Src-dependent tyrosine-phosphorylation of NM2A has a protective role against bacterial pore-forming toxins
Cláudia Brito1,2,3, Francisco S Mesquita1, Joana M Pereira1,2,3
1i3S-Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto, Portugal.
Abstract:
Pore-forming toxins (PFTs) are key bacterial virulence factors that disrupt host plasma membrane (PM) integrity, triggering cellular stress and initiating repair mechanisms. The cytolysin Listeriolysin O (LLO), secreted by Listeria monocytogenes, has well established roles in infection, yet the host signaling responses to LLO-induced damage remain poorly understood. Here, we identify a previously unrecognized protective pathway in which LLO triggers rapid activation of the tyrosine kinase Src, leading to phosphorylation of the non-muscle myosin II heavy chain 2A (NMHC2A) at tyrosine 158. While Src activation and NMHC2A tyrosine phosphorylation have been observed during Listeria infection, we demonstrate here that both responses are directly driven by LLO. This phosphorylation event does not alter NMHC2A motor activity in vitro but is required for cytoskeletal reorganization and efficient responses to PM damage. Using Caenorhabditis elegans, we further show that phosphorylation of the NMHC2A homolog NMY-2 at the conserved tyrosine 163 is required for survival under PFT-induced stress and heat shock, revealing an evolutionarily conserved defense mechanism. Together, our findings establish Src-mediated NMHC2A phosphorylation as a critical link between PFT-induced PM damage sensing and actomyosin remodeling, advancing our understanding of host defense against bacterial toxins.
Insights
Bacterial pore-forming toxins (PFTs) trigger a protective host response. Listeriolysin O (LLO) activates Src kinase, phosphorylating NMHC2A to repair cell membrane damage.
Area of Science:
- Cellular biology
- Microbiology
- Immunology
Background:
- Pore-forming toxins (PFTs) are bacterial virulence factors that damage host cell membranes.
- Listeriolysin O (LLO) from Listeria monocytogenes causes such damage, but host responses are unclear.
Purpose of the Study:
- To investigate host signaling pathways activated by LLO-induced membrane damage.
- To identify protective mechanisms against PFTs.
Main Methods:
- Investigated Src kinase activation and NMHC2A phosphorylation in response to LLO.
- Utilized in vitro assays and Caenorhabditis elegans models.
Main Results:
- LLO directly activates Src kinase, leading to NMHC2A phosphorylation at Tyr158.
- This phosphorylation is crucial for cytoskeletal reorganization and membrane repair.
- Conserved phosphorylation in C. elegans (NMY-2 Tyr163) is vital for survival against PFTs and heat shock.
Conclusions:
- Src-mediated NMHC2A phosphorylation is a key host defense mechanism against PFTs.
- This pathway links toxin-induced membrane damage sensing to cellular repair processes.
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