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新型喹啉衍生物的设计、合成及抗菌活性研究。

Design, synthesis and antimicrobial activity of novel quinoline derivatives: an and study.

机构信息

Bioorganic Research Laboratory, Department of Chemistry, University of Allahabad, Prayagraj, India.

Centre of Bioinformatics, Institute of Interdisciplinary Studies, University of Allahabad, Prayagraj, India.

出版信息

J Biomol Struct Dyn. 2024 Aug;42(13):6904-6924. doi: 10.1080/07391102.2023.2236716. Epub 2023 Jul 21.

Abstract

A series of new quinoline derivatives has been designed, synthesized and evaluated as antibacterial and antifungal agents functioning as peptide deformylase enzyme (PDF) inhibitors and fungal cell wall disruptors on the basis of computational and experimental methods. The molecular docking and ADMET assessment aided in the synthesis of quinoline derivatives starting from 6-amino-4-methyl-1-quinoline-2-one substituted with different types of sulfonyl/benzoyl/propargyl moieties. These newly synthesized compounds were evaluated for their antibacterial and antifungal activity. Antibacterial screening of all compounds showed excellent MIC value (MIC, 50 - 3.12 µg/mL) against bacterial strains, viz. , , and Compounds and showed better activity. Fractional inhibitory concentration (FIC) values of compounds were lowered by 1/2 to 1/128 of the original MIC values when a combinatorial screening with reference drugs was performed. Further, antifungal screening against fungal strains, viz. , , and also showed that all compounds were potentially active and compound being the most potent. Further, the cytotoxicity experiments revealed that compound was the least toxic molecule. The molecular dynamics (MD) simulation investigations elucidated the conformational stability of compound -PDF complex with flexible binding pocket residues. The highest number of stable hydrogen bonds with the PDF residues during the entire simulation time illustrated strong binding affinity of compound with PDF.Communicated by Ramaswamy H. Sarma.

摘要

基于计算和实验方法,我们设计、合成并评估了一系列新的喹啉衍生物,将其作为抗菌和抗真菌剂,作用是肽脱甲酰酶(PDF)抑制剂和真菌细胞壁破坏剂。分子对接和 ADMET 评估辅助了从 6-氨基-4-甲基-1-喹啉-2-酮开始合成取代有不同类型磺酰基/苯甲酰基/炔丙基部分的喹啉衍生物。我们对这些新合成的化合物进行了抗菌和抗真菌活性评估。所有化合物的抗菌筛选均显示出对细菌菌株的优异 MIC 值(MIC,50-3.12μg/mL),包括 、 、 和 。化合物 和 表现出更好的活性。当与参考药物进行组合筛选时,化合物的部分抑制浓度(FIC)值降低了 1/2 至 1/128 原始 MIC 值。此外,对真菌菌株(包括 、 、 和 )的抗真菌筛选也表明,所有化合物均具有潜在活性,其中化合物 最为有效。此外,细胞毒性实验表明,化合物 是毒性最小的分子。分子动力学(MD)模拟研究阐明了化合物-PDF 复合物与柔性结合口袋残基的构象稳定性。在整个模拟时间内,与 PDF 残基形成的稳定氢键数量最多,表明化合物 与 PDF 具有很强的结合亲和力。由 Ramaswamy H. Sarma 交流。

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