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Modulating Kinetics of the Amyloid-Like Aggregation of S. aureus Phenol-Soluble Modulins by Changes in pH
Masihuz Zaman1, Maria Andreasen1
1Department of Biomedicine, Aarhus University, 8000 Aarhus, Denmark.
Abstract:
The pathogen Staphylococcus aureus is recognized as one of the most frequent causes of biofilm-associated infections. The recently identified phenol-soluble modulin (PSM) peptides act as the key molecular effectors of staphylococcal biofilm maturation and promote the formation of an aggregated fibril structure. The aim of this study was to evaluate the effect of various pH values on the formation of functional amyloids of individual PSM peptides. Here, we combined a range of biophysical, chemical kinetics and microscopic techniques to address the structure and aggregation mechanism of individual PSMs under different conditions. We established that there is a pH-induced switch in PSM aggregation kinetics. Different lag times and growth of fibrils were observed, which indicates that there was no clear correlation between the rates of fibril elongation among different PSMs. This finding confirms that pH can modulate the aggregation properties of these peptides and suggest a deeper understanding of the formation of aggregates, which represents an important basis for strategies to interfere and might help in reducing the risk of biofilm-related infections.
Insights
The study reveals pH significantly impacts Staphylococcus aureus phenol-soluble modulin (PSM) peptide aggregation. This pH-induced switch in PSM amyloid formation is crucial for understanding and potentially combating biofilm infections.
Area of Science:
- Microbiology
- Biochemistry
- Biophysics
Background:
- Staphylococcus aureus is a major cause of biofilm-associated infections.
- Phenol-soluble modulin (PSM) peptides are key effectors in staphylococcal biofilm maturation, promoting fibril formation.
Purpose of the Study:
- To investigate the influence of pH on the formation of functional amyloids by individual PSM peptides.
- To elucidate the aggregation mechanism of PSMs under varying pH conditions.
Main Methods:
- Utilized a combination of biophysical techniques.
- Employed chemical kinetics analysis.
- Performed microscopic imaging to study PSM structure and aggregation.
Main Results:
- A pH-induced switch in PSM aggregation kinetics was identified.
- Observed varied lag times and fibril growth rates among different PSMs.
- No direct correlation was found between fibril elongation rates across different PSMs.
Conclusions:
- pH modulates the aggregation properties of PSM peptides.
- Understanding pH-dependent aggregation is vital for developing strategies against staphylococcal biofilms.
- This research provides a basis for interfering with biofilm formation to reduce infection risk.
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