Département de biochimie, de microbiologie, et de bio-informatique, Faculté des sciences et de génie, Québec City, QC G1V 0A6, Canada.
Département de biochimie, de microbiologie, et de bio-informatique, Faculté des sciences et de génie, Québec City, QC G1V 0A6, Canada; Félix d'Hérelle Reference Center for Bacterial Viruses, Université Laval, Québec City, QC G1V 0A6, Canada.
Curr Opin Microbiol. 2024 Jun;79:102471. doi: 10.1016/j.mib.2024.102471. Epub 2024 Apr 3.
Bacterial pathogens can infect a wide range of hosts and pose a threat to public and animal health as well as to agriculture. The emergence of antibiotic-resistant strains has increased this risk by making the treatment of bacterial infections even more challenging. Pathogenic bacteria thrive in various ecological niches, but they can also be specifically targeted and killed by bacteriophages (phages). Lytic phages are now investigated and even used, in some cases, as alternatives or complements to antibiotics for preventing or treating bacterial infections (phage therapy). As such, it is key to identify factors responsible for phage specificity and efficiency. Here, we review recent advances in virulence-associated factors that are targeted by phages. We highlight components of the bacterial cell surface, effector systems, and motility structures exploited by phages and the effects of phages on cell aggregation and communication. We also look at the fitness trade-off of phage resistance.
细菌病原体可以感染广泛的宿主,对公共卫生和动物健康以及农业构成威胁。抗生素耐药菌株的出现增加了这种风险,使细菌感染的治疗更加具有挑战性。致病性细菌在各种生态位中繁殖,但它们也可以被噬菌体(噬菌体)特异性靶向和杀死。溶菌噬菌体现在正在被研究,在某些情况下,它们被用作抗生素的替代品或补充物,以预防或治疗细菌感染(噬菌体疗法)。因此,确定噬菌体特异性和效率的相关因素至关重要。在这里,我们综述了噬菌体靶向的与毒力相关的因素的最新进展。我们重点介绍了噬菌体利用的细菌细胞表面成分、效应系统和运动结构,以及噬菌体对细胞聚集和通讯的影响。我们还研究了噬菌体耐药性的适应度权衡。