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新型吡咯类支架的合成、分子对接研究及作为烯酰基 ACP 还原酶和二氢叶酸还原酶双重靶点的潜在抗结核剂的生物评价。

Synthesis, molecular docking study and biological evaluation of new pyrrole scaffolds as potential antitubercular agents for dual targeting of enoyl ACP reductase and dihydrofolate reductase.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, Najran University, Najran, Saudi Arabia.

Department of Pharmaceutical Chemistry, Novel Drug Design and Discovery Laboratory, SET's College of Pharmacy, Sangolli Rayanna Nagar, Dharwad, Karnataka, India.

出版信息

PLoS One. 2024 May 13;19(5):e0303173. doi: 10.1371/journal.pone.0303173. eCollection 2024.

Abstract

In this study, new series of N'-(2-(substitutedphenoxy)acetyl)-4-(1H-pyrrol-1-yl)benzohydrazides (3a-j) 4-(2,5-dimethyl-1H-pyrrol-1-yl)-N'-(2-(substitutedphenoxy)acetyl)benzohydrazides (5a-j) were synthesized, characterized and assessed as inhibitors of enoyl ACP reductase and DHFR. Most of the compounds exhibited dual inhibition against the enzymes enoyl ACP reductase and DHFR. Several synthesized substances also demonstrated significant antibacterial and antitubercular properties. A molecular docking analysis was conducted in order to determine the potential mechanism of action of the synthesized compounds. The results indicated that there were binding interactions seen with the active sites of dihydrofolate reductase and enoyl ACP reductase. Additionally, important structural details were identified that play a critical role in sustaining the dual inhibitory activity. These findings were useful for the development of future dual inhibitors. Therefore, this study provided strong evidence that several synthesized molecules could exert their antitubercular properties at the cellular level through multi-target inhibition. By shedding light on the mechanisms through which these compounds exert their inhibitory effects, this research opens up promising avenues for the future development of dual inhibitors with enhanced antibacterial and antitubercular properties. The study's findings underscore the importance of multi-target approaches in drug design, providing a strong foundation for the design and optimization of novel compounds that can effectively target bacterial infections at the cellular level.

摘要

在这项研究中,我们合成了一系列新的 N'-(2-(取代苯氧基)乙酰基)-4-(1H-吡咯-1-基)苯甲酰肼(3a-j)和 4-(2,5-二甲基-1H-吡咯-1-基)-N'-(2-(取代苯氧基)乙酰基)苯甲酰肼(5a-j),并对它们进行了表征和评估,以确定它们是否为烯酰基辅酶 A 还原酶和二氢叶酸还原酶的抑制剂。大多数化合物对烯酰基辅酶 A 还原酶和二氢叶酸还原酶均具有双重抑制作用。一些合成的物质还表现出显著的抗菌和抗结核特性。为了确定合成化合物的潜在作用机制,我们进行了分子对接分析。结果表明,这些合成物与二氢叶酸还原酶和烯酰基辅酶 A 还原酶的活性位点存在结合相互作用。此外,确定了一些重要的结构细节,它们在维持双重抑制活性方面发挥着关键作用。这些发现为开发未来的双重抑制剂提供了有力的依据。因此,本研究提供了强有力的证据,表明几种合成分子可以通过多靶点抑制在细胞水平上发挥其抗结核特性。通过阐明这些化合物发挥抑制作用的机制,该研究为开发具有增强的抗菌和抗结核特性的双重抑制剂开辟了有前途的途径。该研究的结果强调了多靶点方法在药物设计中的重要性,为设计和优化能够有效针对细菌感染的新型化合物提供了坚实的基础,这些化合物可以在细胞水平上发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a861/11090339/9eabfb8ff43a/pone.0303173.g001.jpg

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