Mosquillo Florencia, Scalese Gonzalo, Moreira Rodrigo, Denis Pablo A, Machado Ignacio, Paulino Margot, Gambino Dinorah, Pérez-Díaz Leticia
Sección Genómica Funcional, Instituto de Química Biológica, Facultad de Ciencias, Universidad de la República, 4225 Iguá St., Montevideo, 11400, Uruguay.
Área Química Inorgánica, Facultad de Química, Universidad de la República, 2124 Gral. Flores Av., Montevideo, 11800, Uruguay.
Chembiochem. 2023 Oct 4;24(19):e202300406. doi: 10.1002/cbic.202300406. Epub 2023 Aug 11.
Current treatment for Chagas' disease is based on two drugs, Nifurtimox and Benznidazol, which have limitations that reduce the effectiveness and continuity of treatment. Thus, there is an urgent need to develop new, safe and effective drugs. In previous work, two new metal-based compounds with trypanocidal activity, Pd-dppf-mpo and Pt-dppf-mpo, were fully characterized. To unravel the mechanism of action of these two analogous metal-based drugs, high-throughput omics studies were performed. A multimodal mechanism of action was postulated with several candidates as molecular targets. In this work, we validated the ergosterol biosynthesis pathway as a target for these compounds through the determination of sterol levels by HPLC in treated parasites. To understand the molecular level at which these compounds participate, two enzymes that met eligibility criteria at different levels were selected for further studies: phosphomevalonate kinase (PMK) and lanosterol 14-α demethylase (CYP51). Molecular docking processes were carried out to search for potential sites of interaction for both enzymes. To validate these candidates, a gain-of-function strategy was used through the generation of overexpressing PMK and CYP51 parasites. Results here presented confirm that the mechanism of action of Pd-dppf-mpo and Pt-dppf-mpo compounds involves the inhibition of both enzymes.
恰加斯病的当前治疗方法基于两种药物,硝呋莫司和苯硝唑,它们存在局限性,降低了治疗的有效性和持续性。因此,迫切需要开发新的、安全有效的药物。在之前的工作中,对两种具有杀锥虫活性的新型金属基化合物Pd-dppf-mpo和Pt-dppf-mpo进行了全面表征。为了阐明这两种类似金属基药物的作用机制,进行了高通量组学研究。推测了一种多模式作用机制,有几种候选分子靶点。在这项工作中,我们通过用高效液相色谱法测定经处理寄生虫中的甾醇水平,验证了麦角固醇生物合成途径是这些化合物的一个靶点。为了了解这些化合物参与的分子水平,选择了在不同水平符合入选标准的两种酶进行进一步研究:磷酸甲羟戊酸激酶(PMK)和羊毛甾醇14-α脱甲基酶(CYP51)。进行了分子对接过程以寻找这两种酶的潜在相互作用位点。为了验证这些候选靶点,通过生成过表达PMK和CYP51的寄生虫,采用了功能获得策略。此处呈现的结果证实,Pd-dppf-mpo和Pt-dppf-mpo化合物的作用机制涉及对这两种酶的抑制。