通过分子对接确定水飞蓟宾的潜在靶点及其对尿路致病性大肠杆菌外排泵和孔蛋白的抗菌功能

IF 2.3 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
International Microbiology Pub Date : 2025-05-01 Epub Date: 2024-02-16 DOI:10.1007/s10123-024-00488-9
Shirin Fekri Kohan, Alireza Nouhi Kararoudi, Maryam Bazgosha, Somayeh Adelifar, Arman Hafezolghorani Esfahani, Fatemeh Ghaderi Barmi, Reyhaneh Kouchakinejad, Ebrahim Barzegari, Mahdi Shahriarinour, Najmeh Ranji
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引用次数: 0

摘要

背景:抗生素耐药性的原因之一是抗生素在细菌细胞中的蓄积通过泵出药物而减少。水飞蓟宾是水飞蓟植物的一种主要成分,具有多种有益特性,包括抗菌、消炎、抗氧化和保肝作用:临床分离的大肠杆菌来自伊朗北部吉兰省拉什特市的 17 Shahrivar 儿童医院。采用盘扩散法和肉汤稀释法(MIC)评估了它们对六种抗生素的敏感性。使用肉汤稀释法(MIC)和生物膜检测法研究了水飞蓟宾负载聚合体纳米颗粒(SPNs)的抗菌效果。利用分子对接评估了水飞蓟宾(抗菌成分)与外排泵、孔蛋白及其调控元件的结合亲和力。此外,qRT-PCR 分析还探讨了 SPNs(亚 MIC)和环丙沙星(亚 MIC)处理过和未处理过的大肠杆菌分离物中 acrA、acrB、tolC、ompC 和 ompF 基因的表达模式。联合使用 SPNs 和环丙沙星可显著减少耐环丙沙星分离物中细菌的生长和生物膜的形成。该研究确定了 AcrABZ-TolC 外排泵与水飞蓟宾的八个重叠结合位点,其结合亲和力范围为 -7.688 至 -10.33 Kcal/mol。此外,qRT-PCR 分析表明,水飞蓟宾在与环丙沙星联合使用时,可在转录水平上上调 AcrAB-TolC 外排泵基因,下调 ompC 和 ompF 孔蛋白基因:水飞蓟宾是一种安全的草药化合物,可能通过调节基因表达和与靶蛋白的结合来抑制细菌分离物的抗生素耐药性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Determining the potential targets of silybin by molecular docking and its antibacterial functions on efflux pumps and porins in uropathogenic E. coli.

Determining the potential targets of silybin by molecular docking and its antibacterial functions on efflux pumps and porins in uropathogenic E. coli.

Background: One of the causes of antibiotic resistance is the reduced accumulation of antibiotics in bacterial cells through pumping out the drugs. Silybin, a key component of the Silybum marianum plant, exhibits various beneficial properties, including anti-bacterial, anti-inflammatory, antioxidant, and hepatoprotective effects.

Methods and results: Clinical isolates of E. coli were procured from 17 Shahrivar Children's Hospital in Rasht, Guilan, located in northern Iran. Their susceptibility to six antibiotics was assessed using disc diffusion and broth dilution (MIC) methods. The antibacterial effects of silybin-loaded polymersome nanoparticles (SPNs) were investigated with broth dilution (MIC) and biofilm assays. Molecular docking was utilized to evaluate silybin's (the antibacterial component) binding affinity to efflux pumps, porins, and their regulatory elements. Additionally, qRT-PCR analysis explored the expression patterns of acrA, acrB, tolC, ompC, and ompF genes in both SPNs (sub-MIC) and ciprofloxacin (sub-MIC)-treated and untreated E. coli isolates. The combined use of SPNs and ciprofloxacin exhibited a notable reduction in bacterial growth and biofilm formation, in ciprofloxacin-resistant isolates. The study identified eight overlapping binding sites of the AcrABZ-TolC efflux pump in association with silybin, demonstrating a binding affinity ranging from -7.688 to -10.33 Kcal/mol. Furthermore, the qRT-PCR analysis showed that silybin upregulated AcrAB-TolC efflux pump genes and downregulated ompC and ompF porin genes in combination with ciprofloxacin in transcriptional level in uropathogenic E. coli.

Conclusions: Silybin, a safe herbal compound, exhibits potential in inhibiting antibiotic resistance within bacterial isolates, potentially through the regulation of gene expression and plausible binding to target proteins.

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来源期刊
International Microbiology
International Microbiology 生物-生物工程与应用微生物
CiteScore
5.50
自引率
3.20%
发文量
67
审稿时长
3 months
期刊介绍: International Microbiology publishes information on basic and applied microbiology for a worldwide readership. The journal publishes articles and short reviews based on original research, articles about microbiologists and their work and questions related to the history and sociology of this science. Also offered are perspectives, opinion, book reviews and editorials. A distinguishing feature of International Microbiology is its broadening of the term microbiology to include eukaryotic microorganisms.
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