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通过高通量虚拟筛选和分子动力学模拟鉴定巴贝斯虫和泰勒虫属组蛋白去乙酰化酶 1 的苯甲酰胺抑制剂。

Identification of benzamide inhibitors of histone deacetylase 1 from Babesia and Theileria species via high-throughput virtual screening and molecular dynamics simulations.

机构信息

Institute of Health Sciences, Department of Biochemistry (PHA), Marmara University, 34854 Maltepe, Istanbul, Turkey.

Faculty of Science, Department of Molecular Biology and Genetics, Gebze Technical University, 41400 Gebze, Kocaeli, Turkey.

出版信息

Parasitol Res. 2021 Jun;120(6):2175-2187. doi: 10.1007/s00436-021-07158-z. Epub 2021 May 14.

Abstract

Theileria and Babesia species are eukaryotic protozoan parasites classified under the order Piroplasmida of the phylum Apicomplexa. Tick vectors transmit these microorganisms in tropical and subtropical regions to a wide range of animals, including ruminants, causing fatal and life-threatening diseases such as bovine babesiosis and theileriosis. Resistance to commercially available drugs requires the search for new drug candidates. Histone deacetylase (HDAC) has a potential to be utilized as a drug target; therefore, it may be considered as an effective alternative. Previous studies revealed that HDAC inhibitors, identified for human use, show promising anti-parasitic effects. We have herein focused on the class I HDAC enzyme, HDAC1, of the Babesia and Theileria species to discover potential benzamide inhibitors by following a streamlined workflow of computer-aided drug design methodology. Molecular docking and molecular dynamics simulations revealed that benzamide derivatives stably interacted with the HDAC1 active site in both parasites as hypothesized. Furthermore, specific residue insertions at the entry point of the active site cleft of parasitic HDAC1 could enable ways to design parasite-specific drugs without adversely affecting host enzymes.

摘要

泰勒虫和巴贝斯虫属真核原生动物寄生虫,属于顶复门的梨形目。蜱虫媒介在热带和亚热带地区将这些微生物传播给包括反刍动物在内的广泛动物,导致牛巴贝斯虫病和泰勒虫病等致命和危及生命的疾病。对商业上可用的药物的耐药性要求寻找新的药物候选物。组蛋白去乙酰化酶 (HDAC) 具有作为药物靶点的潜力;因此,它可以被认为是一种有效的替代品。先前的研究表明,针对人类使用的 HDAC 抑制剂显示出有希望的抗寄生虫作用。我们在此专注于巴贝斯虫和泰勒虫属的 I 类 HDAC 酶,HDAC1,通过遵循计算机辅助药物设计方法的简化工作流程,发现潜在的苯甲酰胺抑制剂。分子对接和分子动力学模拟表明,苯甲酰胺衍生物如假设的那样与寄生虫中的 HDAC1 活性位点稳定相互作用。此外,在寄生虫 HDAC1 的活性位点裂缝入口处的特定残基插入可以设计出针对寄生虫的药物,而不会对宿主酶产生不利影响。

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