Department of Pharmacy, Faculty of Pharmaceutical Sciences, University of São Paulo, São Paulo, SP, Brazil.
Mini Rev Med Chem. 2023;23(17):1711-1732. doi: 10.2174/1389557523666230206163154.
The folate metabolic cycle is an important biochemical process for the maintenance of cellular homeostasis, and is a widely studied pathway of cellular replication control in all organisms. In microorganisms such as , for instance, dihydrofolate reductase (DHFR) is the enzyme commonly explored as a molecular target for the development of new antibiotics. In the same way, dihydropteroate synthase (DHPS) was studied extensively until the first multidrug-resistant strains of mycobacteria that could not be killed by sulfonamides were found. However, the other enzymes belonging to the metabolic cycle, until recently less explored, have drawn attention as potential molecular targets for obtaining new antituberculosis agents. Recent structural determinations and mechanism of action studies of flavin-dependent thymidylate synthase (FDTS) and Rv2671, enzymes that acts on alternative metabolic pathways within the folate cycle, have greatly expanded the scope of potential targets that can be screened in drug design process. Despite the crystallographic elucidation of most cycle proteins, some enzymes, such as dihydrofolate synthase (DHFS) and serine hydroxylmethyltransferase (SHMT), remain underexplored. In this review, we highlight recent efforts towards the inhibitor design to achieve innovative antituberculosis agents and a brief history of all enzymes present in the folate metabolic cycle. In the final section of this work, we have presented the main synthetic strategies used to obtain the most promising inhibitors.
叶酸代谢循环是维持细胞内稳态的重要生化过程,也是所有生物中细胞复制控制的广泛研究途径。例如,在微生物中,二氢叶酸还原酶(DHFR)通常被探索为开发新抗生素的分子靶标。同样,二氢喋呤合成酶(DHPS)也被广泛研究,直到发现了第一批不能被磺胺类药物杀死的耐多药分枝杆菌菌株。然而,直到最近,叶酸代谢循环中属于其他酶类的分子靶标,才作为获得新抗结核药物的潜在分子靶标引起关注。最近,黄素依赖性胸苷酸合成酶(FDTS)和 Rv2671 的结构测定和作用机制研究极大地扩展了可以在药物设计过程中筛选的潜在靶标范围,这两种酶作用于叶酸循环中的替代代谢途径。尽管大多数循环蛋白的晶体结构已经阐明,但有些酶,如二氢叶酸合成酶(DHFS)和丝氨酸羟甲基转移酶(SHMT),仍未得到充分探索。在这篇综述中,我们强调了最近在抑制剂设计方面的努力,以获得创新的抗结核药物,并简要介绍了叶酸代谢循环中存在的所有酶。在这项工作的最后部分,我们介绍了获得最有前途的抑制剂的主要合成策略。