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HlyF, an underestimated virulence factor of uropathogenic Escherichia coli

毒力 微生物学 生物 大肠杆菌 质粒 毒力因子 基因 细菌遗传学 遗传学
作者
Camille V. Chagneau,Delphine Payros,Audrey Goman,Cécile Goursat,Laure C. David,Miki Okuno,Pierre-Jean Bordignon,Carine Séguy,Clémence Massip,Priscilla Branchu,Yoshitoshi Ogura,Jean-Philippe Nougayrède,Marc S. Marenda,Éric Oswald
出处
期刊:Clinical Microbiology and Infection [Elsevier BV]
卷期号:29 (11): 1449.e1-1449.e9 被引量:1
标识
DOI:10.1016/j.cmi.2023.07.024
摘要

Objectives Urinary tract infections (UTIs) are primarily caused by uropathogenic Escherichia coli (UPEC). This study aims to elucidate the role of the virulence factor HlyF in the epidemiology and pathophysiology of UTIs and investigate the dissemination of plasmids carrying the hlyF gene. Methods An epidemiological analysis was conducted on a representative collection of 225 UPEC strains isolated from community-acquired infections. Selected hlyF+ strains were fully sequenced using a combination of Illumina and Nanopore technologies. To investigate the impact of HlyF, a murine model of UTI was utilized to compare clinical signs, bacterial loads in the bladder, kidney, and spleen, onset of bacteraemia, and inflammation through cytokine quantification among wild-type hlyF+ strains, isogenic mutants, and complemented mutants. Results Our findings demonstrate that 20% of UPEC encode the HlyF protein. These hlyF+ UPEC strains exhibited enhanced virulence, frequently leading to pyelonephritis accompanied by bloodstream infections. Unlike typical UPEC strains, hlyF+ UPEC strains demonstrate a broader phylogroup distribution and possess a unique array of virulence factors and antimicrobial resistance genes, primarily carried by ColV-like plasmids. In the murine UTI model, expression of HlyF was linked to the UPECs' capacity to induce urosepsis and elicit an exacerbated inflammatory response, setting them apart from typical UPEC strains. Discussion Overall, our results strongly support the notion that HlyF serves as a significant virulence factor for UPECs, and the dissemination of ColV-like plasmids encoding HlyF warrants further investigation.

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