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基于动力学和分子对接研究抑制剂对. 融合 G6PD::6PGL 蛋白活性和结构的影响

Kinetic and Molecular Docking Studies to Determine the Effect of Inhibitors on the Activity and Structure of Fused G6PD::6PGL Protein from .

机构信息

Laboratorio de Bioquímica Genética, Instituto Nacional de Pediatría, Secretaría de Salud, Mexico City 04530, Mexico.

Programa de Posgrado en Biomedicina y Biotecnología Molecular, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Mexico City 11340, Mexico.

出版信息

Molecules. 2022 Feb 9;27(4):1174. doi: 10.3390/molecules27041174.

Abstract

Trichomoniasis is a sexually transmitted disease with a high incidence worldwide, affecting 270 million people. Despite the existence of a catalog of available drugs to combat this infection, their extensive use promotes the appearance of resistant (), and some side effects in treated people, which are reasons why it is necessary to find new alternatives to combat this infection. In this study, we investigated the impact of an in-house library comprising 55 compounds on the activity of the fused G6PD::6PGL (TvG6PD::6PGL) protein, a protein mediating the first reaction step of the pentose phosphate pathway (PPP), a crucial pathway involved in the parasite's energy production. We found four compounds: JMM-3, CNZ-3, CNZ-17, and MCC-7, which inhibited the TvG6PD::6PGL protein by more than 50%. Furthermore, we determined the IC, the inactivation constants, and the type of inhibition. Our results showed that these inhibitors induced catalytic function loss of the TvG6PD::6PGL enzyme by altering its secondary and tertiary structures. Finally, molecular docking was performed for the best inhibitors, JMM-3 and MCC-7. All our findings demonstrate the potential role of these selected hit compounds as TvG6PD::6PGL enzyme selective inhibitors.

摘要

滴虫病是一种在世界范围内发病率较高的性传播疾病,影响 2.7 亿人。尽管有一系列可用于治疗这种感染的药物,但它们的广泛使用促进了耐药性的出现,以及治疗人群中的一些副作用,这就是为什么有必要寻找新的替代品来对抗这种感染的原因。在这项研究中,我们研究了由 55 种化合物组成的内部文库对融合 G6PD::6PGL(TvG6PD::6PGL)蛋白活性的影响,该蛋白介导戊糖磷酸途径(PPP)的第一步反应,PPP 是寄生虫能量产生中涉及的关键途径。我们发现了四种化合物:JMM-3、CNZ-3、CNZ-17 和 MCC-7,它们对 TvG6PD::6PGL 蛋白的抑制作用超过 50%。此外,我们还确定了 IC、失活常数和抑制类型。我们的研究结果表明,这些抑制剂通过改变其二级和三级结构,诱导 TvG6PD::6PGL 酶的催化功能丧失。最后,对最佳抑制剂 JMM-3 和 MCC-7 进行了分子对接。我们所有的研究结果都表明,这些选定的命中化合物可能作为 TvG6PD::6PGL 酶的选择性抑制剂发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bcd/8880039/182146d5e0ab/molecules-27-01174-g001.jpg

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