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The two-component system CroRS acts as a master regulator of cell envelope homeostasis to confer antimicrobial tolerance in the bacterial pathogen Enterococcus faecalis. | LitMetric

AI Article Synopsis

  • - Antimicrobial tolerance allows microbes to survive without growing during exposure to antimicrobial agents and may lead to actual resistance; the CroRS two-component system in Enterococcus faecalis is crucial for this tolerance to drugs like teixobactin.
  • - RNA-seq analysis revealed a 132-gene CroRS regulon that helps in upregulating the production of essential cell envelope components in response to antimicrobials, suggesting CroRS plays a vital role in maintaining the structural integrity of the bacterial envelope under stress.
  • - Experimental evolution showed that a mutation affecting isoprenoid biosynthesis can restore antimicrobial tolerance in a CroRS mutant, supporting the idea that CroRS acts as a master regulator linking cell envelope biogenesis

Article Abstract

Antimicrobial tolerance is the ability of a microbial population to survive, but not proliferate, during antimicrobial exposure. Significantly, it has been shown to precede the development of bona fide antimicrobial resistance. We have previously identified the two-component system CroRS as a critical regulator of tolerance to antimicrobials like teixobactin in the bacterial pathogen Enterococcus faecalis. To understand the molecular mechanism of this tolerance, we have carried out RNA-seq analyses in the E. faecalis wild-type and isogenic croRS mutant to determine the teixobactin-induced CroRS regulon. We identified a 132 gene CroRS regulon and demonstrate that CroRS upregulates biosynthesis of all major components of the enterococcal cell envelope in response to teixobactin. This suggests a coordinating role of this regulatory system in maintaining integrity of the multiple layers of the enterococcal envelope during antimicrobial stress, likely contributing to bacterial survival. Using experimental evolution, we observed that truncation of HppS, a key enzyme in the synthesis of the quinone electron carrier demethylmenaquinone, was sufficient to rescue tolerance in the croRS deletion strain. This highlights a key role for isoprenoid biosynthesis in antimicrobial tolerance in E. faecalis. Here, we propose a model of CroRS acting as a master regulator of cell envelope biogenesis and a gate-keeper between isoprenoid biosynthesis and respiration to ensure tolerance against antimicrobial challenge.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10952268PMC
http://dx.doi.org/10.1111/mmi.15128DOI Listing

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