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Updated: Aug 31, 2026

Invasion of Human Cells by a Bacterial Pathogen
Published on: March 21, 2011
M1 protein triggers a phosphoinositide cascade for group A Streptococcus invasion of epithelial cells
Sai Sudha Purushothaman1, Beinan Wang, P Patrick Cleary
1Department of Microbiology, University of Minnesota, 420 Delaweare Street SE, Minneapolis, MN 55455, USA.
Abstract:
Invasion of nonphagocytic cells by bacteria provides a favorable niche for persistence and evasion of host defenses and antibiotics. M protein is a major virulence factor because it promotes high-frequency invasion of epithelial cells by group A Streptococcus (GAS) and also renders the bacterium resistant to phagocytosis. In this study, we investigated the role of M1 protein from serotype M1 strain 90-226 in regulating mammalian signal transduction and cytoskeletal rearrangement for bacterial entry. LY294002 and wortmannin, which are inhibitors of phosphatidylinositol 3-kinase (PI 3-K) blocked invasion of epithelial cells by GAS by 75 and 80%, respectively, but failed to inhibit invasion by Salmonella enterica serovar Typhimurium. Also, epithelial cells transiently transfected with dominant negative p85 and p110 genes, the regulatory and catalytic subunits of PI 3-K, respectively, were less able to be invaded by GAS. To separate the influence of other streptococcal virulence factors from M protein, Lactococcus lactis was engineered to express M1 protein on its surface. L. lactis(pLM1) invaded epithelial cells efficiently in vitro, and PI 3-K inhibitors blocked 90% of this invasion. Purified soluble M1 protein stimulated the formation of stress fibers and actin tuffs on epithelial cells. LY294002 and wortmannin inhibited these cellular changes. A phosphoinositide analogue also inhibited the invasion of epithelial cells by GAS. Therefore, M1 protein, either directly or via bound fibronectin, initiates signals that depend on the lipid kinase PI 3-K pathway, which paves the way for cytoskeletal rearrangement that internalize the bacterium.
Insights
Group A Streptococcus (GAS) uses M1 protein to invade host cells. This invasion relies on the phosphatidylinositol 3-kinase (PI 3-K) pathway, which triggers cytoskeletal changes for bacterial entry.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Bacterial invasion of nonphagocytic cells aids pathogen survival and immune evasion.
- M protein is a key virulence factor for Group A Streptococcus (GAS), promoting epithelial cell invasion and resisting phagocytosis.
Purpose of the Study:
- To investigate the role of M1 protein in regulating mammalian signal transduction and cytoskeletal rearrangement for GAS entry.
- To elucidate the specific molecular pathways involved in M1 protein-mediated bacterial invasion.
Main Methods:
- Utilized PI 3-K inhibitors (LY294002, wortmannin) to assess their effect on GAS invasion.
- Employed gene silencing techniques with dominant-negative PI 3-K subunits (p85, p110).
- Engineered Lactococcus lactis to express M1 protein for targeted invasion studies and used purified M1 protein to analyze cellular effects.
Main Results:
- PI 3-K inhibitors significantly blocked GAS invasion of epithelial cells (75-80%), but not Salmonella enterica serovar Typhimurium invasion.
- Suppression of PI 3-K subunits reduced GAS invasion efficiency.
- M1 protein expression on L. lactis facilitated efficient invasion, which was inhibited by PI 3-K inhibitors (90%).
- Purified M1 protein induced stress fiber and actin tuff formation, dependent on PI 3-K signaling.
Conclusions:
- M1 protein initiates signaling cascades dependent on the PI 3-K pathway for GAS internalization.
- This pathway is crucial for M1 protein-mediated cytoskeletal rearrangement, facilitating bacterial entry into host cells.
- M1 protein's interaction, potentially via fibronectin, activates PI 3-K, leading to bacterial invasion.
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