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[物种名称]中锌稳态网络的全局分析及其基因表达动态

Global Analysis of the Zinc Homeostasis Network in and Its Gene Expression Dynamics.

作者信息

Ducret Verena, Abdou Melina, Goncalves Milho Catarina, Leoni Sara, Martin-Pelaud Oriane, Sandoz Antoine, Segovia Campos Inés, Tercier-Waeber Mary-Lou, Valentini Martina, Perron Karl

机构信息

Microbiology Unit, Department of Botany and Plant Biology, University of Geneva, Geneva, Switzerland.

Department of Inorganic and Analytical Chemistry, University of Geneva, Geneva, Switzerland.

出版信息

Front Microbiol. 2021 Oct 8;12:739988. doi: 10.3389/fmicb.2021.739988. eCollection 2021.

Abstract

Zinc is one of the most important trace elements for life and its deficiency, like its excess, can be fatal. In the bacterial opportunistic pathogen , Zn homeostasis is not only required for survival, but also for virulence and antibiotic resistance. Thus, the bacterium possesses multiple Zn import/export/storage systems. In this work, we determine the expression dynamics of the entire Zn homeostasis network at both transcript and protein levels. Precisely, we followed the switch from a Zn-deficient environment, mimicking the initial immune strategy to counteract bacterial infections, to a Zn-rich environment, representing the phagocyte metal boost used to eliminate an engulfed pathogen. Thanks to the use of the NanoString technology, we timed the global silencing of Zn import systems and the orchestrated induction of Zn export systems. We show that the induction of Zn export systems is hierarchically organized as a function of their impact on Zn homeostasis. Moreover, we identify PA2807 as a novel Zn resistance component in and highlight new regulatory links among Zn-homeostasis systems. Altogether, this work unveils a sophisticated and adaptive homeostasis network, which complexity is key in determining a pathogen spread in the environment and during host-colonization.

摘要

锌是生命中最重要的微量元素之一,其缺乏与过量一样可能是致命的。在细菌机会性病原体中,锌稳态不仅是生存所必需的,也是毒力和抗生素抗性所必需的。因此,该细菌拥有多种锌导入/输出/储存系统。在这项工作中,我们在转录和蛋白质水平上确定了整个锌稳态网络的表达动态。具体而言,我们跟踪了从模拟对抗细菌感染的初始免疫策略的缺锌环境到代表用于消除被吞噬病原体的吞噬细胞金属增强的富锌环境的转变。由于使用了NanoString技术,我们确定了锌导入系统的全局沉默和锌输出系统的有序诱导的时间。我们表明,锌输出系统的诱导根据其对锌稳态的影响进行分层组织。此外,我们将PA2807鉴定为一种新的锌抗性成分,并突出了锌稳态系统之间的新调控联系。总之,这项工作揭示了一个复杂且适应性强的稳态网络,其复杂性是决定病原体在环境中以及宿主定殖期间传播的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c809/8531726/c16068c49703/fmicb-12-739988-g001.jpg

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