4.6 Review

The Central Role of Redox-Regulated Switch Proteins in Bacteria

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmolb.2021.706039

关键词

thiol-switches; oxidative stress; redox-regulated proteins; Hsp33; metal induced oxidation; oxidative stress in prokaryotes

资金

  1. Israel Science Foundation [1765/13, 1537/18]
  2. Human Frontier Science program [CDA00064/2014]
  3. US-Israel Binational Science Foundation [2015056]
  4. Agence Nationale de la Recherche (ANR) [ANR-19-CE44-0018]
  5. Region PACA
  6. Israel Council of Higher Education

向作者/读者索取更多资源

Bacteria adapt to changing environments by utilizing protein switches to modulate their behavior and combat oxidative stress, with thiol switches and metal centers being primary targets of ROS. Cells use these reactive sites as sensors to detect and fight oxidative stress conditions, inducing gene expression for antioxidant strategies to protect the proteome against stress.
Bacteria possess the ability to adapt to changing environments. To enable this, cells use reversible post-translational modifications on key proteins to modulate their behavior, metabolism, defense mechanisms and adaptation of bacteria to stress. In this review, we focus on bacterial protein switches that are activated during exposure to oxidative stress. Such protein switches are triggered by either exogenous reactive oxygen species (ROS) or endogenous ROS generated as by-products of the aerobic lifestyle. Both thiol switches and metal centers have been shown to be the primary targets of ROS. Cells take advantage of such reactivity to use these reactive sites as redox sensors to detect and combat oxidative stress conditions. This in turn may induce expression of genes involved in antioxidant strategies and thus protect the proteome against stress conditions. We further describe the well-characterized mechanism of selected proteins that are regulated by redox switches. We highlight the diversity of mechanisms and functions (as well as common features) across different switches, while also presenting integrative methodologies used in discovering new members of this family. Finally, we point to future challenges in this field, both in uncovering new types of switches, as well as defining novel additional functions.

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