Caspase‐8‐driven apoptotic and pyroptotic crosstalk causes cell death and IL‐1β release in X‐linked inhibitor of apoptosis (XIAP) deficiency

Author:

Hughes Sebastian A12ORCID,Lin Meng34ORCID,Weir Ashley12ORCID,Huang Bing3,Xiong Liya3,Chua Ngee Kiat12,Pang Jiyi12,Santavanond Jascinta P5ORCID,Tixeira Rochelle5,Doerflinger Marcel12ORCID,Deng Yexuan12,Yu Chien‐Hsiung12,Silke Natasha12,Conos Stephanie A67ORCID,Frank Daniel12,Simpson Daniel S12,Murphy James M12ORCID,Lawlor Kate E1267,Pearson Jaclyn S68,Silke John12ORCID,Pellegrini Marc12ORCID,Herold Marco J12ORCID,Poon Ivan K H5ORCID,Masters Seth L12ORCID,Li Mingsong9,Tang Qin10ORCID,Zhang Yuxia34ORCID,Rashidi Maryam12ORCID,Geng Lanlan34ORCID,Vince James E12ORCID

Affiliation:

1. The Walter and Eliza Hall Institute of Medical Research Parkville Vic Australia

2. The Department of Medical Biology University of Melbourne Parkville Vic Australia

3. Department of Gastroenterology Guangzhou Women and Children's Medical Center Guangzhou China

4. State Key Laboratory of Respiratory Medicine Guangzhou Medical University Guangzhou China

5. Department of Biochemistry and Genetics La Trobe Institute for Molecular Science, La Trobe University Melbourne Vic Australia

6. Centre for Innate Immunity and Infectious Diseases Hudson Institute of Medical Research Clayton Vic Australia

7. Department of Molecular and Translational Science Monash University Clayton Vic Australia

8. Department of Microbiology Monash University Clayton Vic Australia

9. Department of Gastroenterology The Third Affiliated Hospital of Guangzhou Medical University Guangzhou China

10. The First Affiliated hospital of Guangxi Medical University Nanning China

Abstract

AbstractGenetic lesions in X‐linked inhibitor of apoptosis (XIAP) pre‐dispose humans to cell death–associated inflammatory diseases, although the underlying mechanisms remain unclear. Here, we report that two patients with XIAP deficiency–associated inflammatory bowel disease display increased inflammatory IL‐1β maturation as well as cell death–associated caspase‐8 and Gasdermin D (GSDMD) processing in diseased tissue, which is reduced upon patient treatment. Loss of XIAP leads to caspase‐8‐driven cell death and bioactive IL‐1β release that is only abrogated by combined deletion of the apoptotic and pyroptotic cell death machinery. Namely, extrinsic apoptotic caspase‐8 promotes pyroptotic GSDMD processing that kills macrophages lacking both inflammasome and apoptosis signalling components (caspase‐1, ‐3, ‐7, ‐11 and BID), while caspase‐8 can still cause cell death in the absence of both GSDMD and GSDME when caspase‐3 and caspase‐7 are present. Neither caspase‐3 and caspase‐7‐mediated activation of the pannexin‐1 channel, or GSDMD loss, prevented NLRP3 inflammasome assembly and consequent caspase‐1 and IL‐1β maturation downstream of XIAP inhibition and caspase‐8 activation, even though the pannexin‐1 channel was required for NLRP3 triggering upon mitochondrial apoptosis. These findings uncouple the mechanisms of cell death and NLRP3 activation resulting from extrinsic and intrinsic apoptosis signalling, reveal how XIAP loss can co‐opt dual cell death programs, and uncover strategies for targeting the cell death and inflammatory pathways that result from XIAP deficiency.

Funder

National Health and Medical Research Council

Leukemia and Lymphoma Society

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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