A1 is induced by pathogen ligands to limit myeloid cell death and NLRP3 inflammasome activation

Author:

Speir Mary12,Tye Hazel12,Gottschalk Timothy A12ORCID,Simpson Daniel S34ORCID,Djajawi Tirta M12,Deo Pankaj5,Ambrose Rebecca L12,Conos Stephanie A12ORCID,Emery Jack12,Abraham Gilu5,Pascoe Ashlyn12,Hughes Sebastian A3ORCID,Weir Ashley34ORCID,Hawkins Edwin D34,Kong Isabella34,Herold Marco J34ORCID,Pearson Jaclyn S126ORCID,Lalaoui Najoua34,Naderer Thomas5ORCID,Vince James E34ORCID,Lawlor Kate E1234ORCID

Affiliation:

1. Centre for Innate Immunity and Infectious Diseases Hudson Institute of Medical Research Clayton VIC Australia

2. Department of Molecular and Translational Science Monash University Clayton VIC Australia

3. The Walter and Eliza Hall Institute of Medical Research Parkville VIC Australia

4. Department of Medical Biology University of Melbourne Parkville VIC Australia

5. Department of Biochemistry and Molecular Biology, Monash Biomedicine Discovery Institute Monash University Clayton VIC Australia

6. Department of Microbiology Monash University Clayton VIC Australia

Abstract

AbstractProgrammed cell death pathways play an important role in innate immune responses to infection. Activation of intrinsic apoptosis promotes infected cell clearance; however, comparatively little is known about how this mode of cell death is regulated during infections and whether it can induce inflammation. Here, we identify that the pro‐survival BCL‐2 family member, A1, controls activation of the essential intrinsic apoptotic effectors BAX/BAK in macrophages and monocytes following bacterial lipopolysaccharide (LPS) sensing. We show that, due to its tight transcriptional and post‐translational regulation, A1 acts as a molecular rheostat to regulate BAX/BAK‐dependent apoptosis and the subsequent NLRP3 inflammasome‐dependent and inflammasome‐independent maturation of the inflammatory cytokine IL‐1β. Furthermore, induction of A1 expression in inflammatory monocytes limits cell death modalities and IL‐1β activation triggered by Neisseria gonorrhoeae‐derived outer membrane vesicles (NOMVs). Consequently, A1‐deficient mice exhibit heightened IL‐1β production in response to NOMV injection. These findings reveal that bacteria can induce A1 expression to delay myeloid cell death and inflammatory responses, which has implications for the development of host‐directed antimicrobial therapeutics.

Funder

National Health and Medical Research Council

Leukemia and Lymphoma Society

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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