类新型质子传递型抗癌剂。为了介导质子转运,这些分子在膜中自组装成可渗透的阴离子二聚体,其中羧酸酯和芳基脲阴离子受体之间的分子间氢键将负电荷离域到芳族π-体系上。在这项工作中,我们通过在芳基脲支架上引入第二个苯基取代基来扩展芳族π-体系,并将这些化合物的质子转运机制和线粒体解偶联作用与其单芳基类似物进行比较。结果发现,将间位连接的苯基取代基引入芳基脲支架中增强了囊泡中的质子转运,并表现出更强的去极化线粒体、抑制 ATP 产生和降低 MDA-MB-231 乳腺癌细胞活力的能力。相比之下,尽管两种二苯基脲异构体对羧酸酯具有相似的结合亲和力,但通过苯环 1,4-分布连接的二苯基脲显示出降低的质子传递活性。机制研究表明,第二个芳环的包含改变了质子传递机制,可能是由于空间位阻因素对二聚体形成施加了更高的能量惩罚。