Copper affects virulence and diverse phenotypes of uropathogenic Proteus mirabilis

奇异变形杆菌 毒力 微生物学 鞭毛蛋白 生物膜 群集运动 生物 蜂群(蜜蜂) 细菌 化学 铜绿假单胞菌 群体感应 生物化学 基因 遗传学 有机化学
作者
Wei-Syuan Huang,Yuan‐Ju Lee,Lu Wang,Hsuan- Hsuan Chen,Yueh-Jung Chao,Vivien Cheng,Shwu‐Jen Liaw
出处
期刊:Journal of Microbiology Immunology and Infection [Elsevier BV]
卷期号:57 (3): 385-395 被引量:1
标识
DOI:10.1016/j.jmii.2024.02.007
摘要

Copper plays a role in urinary tract infection (UTI) and urinary copper content is increased during Proteus mirabilis UTI. We therefore investigated the effect of copper on uropathogenic P. mirabilis and the underlying mechanisms, focusing on the virulence associated aspects. Mouse colonization, swarming/swimming assays, measurement of cell length, flagellin level and urease activity, adhesion/invasion assay, biofilm formation, killing by macrophages, oxidative stress susceptibility, OMPs analysis, determination of MICs and persister cell formation, RT-PCR and transcriptional reporter assay were performed. We found that copper-supplemented mice were more resistant to be colonized in the urinary tract, together with decreased swarming/swimming, ureases activity, expression of type VI secretion system and adhesion/invasion to urothelial cells and increased killing by macrophages of P. mirabilis at a sublethal copper level. However, bacterial biofilm formation and resistance to oxidative stress were enhanced under the same copper level. Of note, the presence of copper led to increased ciprofloxacin MIC and more persister cell formation against ampicillin. In addition, the presence of copper altered the outer membrane protein profile and triggered expression of RcsB response regulator. For the first time, we unveiled the pleiotropic effects of copper on uropathogenic P. mirabilis, especially for induction of bacterial two-component signaling system regulating fitness and virulence. The finding of copper-mediated virulence and fitness reinforced the importance of copper for prevention and therapeutic interventions against P. mirabilis infections. As such, this study could facilitate the copper-based strategies against UTI by P. mirabilis.
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