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Published on: October 30, 2016
Phenol soluble modulin (PSM) variants of community-associated methicillin-resistant Staphylococcus aureus (MRSA)
David J Gonzalez1, Lisa Vuong, Isaiah S Gonzalez
1Department of Pediatrics.
Abstract:
Molecular genetic analysis indicates that the problematic human bacterial pathogen methicillin-resistant Staphylococcus aureus possesses more than 2000 open reading frames in its genome. This number of potential gene products, coupled with intrinsic mechanisms of posttranslational modification, endows methicillin-resistant Staphylococcus aureus with a highly complex biochemical repertoire. Recent proteomic and metabolomic advances have provided methodologies to better understand and characterize the biosynthetic factors released by microbial organisms. Here, the emerging tool of mass spectrometry-based molecular networking was used to visualize and map the repertoire of biosynthetic factors produced by a community-associated methicillin-resistant Staphylococcus aureus strain representative of the epidemic USA300 clone. In particular, the study focused on elucidating the complexity of the recently discovered phenol soluble modulin family of peptides when placed under various antibiotic treatment stresses. Novel PSM truncated variant peptides were captured, and the type of variants that were clustered by the molecular networks platform changed in response to the different antibiotic treatment conditions. After discovery, a group of the peptides were selected for functional analysis in vitro. The peptides displayed bioactive properties including the ability to induce proinflammatory responses in human THP-1 monocytes. Additionally, the tested peptides did not display antimicrobial activity as previously reported for other phenol soluble modulin truncated variants. Our findings reveal that the PSM family of peptides are quite structurally diverse, and suggest a single phenol soluble modulin parent peptide can functionally spawn differential bioactivities in response to various external stimuli.
Insights
Methicillin-resistant Staphylococcus aureus (MRSA) produces diverse phenol soluble modulin (PSM) peptides. Antibiotic stress alters PSM variants, which can induce inflammatory responses but lack antimicrobial activity.
Area of Science:
- Microbiology
- Molecular Biology
- Proteomics
Background:
- Methicillin-resistant Staphylococcus aureus (MRSA) is a significant human pathogen with a complex genome.
- Understanding MRSA's secreted factors is crucial for combating its pathogenicity.
- Phenol soluble modulin (PSM) peptides are a recently discovered class of MRSA virulence factors.
Purpose of the Study:
- To investigate the structural diversity and bioactivity of PSM peptides produced by MRSA USA300.
- To determine how antibiotic treatment affects the repertoire of PSM variants.
- To functionally characterize novel PSM variants.
Main Methods:
- Mass spectrometry-based molecular networking was employed to map MRSA's secreted factors.
- A community-associated MRSA strain (USA300) was cultured under various antibiotic stresses.
- Novel PSM variants were identified and selected for in vitro functional analysis.
Main Results:
- Molecular networking revealed a complex and dynamic repertoire of PSM peptides.
- Antibiotic treatment induced changes in the types of PSM variants produced.
- Identified PSM peptides induced proinflammatory responses in human monocytes but showed no antimicrobial activity.
Conclusions:
- The PSM peptide family exhibits significant structural diversity.
- External stimuli, such as antibiotic stress, can modulate PSM structure and function.
- PSM peptides may play a role in MRSA-host interactions beyond direct antimicrobial effects.
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