Department of Microbiology, Faculty of Medicine, The Chinese University of Hong Kong, Prince of Wales Hospital, Shatin, Hong Kong.
State Key Laboratory of Chemical Biology and Drug Discovery, Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hung Hom, Hong Kong.
Int J Mol Sci. 2020 Aug 11;21(16):5772. doi: 10.3390/ijms21165772.
The emergence of multidrug resistance in the clinically significant pathogen is a global health burden, compounded by a diminishing drug development pipeline, and a lack of approved novel antimicrobials. Our previously reported first-in-class bacterial transcription inhibitors "nusbiarylins" presented a promising prospect towards the discovery of novel antimicrobial agents with a novel mechanism. Here we investigated and characterised the lead nusbiarylin compound, MC4, and several of its chemical derivatives in both methicillin-resistant (MRSA) and the type strains, demonstrating their capacity for the arrest of growth and cellular respiration, impairment of RNA and intracellular protein levels at subinhibitory concentrations. In some instances, derivatives of MC4 were also shown to attenuate the production of staphylococcal virulence factors in vitro, such as the exoproteins α-toxin and Panton-Valentine Leukocidin (PVL). Trends observed from quantitative PCR assays suggested that nusbiarylins elicited these effects possibly by acting via but not limited to the modulation of global regulatory pathways, such as the regulon, which coordinates the expression of genes associated with virulence. Our findings encourage the continued development of more potent compounds within this novel family of bacterial transcription inhibitors.
临床上重要病原体出现多药耐药性是一个全球性的健康负担,再加上药物开发管道减少,以及缺乏经过批准的新型抗菌药物,情况更是雪上加霜。我们之前报道的首创细菌转录抑制剂“nusbiarylins”为发现具有新型机制的新型抗菌药物提供了有希望的前景。在这里,我们研究并描述了先导 nusbiarylin 化合物 MC4 及其几种化学衍生物在耐甲氧西林金黄色葡萄球菌 (MRSA) 和 型菌株中的作用,证明它们具有在亚抑菌浓度下抑制生长和细胞呼吸、损害 RNA 和细胞内蛋白质水平的能力。在某些情况下,MC4 的衍生物也被证明可以减少体外金黄色葡萄球菌毒力因子的产生,例如外毒素α-毒素和 Panton-Valentine Leukocidin (PVL)。定量 PCR 检测结果表明,nusbiarylins 可能通过调节全局调控途径(如 调控子)发挥作用,而不是通过调节全局调控途径发挥作用,该途径协调与毒力相关的 基因的表达。我们的研究结果鼓励继续开发这种新型细菌转录抑制剂家族中的更有效化合物。