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Published on: September 2, 2014
The Hippo kinases MST1/2 integrate sterile and infectious signals to regulate macrophage cell death
Sydney M Quagliato1, Matthew Gulker1, Ryan Mirhosiny1
1Department of Biological Sciences, College of Liberal Arts and Sciences, Wayne State University, Detroit, Michigan, USA.
Abstract:
Mammalian STE20-like kinases MST1 and MST2 (mammalian STE20-like protein kinase-1/2) are the conserved Hippo kinases known for their importance in organ development and tumor suppression. Notably, humans and mice lacking these kinases have increased susceptibility to infection, indicating a role of MST1/2 in immunity. In macrophages that are critical immune cells in host defense, MST1/2 are proteolytically cleaved to coordinate different forms of programmed cell death, including apoptosis and pyroptosis. This cleavage event occurs when the innate immune sensors, inflammasomes, are activated by the bacterial pathogen, Legionella pneumophila, or damage-associated molecular patterns. In this report, we examine MST1/2 cleavage in macrophages under various inflammatory conditions and challenges with pathogenic bacteria. ATP and nigericin induce MST1/2 cleavage and apoptosis, while the NLRP3 inflammasome and gasdermin D (GSDMD)-mediated pyroptosis are activated. Remarkably, in conditions that do not support activation of NLRP3 or GSDMD, MST1/2 are still cleaved by caspases to promote cell death in macrophages treated with these molecules. During infection, WT macrophages trigger MST1/2 cleavage and apoptosis against L. pneumophila and Yersinia pseudotuberculosis but preferentially activate GSDMD-mediated pyroptosis against Pseudomonas aeruginosa. Interestingly, GSDMD KO macrophages opt to cleave MST1/2 and undergo apoptosis in response to P. aeruginosa, suggesting an interplay between GSDMD and MST1/2. Together, macrophages funnel apoptotic death signals through MST1/2 cleavage upon stimulation of the inflammatory molecules and pathogens, illustrating the broad implications of the host Hippo kinases in infections and inflammation.
Insights
Mammalian STE20-like kinases MST1/2 (Hippo kinases) are cleaved in macrophages to control cell death during infection. This cleavage coordinates apoptosis and pyroptosis, crucial for host defense against pathogens.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Mammalian STE20-like kinases MST1 and MST2 are Hippo kinases vital for organ development and tumor suppression.
- These kinases play a role in immunity, as their absence increases susceptibility to infection.
- In macrophages, MST1/2 cleavage coordinates apoptosis and pyroptosis upon inflammasome activation by pathogens or DAMPs.
Purpose of the Study:
- To investigate MST1/2 cleavage in macrophages under diverse inflammatory conditions and bacterial challenges.
- To elucidate the role of MST1/2 cleavage in different forms of programmed cell death.
- To explore the interplay between MST1/2 cleavage and inflammasome-mediated cell death pathways.
Main Methods:
- Macrophage cell cultures.
- Stimulation with inflammatory molecules (ATP, nigericin) and pathogenic bacteria (L. pneumophila, Y. pseudotuberculosis, P. aeruginosa).
- Analysis of MST1/2 cleavage, apoptosis, and pyroptosis (NLRP3, GSDMD activation).
- Use of wild-type and GSDMD knockout macrophages.
Main Results:
- ATP and nigericin induce MST1/2 cleavage, apoptosis, and NLRP3/GSDMD-mediated pyroptosis.
- MST1/2 are cleaved by caspases to promote cell death even without NLRP3 or GSDMD activation.
- Macrophages utilize MST1/2 cleavage for apoptosis against L. pneumophila and Y. pseudotuberculosis.
- GSDMD knockout macrophages switch to MST1/2 cleavage and apoptosis when challenged with P. aeruginosa.
Conclusions:
- Macrophage MST1/2 cleavage is a central mechanism coordinating cell death pathways in response to inflammatory stimuli and pathogens.
- MST1/2 cleavage contributes broadly to host defense by regulating apoptosis and pyroptosis.
- There is an interplay between GSDMD and MST1/2 in determining macrophage cell death fate during infection.
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