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Updated: Jan 24, 2026

Development and Assessment of Intracellular Infection Models for Staphylococcus aureus
Published on: January 17, 2025
Staphylococcus aureus adhesion in endovascular infections is controlled by the ArlRS-MgrA signaling cascade
Jakub M Kwiecinski1, Heidi A Crosby1, Claire Valotteau2
1Department of Immunology and Microbiology, University of Colorado School of Medicine, Aurora, Colorado, United States of America.
Abstract:
Staphylococcus aureus is a leading cause of endovascular infections. This bacterial pathogen uses a diverse array of surface adhesins to clump in blood and adhere to vessel walls, leading to endothelial damage, development of intravascular vegetations and secondary infectious foci, and overall disease progression. In this work, we describe a novel strategy used by S. aureus to control adhesion and clumping through activity of the ArlRS two-component regulatory system, and its downstream effector MgrA. Utilizing a combination of in vitro cellular assays, and single-cell atomic force microscopy, we demonstrated that inactivation of this ArlRS-MgrA cascade inhibits S. aureus adhesion to a vast array of relevant host molecules (fibrinogen, fibronectin, von Willebrand factor, collagen), its clumping with fibrinogen, and its attachment to human endothelial cells and vascular structures. This impact on S. aureus adhesion was apparent in low shear environments, and in physiological levels of shear stress, as well as in vivo in mouse models. These effects were likely mediated by the de-repression of giant surface proteins Ebh, SraP, and SasG, caused by inactivation of the ArlRS-MgrA cascade. In our in vitro assays, these giant proteins collectively shielded the function of other surface adhesins and impaired their binding to cognate ligands. Finally, we demonstrated that the ArlRS-MgrA regulatory cascade is a druggable target through the identification of a small-molecule inhibitor of ArlRS signaling. Our findings suggest a novel approach for the pharmacological treatment and prevention of S. aureus endovascular infections through targeting the ArlRS-MgrA regulatory system.
Insights
Staphylococcus aureus adhesion and clumping in blood are controlled by the ArlRS-MgrA system. Targeting this system offers a novel strategy for treating endovascular infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Molecular Biology
Background:
- Staphylococcus aureus is a major cause of endovascular infections.
- Bacterial adhesion and clumping contribute to disease progression.
- Surface adhesins play a critical role in S. aureus pathogenesis.
Purpose of the Study:
- To investigate the role of the ArlRS-MgrA regulatory system in S. aureus adhesion and clumping.
- To identify novel therapeutic targets for S. aureus endovascular infections.
Main Methods:
- In vitro cellular assays
- Single-cell atomic force microscopy
- In vivo mouse models
Main Results:
- Inactivation of the ArlRS-MgrA cascade significantly inhibited S. aureus adhesion to host molecules and endothelial cells.
- The ArlRS-MgrA system regulates the expression of giant surface proteins (Ebh, SraP, SasG) that mediate adhesion.
- A small-molecule inhibitor of ArlRS signaling was identified, demonstrating the target's druggability.
Conclusions:
- The ArlRS-MgrA regulatory system is a key regulator of S. aureus adhesion and clumping.
- Targeting the ArlRS-MgrA pathway presents a promising therapeutic strategy for S. aureus endovascular infections.
- Pharmacological inhibition of ArlRS signaling could prevent and treat these infections.
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