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开发一种抗滴虫病的新药,磷酸丙糖异构酶蛋白的新型抑制化合物。

Developing a new drug against trichomoniasis, new inhibitory compounds of the protein triosephosphate isomerase.

作者信息

Vique-Sánchez José Luis, Caro-Gómez Luis Alberto, Brieba Luis G, Benítez-Cardoza Claudia G

机构信息

Laboratorio de Investigación Bioquímica, Doctorado en Biotecnología ENMyH-Instituto Politécnico Nacional, Guillermo Massieu Helguera No. 239, La Escalera Ticomán, 07320 Ciudad de México, Mexico.

Laboratorio Nacional de Genómica para la Biodiversidad, Centro de Investigación y de Estudios Avanzados del IPN, Apartado Postal 629, CP 36500 Irapuato, Guanajuato, Mexico.

出版信息

Parasitol Int. 2020 Jun;76:102086. doi: 10.1016/j.parint.2020.102086. Epub 2020 Feb 27.

Abstract

Trichomonas vaginalis is the protozoan parasite responsible for the most prevalent, non-viral, sexually transmitted disease, which affects millions of people around the world. The main treatment against this disease is metronidazole and some other nitroimidazole derivatives. However, between five and 20% of clinical cases of trichomoniasis are caused by parasites resistant to these drugs. Here we present three compounds that were selected using an innovative strategy, to propose them as possible drugs to combat trichomoniasis, using the glycolytic enzyme triose phosphate isomerase (TvTIM) as the drug target. In the genome of Trichomonas vaginalis there are two genes that encode for two isoforms of TvTIM, known as TvTIM1 and TvTIM2, varying by four out of 254 aminoacid residues. In this study, we used high-throughput virtual screening to search molecules that bind specifically to TvTIM isoforms, in which 34 compounds were selected from a library of nearly 450,000 compounds. The effects of the 34 compounds on the conformation and enzymatic activity of both TvTIM isoforms and their human homolog (HsTIM) were evaluated. We found three compounds that bind specifically, modify the conformation and inhibit TvTIM2 only; although the sequence of both isoforms of TvTIM is almost identical. The selectivity of these compounds towards TvTIM2 is explained by the lower conformational stability of this isoform and that these interactions can inhibit the activity of this enzyme and have an effect against this parasite. These compounds represent promising alternatives for the development of new therapeutic strategies against trichomoniasis.

摘要

阴道毛滴虫是导致最常见的非病毒性性传播疾病的原生动物寄生虫,全球数百万人受其影响。针对这种疾病的主要治疗药物是甲硝唑和其他一些硝基咪唑衍生物。然而,滴虫病临床病例中有5%至20%是由对这些药物耐药的寄生虫引起的。在此,我们展示了三种采用创新策略筛选出的化合物,提议将它们作为对抗滴虫病的潜在药物,使用糖酵解酶磷酸丙糖异构酶(TvTIM)作为药物靶点。在阴道毛滴虫的基因组中有两个基因编码TvTIM的两种同工型,分别称为TvTIM1和TvTIM2,它们在254个氨基酸残基中有4个不同。在本研究中,我们使用高通量虚拟筛选来寻找与TvTIM同工型特异性结合的分子,从近450,000种化合物的文库中筛选出了34种化合物。评估了这34种化合物对TvTIM两种同工型及其人类同源物(HsTIM)的构象和酶活性的影响。我们发现有三种化合物能特异性结合、改变构象且仅抑制TvTIM2;尽管TvTIM的两种同工型序列几乎相同。这些化合物对TvTIM2的选择性可由该同工型较低的构象稳定性来解释,并且这些相互作用能够抑制该酶的活性并对这种寄生虫产生作用。这些化合物代表了开发抗滴虫病新治疗策略的有前景的替代物。

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