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大肠杆菌对长期锌暴露的代谢适应性:对三羧酸循环和海藻糖合成的见解

Metabolic adaptations of Escherichia coli to extended zinc exposure: insights into tricarboxylic acid cycle and trehalose synthesis.

作者信息

Rihacek Martin, Kosaristanova Ludmila, Fialova Tatiana, Rypar Tomas, Sterbova Dagmar Skopalova, Adam Vojtech, Zurek Ludek, Cihalova Kristyna

机构信息

Department of Chemistry and Biochemistry, Mendel University in Brno, Zemedelska 1, Brno, CZ-613 00, Czech Republic.

出版信息

BMC Microbiol. 2024 Oct 1;24(1):384. doi: 10.1186/s12866-024-03463-6.

Abstract

Balanced bacterial metabolism is essential for cell homeostasis and growth and can be impacted by various stress factors. In particular, bacteria exposed to metals, including the nanoparticle form, can significantly alter their metabolic processes. It is known that the extensive and intensive use of food and feed supplements, including zinc, in human and animal nutrition alters the intestinal microbiota and this may negatively impact the health of the host. This study examines the effects of zinc (zinc oxide and zinc oxide nanoparticles) on key metabolic pathways of Escherichia coli. Transcriptomic and proteomic analyses along with quantification of intermediates of tricarboxylic acid (TCA) were employed to monitor and study the bacterial responses. Multi-omics analysis revealed that extended zinc exposure induced mainly oxidative stress and elevated expression/production of enzymes of carbohydrate metabolism, especially enzymes for synthesis of trehalose. After the zinc withdrawal, E. coli metabolism returned to a baseline state. These findings shed light on the alteration of TCA and on importance of trehalose synthesis in metal-induced stress and its broader implications for bacterial metabolism and defense and consequently for the balance and health of the human and animal microbiome.

摘要

平衡的细菌代谢对于细胞内稳态和生长至关重要,并且会受到各种应激因素的影响。特别是,暴露于金属(包括纳米颗粒形式)的细菌会显著改变其代谢过程。众所周知,在人类和动物营养中广泛且大量使用包括锌在内的食品和饲料补充剂会改变肠道微生物群,这可能会对宿主健康产生负面影响。本研究考察了锌(氧化锌和氧化锌纳米颗粒)对大肠杆菌关键代谢途径的影响。采用转录组学和蛋白质组学分析以及三羧酸(TCA)中间体的定量分析来监测和研究细菌的反应。多组学分析表明,长时间暴露于锌主要诱导氧化应激,并提高碳水化合物代谢酶的表达/产量,尤其是海藻糖合成酶。锌去除后,大肠杆菌代谢恢复到基线状态。这些发现揭示了三羧酸循环的改变以及海藻糖合成在金属诱导的应激中的重要性,及其对细菌代谢和防御的更广泛影响,进而对人类和动物微生物群的平衡与健康产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e9c/11443826/31d2f9511ca8/12866_2024_3463_Fig1_HTML.jpg

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