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锌的获取及其对毒力的贡献。

Zinc acquisition and its contribution to virulence.

机构信息

Department of Microbiology and Immunology, The Peter Doherty Institute for Infection and Immunity, University of Melbourne, Melbourne, VIC, Australia.

Department of Biochemistry, University of Toronto, Toronto, ON, Canada.

出版信息

Front Cell Infect Microbiol. 2024 Jan 5;13:1322973. doi: 10.3389/fcimb.2023.1322973. eCollection 2023.

Abstract

is a World Health Organization priority pathogen and a significant clinical concern for infections of the respiratory and urinary tracts due to widespread and increasing resistance to antimicrobials. In the absence of a vaccine, there is an urgent need to identify novel targets for therapeutic development. Bacterial pathogens, including , require the -block metal ion zinc as an essential micronutrient, which serves as a cofactor for ~6% of the proteome. During infection, zinc acquisition necessitates the use of high affinity uptake systems to overcome niche-specific zinc limitation and host-mediated nutritional immunity. Here, we report the identification of ZnuCBA and ZniCBA, two ATP-binding cassette permeases that are highly conserved in species and contribute to AJ218 zinc homeostasis, and the high-resolution structure of the zinc-recruiting solute-binding protein ZniA. The Znu and Zni permeases appear functionally redundant with abrogation of both systems required to reduce zinc accumulation. Disruption of both systems also exerted pleiotropic effects on the homeostasis of other -block elements. Zinc limitation perturbed cell morphology and compromised resistance to stressors, such as salt and oxidative stress. The mutant strain lacking both systems showed significantly impaired virulence in acute lung infection models, highlighting the necessity of zinc acquisition in the virulence and pathogenicity of .

摘要

是世界卫生组织的优先病原体,由于对抗生素的广泛且不断增加的耐药性,它是呼吸道和泌尿道感染的重要临床关注点。由于缺乏疫苗,迫切需要为治疗开发确定新的靶标。包括 在内的细菌病原体需要 - 族金属离子锌作为必需的微量营养素,它是约 6%的蛋白质组的辅助因子。在感染过程中,锌的获取需要使用高亲和力摄取系统来克服特定小生境的锌限制和宿主介导的营养免疫。在这里,我们报告了 ZnuCBA 和 ZniCBA 的鉴定,这两种 ATP 结合盒渗透物在 物种中高度保守,有助于 AJ218 的锌动态平衡,以及锌招募溶质结合蛋白 ZniA 的高分辨率结构。Znu 和 Zni 渗透物似乎在功能上是冗余的,因为需要破坏两个系统才能减少 锌积累。两个系统的破坏也对其他 - 族元素的动态平衡产生了多效性影响。锌限制破坏了 细胞形态并损害了对盐和氧化应激等应激源的抵抗力。缺乏这两个系统的突变株在急性肺感染模型中的毒力显著降低,突出了锌获取在 的毒力和致病性中的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0b9/10797113/bc8e3ef37d2b/fcimb-13-1322973-g001.jpg

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