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吡咯并喹啉醌 (PQQ) 的抗菌和抗生物膜活性的新见解;,和 shotgun 蛋白质组学研究。

Novel Insights into the Antimicrobial and Antibiofilm Activity of Pyrroloquinoline Quinone (PQQ); , , and Shotgun Proteomic Studies.

机构信息

Department of Bioinformatics, Agricultural Genetic Engineering Research Institute (AGERI), Agricultural Research Centre (ARC), Cairo 12619, Egypt.

Department of Pharmaceutical Sciences, Faculty of Pharmacy, Umm Al-Qura University, Makkah 21955, Saudi Arabia.

出版信息

Biomolecules. 2024 Aug 16;14(8):1018. doi: 10.3390/biom14081018.

Abstract

Microbial infections pose a significant global health threat, affecting millions of individuals and leading to substantial mortality rates. The increasing resistance of microorganisms to conventional treatments requires the development of novel antimicrobial agents. Pyrroloquinoline quinone (PQQ), a natural medicinal drug involved in various cellular processes, holds promise as a potential antimicrobial agent. In the present study, our aim was, for the first time, to explore the antimicrobial activity of PQQ against 29 pathogenic microbes, including 13 fungal strains, 8 Gram-positive bacteria, and 8 Gram-negative bacteria. Our findings revealed potent antifungal properties of PQQ, particularly against , , , and . The MIC values varied between fungal strains, and exhibited a lower MIC, indicating a greater susceptibility to PQQ. In addition, PQQ exhibited notable antibacterial activity against Gram-positive and -negative bacteria, with a prominent inhibition observed against , , and MRSA strains. Remarkably, PQQ demonstrated considerable biofilm inhibition against the MRSA, , and strains. Transmission electron microscopy (TEM) studies revealed that PQQ caused structural damage and disrupted cell metabolism in bacterial cells, leading to aberrant morphology, compromised cell membrane integrity, and leakage of cytoplasmic contents. These findings were further affirmed by shotgun proteomic analysis, which revealed that PQQ targets several important cellular processes in bacteria, including membrane proteins, ATP metabolic processes, DNA repair processes, metal-binding proteins, and stress response. Finally, detailed molecular modeling investigations indicated that PQQ exhibits a substantial binding affinity score for key microbial targets, including the mannoprotein Mp1P, the transcriptional regulator TcaR, and the endonuclease PvuRTs1I. Taken together, our study underscores the effectiveness of PQQ as a broad-spectrum antimicrobial agent capable of combating pathogenic fungi and bacteria, while also inhibiting biofilm formation and targeting several critical biological processes, making it a promising therapeutic option for biofilm-related infections.

摘要

微生物感染对全球健康构成重大威胁,影响着数百万人的健康,并导致高死亡率。微生物对传统治疗方法的耐药性不断增加,需要开发新型抗菌药物。吡咯并喹啉醌(PQQ)是一种参与多种细胞过程的天然药物,有望成为一种有潜力的抗菌药物。在本研究中,我们首次探索了 PQQ 对 29 种致病微生物的抗菌活性,包括 13 种真菌菌株、8 种革兰氏阳性菌和 8 种革兰氏阴性菌。我们的研究结果表明 PQQ 具有很强的抗真菌特性,特别是对 、 、 、 。MIC 值因真菌菌株而异,其中 表现出较低的 MIC,表明对 PQQ 的敏感性更高。此外,PQQ 对革兰氏阳性和阴性菌表现出显著的抗菌活性,对 、 、MRSA 菌株的抑制作用尤为明显。值得注意的是,PQQ 对 MRSA、 、 菌株的生物膜有显著的抑制作用。透射电子显微镜(TEM)研究表明,PQQ 导致细菌细胞的结构损伤和细胞代谢紊乱,导致形态异常、细胞膜完整性受损以及细胞质内容物泄漏。这些发现进一步通过鸟枪法蛋白质组学分析得到证实,该分析表明 PQQ 靶向细菌中的几个重要细胞过程,包括膜蛋白、ATP 代谢过程、DNA 修复过程、金属结合蛋白和应激反应。最后,详细的分子建模研究表明,PQQ 对关键微生物靶标(包括甘露糖蛋白 Mp1P、转录调节剂 TcaR 和内切酶 PvuRTs1I)表现出相当大的结合亲和力评分。综上所述,我们的研究强调了 PQQ 作为一种广谱抗菌药物的有效性,能够对抗致病性真菌和细菌,同时抑制生物膜形成并靶向几个关键的生物学过程,使其成为与生物膜相关感染的有前途的治疗选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f2c/11352295/7f923b0d9014/biomolecules-14-01018-g001.jpg

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