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December 10, 2025Nature Communications8 citationsOpen Access

Systematic identification of bacterial factors driving Staphylococcus aureus intracellular lifestyle in non-professional phagocytes

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ILInes Rodrigues LopesLALaura Maria AlcântaraMLMarı́a López-Bravo

Key Points

  • This research aims to systematically identify bacterial factors that influence the intracellular lifestyle of Staphylococcus aureus in non-professional phagocytes.
  • Screened 1920 S. aureus mutants using the Nebraska Transposon Mutant Library
  • Infection assessments conducted on epithelial cells over five timepoints (0.5 to 48 hours)
  • Identified 73 bacterial factors modulating S. aureus intracellularity
  • Characterized PncA as a novel regulator of the agr system via redox state modulation
  • Most identified factors have not been linked to S. aureus intracellular lifestyle before
  • Findings highlight the implications for new antimicrobial strategies targeting intracellular S. aureus

Abstract

Abstract Staphylococcus aureus is a major human pathogen responsible for severe infections. While traditionally described as extracellular, increasing evidence establishes S. aureus as a facultative intracellular pathogen. Intracellularity contributes to immune evasion, dissemination, and antibiotic failure. To identify bacterial factors critical for S. aureus invasion, intracellular replication, persistence, and host cytotoxicity, we screened a comprehensive collection of 1920 S. aureus mutants (Nebraska Transposon Mutant Library) in epithelial cells across five timepoints (0.5 to 48 hours post-infection). We identified 73 bacterial factors strongly modulating S. aureus intracellularity, including mutants displaying multiple phenotypes. Most of these factors have not been linked to intracellular lifestyle. Among these, we characterized the nicotinamidase PncA as a novel regulator of the agr system via redox state modulation, strongly impacting virulence. This study provides a systematic analysis of S. aureus factors critical for intracellular lifestyle, with implications for the development of antimicrobial strategies targeting this resilient bacterial population.

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Cite This Study

Lopes et al. (2025) studied this question.

synapsesocial.com/papers/69401b312d562116f28f7bdehttps://doi.org/10.1038/s41467-025-66373-9
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