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在宿主体内存活:生理相关条件下生长所必需的微生物代谢基因。

Surviving the host: Microbial metabolic genes required for growth of in physiologically-relevant conditions.

作者信息

Belanger Corrie R, Dostert Melanie, Blimkie Travis M, Lee Amy Huei-Yi, Dhillon Bhavjinder Kaur, Wu Bing Catherine, Akhoundsadegh Noushin, Rahanjam Negin, Castillo-Arnemann Javier, Falsafi Reza, Pletzer Daniel, Haney Cara H, Hancock Robert E W

机构信息

Centre for Microbial Diseases and Immunity Research, Department of Microbiology and Immunology, University of British Columbia, Vancouver, BC, Canada.

Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC, Canada.

出版信息

Front Microbiol. 2022 Nov 25;13:1055512. doi: 10.3389/fmicb.2022.1055512. eCollection 2022.

Abstract

like other pathogens, adapts to the limiting nutritional environment of the host by altering patterns of gene expression and utilizing alternative pathways required for survival. Understanding the genes essential for survival in the host gives insight into pathways that this organism requires during infection and has the potential to identify better ways to treat infections. Here, we used a saturated transposon insertion mutant pool of strain PAO1 and transposon insertion sequencing (Tn-Seq), to identify genes conditionally important for survival under conditions mimicking the environment of a nosocomial infection. Conditions tested included tissue culture medium with and without human serum, a murine abscess model, and a human skin organoid model. Genes known to be upregulated during infections, as well as those involved in nucleotide metabolism, and cobalamin (vitamin B) biosynthesis, etc., were required for survival - and in host mimicking conditions, but not in nutrient rich lab medium, Mueller Hinton broth (MHB). Correspondingly, mutants in genes encoding proteins of nucleotide and cobalamin metabolism pathways were shown to have growth defects under physiologically-relevant media conditions, like models, and were downregulated in expression under these conditions, when compared to MHB. This study provides evidence for the relevance of studying fitness in physiologically-relevant host mimicking conditions and identified metabolic pathways that represent potential novel targets for alternative therapies.

摘要

与其他病原体一样,它通过改变基因表达模式并利用生存所需的替代途径来适应宿主有限的营养环境。了解在宿主体内存活所必需的基因有助于深入了解该生物体在感染过程中所需的途径,并有可能找到更好的治疗感染的方法。在这里,我们使用了菌株PAO1的饱和转座子插入突变体库和转座子插入测序(Tn-Seq),以鉴定在模拟医院感染环境的条件下对生存有条件重要的基因。测试的条件包括含和不含人血清的组织培养基、小鼠脓肿模型和人皮肤类器官模型。已知在感染期间上调的基因,以及参与核苷酸代谢和钴胺素(维生素B)生物合成等的基因,在模拟宿主条件下生存是必需的,但在营养丰富的实验室培养基穆勒-欣顿肉汤(MHB)中则不是。相应地,编码核苷酸和钴胺素代谢途径蛋白质的基因中的突变体在生理相关培养基条件下,如模型中,显示出生长缺陷,并且与MHB相比,在这些条件下表达下调。这项研究为在生理相关的模拟宿主条件下研究适应性的相关性提供了证据,并确定了代表替代疗法潜在新靶点的代谢途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a54/9732424/f771c68b3d26/fmicb-13-1055512-g001.jpg

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