School of Pharmaceutical Sciences, Institute of Drug Discovery & Development, Key Laboratory of Advanced Drug Preparation Technologies (Ministry of Education), Zhengzhou University, Zhengzhou 450001, China.
Department of Pharmacology, School of Basic Medical Sciences, Zhengzhou University, Zhengzhou 450001, China.
Bioorg Chem. 2023 Oct;139:106684. doi: 10.1016/j.bioorg.2023.106684. Epub 2023 Jun 21.
The microtubule system plays an important role in the mitosis and growth of eukaryotic cells, and it is considered as an appealing and highly successful molecular target for cancer treatment. In fact, microtubule targeting agents, such as paclitaxel and vinblastine, have been approved by FDA for tumor therapy, which have achieved significant therapeutic effects and sales performance. At present, microtubule targeting agents mainly include microtubule-destabilizing agents, microtubule-stabilizing agents, and a few tubulin degradation agents. Although there are few reports about tubulin degradation agents at present, tubulin degradation agents show great potential in overcoming multidrug resistance and reducing neurotoxicity. In addition, some natural drugs could specifically degrade tubulin in tumor cells, but have no effect in normal cells, thus showing a good biosafety profile. Therefore, tubulin degradation agents might exhibit a better application. Currently, some small molecules have been designed to promote tubulin degradation with potent antiproliferative activities, showing the potential for cancer treatment. In this work, we reviewed the reports on tubulin degradation, and focused on the degradation mechanism and important functional groups of chemically synthesized compounds, hoping to provide help for the degradation design of tubulin.
微管系统在真核细胞的有丝分裂和生长中起着重要作用,它被认为是癌症治疗中一种有吸引力且非常成功的分子靶标。事实上,微管靶向药物,如紫杉醇和长春碱,已被 FDA 批准用于肿瘤治疗,已取得显著的治疗效果和销售业绩。目前,微管靶向药物主要包括微管破坏剂、微管稳定剂和少数微管蛋白降解剂。虽然目前关于微管蛋白降解剂的报道较少,但微管蛋白降解剂在克服多药耐药性和降低神经毒性方面显示出巨大的潜力。此外,一些天然药物可以特异性地降解肿瘤细胞中的微管蛋白,而对正常细胞没有影响,因此具有良好的生物安全性。因此,微管蛋白降解剂可能具有更好的应用前景。目前,已经设计了一些小分子来促进微管蛋白的降解,具有很强的抗增殖活性,显示出治疗癌症的潜力。在这项工作中,我们综述了关于微管蛋白降解的报道,重点介绍了化学合成化合物的降解机制和重要功能团,希望为微管蛋白的降解设计提供帮助。