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萘醌作为GSK-3利什曼原虫抑制剂的新型化学骨架

Naphthoquinone as a New Chemical Scaffold for Leishmanicidal Inhibitors of GSK-3.

作者信息

Sebastián-Pérez Victor, Martínez de Iturrate Paula, Nácher-Vázquez Montserrat, Nóvoa Luis, Pérez Concepción, Campillo Nuria E, Gil Carmen, Rivas Luis

机构信息

Centro de Investigaciones Biológicas Margarita Salas (CIB-CSIC), 28040 Madrid, Spain.

Instituto de Química Médica (IQM-CSIC), 28006 Madrid, Spain.

出版信息

Biomedicines. 2022 May 14;10(5):1136. doi: 10.3390/biomedicines10051136.

Abstract

More than 1 billion people live in areas endemic for leishmaniasis, which is a relevant threat for public health worldwide. Due to the inadequate treatments, there is an urgent need to develop novel alternative drugs and to validate new targets to fight this disease. One appealing approach is the selective inhibition of protein kinases (PKs), enzymes involved in a wide range of processes along the life cycle of Several PKs, including glycogen synthase kinase 3 (GSK-3), have been validated as essential for this parasite by genetic or pharmacological methods. Recently, novel chemical scaffolds have been uncovered as GSK-3 inhibitors with antiparasitic activity. In order to find new inhibitors of this enzyme, a virtual screening of our in-house chemical library was carried out on the structure of the GSK-3. The virtual hits identified were experimentally assayed both for leishmanicidal activity and for in vitro inhibition of the enzyme. The best hits have a quinone scaffold. Their optimization through a medicinal chemistry approach led to a set of new compounds, provided a frame to establish biochemical and antiparasitic structure-activity relationships, and delivered molecules with an improved selectivity index. Altogether, this study paves the way for a systemic search of this class of inhibitors for further development as potential leishmanicidal drugs.

摘要

超过10亿人生活在利什曼病的流行地区,这对全球公共卫生构成了重大威胁。由于现有治疗方法不足,迫切需要开发新型替代药物并验证新的治疗靶点以对抗这种疾病。一种有吸引力的方法是选择性抑制蛋白激酶(PKs),这类酶参与了寄生虫生命周期中的广泛过程。包括糖原合酶激酶3(GSK-3)在内的几种PKs已通过基因或药理学方法被确认为该寄生虫生存所必需的酶。最近,已发现新型化学骨架作为具有抗寄生虫活性的GSK-3抑制剂。为了找到该酶的新抑制剂,我们基于GSK-3的结构对内部化学文库进行了虚拟筛选。对虚拟筛选得到的命中化合物进行了实验测定,评估其杀利什曼原虫活性以及对该酶的体外抑制作用。最佳命中化合物具有醌类骨架。通过药物化学方法对其进行优化,得到了一组新化合物,为建立生化和抗寄生虫构效关系提供了框架,并得到了选择性指数更高的分子。总之,本研究为系统搜索这类抑制剂以进一步开发为潜在的杀利什曼原虫药物铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/950f/9139002/2f847bb58fdb/biomedicines-10-01136-g001.jpg

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