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对细菌相互作用的见解:使用分子对接和分子动力学方法将含氟1,2,4-三唑与抗生素进行比较。

Insights into bacterial interactions: Comparing fluorine-containing 1,2,4-triazoles to antibiotics using molecular docking and molecular dynamics approaches.

作者信息

Korol Nataliya, Holovko-Kamoshenkova Oksana, Mariychuk Ruslan, Slivka Mykhailo

机构信息

Organic Chemistry Department, Educational and Research Institute of Chemistry and Ecology, Uzhhorod National University, Fedyntsa st. 53/1, Uzhhorod 88000, Ukraine.

Department of Ecology, Faculty of Humanities and Natural Sciences, University of Presov, 17 Novembra st. 15, Presov 08001, Slovakia.

出版信息

Heliyon. 2024 Sep 6;10(17):e37538. doi: 10.1016/j.heliyon.2024.e37538. eCollection 2024 Sep 15.

Abstract

Understanding the interactions between drugs and enzymes is crucial for designing effective therapeutics. This study employed a combination of molecular docking and molecular dynamics (MD) simulations to evaluate the binding affinity, stability, and dynamic behavior of two new compounds (compound and compound ) compared to vancomycin and meropenem against bacterial enzymes. Molecular docking studies provided insights into the binding interactions and affinities of these compounds, revealing that both compound and compound exhibit promising binding profiles. In particular, compound demonstrated lower binding energies with key enzymes from compared to vancomycin, suggesting enhanced potential. MD simulations further elucidated the dynamic stability of these complexes. Results indicated that compound maintains consistent binding modes with low RMSD and RMSF values, implying stable interactions. In contrast, vancomycin exhibited high RMSD and RMSF values in some enzyme complexes, reflecting potential instability. Compound showed competitive stability and binding behavior compared to meropenem, with comparable RMSD and RMSF values across various enzyme targets. These findings highlight the potential of compound and compound as viable candidates for further development, offering insights into their stability and efficacy as new therapeutic agents.

摘要

了解药物与酶之间的相互作用对于设计有效的治疗方法至关重要。本研究采用分子对接和分子动力学(MD)模拟相结合的方法,评估两种新化合物(化合物 和化合物 )与万古霉素和美罗培南相比,对 细菌酶的结合亲和力、稳定性和动态行为。分子对接研究深入了解了这些化合物的结合相互作用和亲和力,表明化合物 和化合物 都表现出有前景的结合模式。特别是,与万古霉素相比,化合物 与来自 的关键酶表现出更低的结合能,表明其潜力增强。MD模拟进一步阐明了这些复合物的动态稳定性。结果表明,化合物 以低均方根偏差(RMSD)和均方根波动(RMSF)值维持一致的结合模式,这意味着相互作用稳定。相比之下,万古霉素在一些酶复合物中表现出高RMSD和RMSF值,反映出潜在的不稳定性。与美罗培南相比,化合物 表现出具有竞争力的稳定性和结合行为,在各种酶靶点上具有相当的RMSD和RMSF值。这些发现突出了化合物 和化合物 作为进一步开发的可行候选物的潜力,为它们作为新型治疗剂的稳定性和疗效提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a3d/11407052/48c82d244cef/gr1.jpg

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