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PMID: 23404401 Published · epublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Inflammasome components coordinate autophagy and pyroptosis as macrophage responses to infection.

mBio ·Vol. 4 ·No. 1 ·2013-02-12 ·Pages e00620-12

Byrne BG, Dubuisson JF, Joshi AD, Persson JJ, Swanson MS

Abstract

When microbes contaminate the macrophage cytoplasm, leukocytes undergo a proinflammatory death that is initiated by nucleotide-binding-domain-, leucine-rich-repeat-containing proteins (NLR proteins) that bind and activate caspase-1. We report that these inflammasome components also regulate autophagy, a vesicular pathway to eliminate cytosolic debris. In response to infection with flagellate Legionella pneumophila, C57BL/6J mouse macrophages equipped with caspase-1 and the NLR proteins NAIP5 and NLRC4 stimulated autophagosome turnover. A second trigger of inflammasome assembly, K(+) efflux, also rapidly activated autophagy in macrophages that produced caspase-1. Autophagy protects infected macrophages from pyroptosis, since caspase-1-dependent cell death occurred more frequently when autophagy was dampened pharmacologically by either 3-methyladenine or an inhibitor of the Atg4 protease. Accordingly, in addition to coordinating pyroptosis, both (pro-) caspase-1 protein and NLR components of inflammasomes equip macrophages to recruit autophagy, a disposal pathway that raises the threshold of contaminants necessary to trigger proinflammatory leukocyte death. An exciting development in the innate-immunity field is the recognition that macrophages enlist autophagy to protect their cytoplasm from infection. Nutrient deprivation has long been known to induce autophagy; how infection triggers this disposal pathway is an active area of research. Autophagy is encountered by many of the intracellular pathogens that are known to trigger pyroptosis, an inflammatory cell death initiated when nucleotide-binding-domain-, leucine-rich-repeat-containing proteins (NLR proteins) activate caspase-1 within inflammasome complexes. Therefore, we tested the hypothesis that NLR proteins and caspase-1 also coordinate autophagy as a barrier to cytosolic infection. By exploiting classical bacterial and mouse genetics and kinetic assays of autophagy, we demonstrate for the first time that, when confronted with cytosolic contamination, primary mouse macrophages rely not only on the NLR proteins NAIP5 and NLRC4 but also on (pro-)caspase-1 protein to mount a rapid autophagic response that wards off proinflammatory cell death.

MeSH Terms
Animals Apoptosis Regulatory Proteins/metabolism Autophagy Calcium-Binding Proteins/metabolism Caspase 1/metabolism Female Inflammasomes/metabolism Legionella pneumophila/immunology Macrophages/immunology Mice Mice, Inbred C57BL Neuronal Apoptosis-Inhibitory Protein/metabolism
Chemicals
Apoptosis Regulatory Proteins Calcium-Binding Proteins Inflammasomes Ipaf protein, mouse Naip5 protein, mouse Neuronal Apoptosis-Inhibitory Protein Caspase 1
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Byrne Brenda G
Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan, USA.
Dubuisson Jean-Francois
Joshi Amrita D
Persson Jenny J
Swanson Michele S
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Article Info
Journal
mBio
Abbr.
mBio
ISSN
2150-7511
Published
2013-02-12
Epub
2013-00-12
Pages
e00620-12
Language
English
Region
United States
NLM ID
101519231
PMCID
PMC3573666
Subset
IM
Grants
NIAID NIH HHS · R56 AI076300 · United States
NIAID NIH HHS · R56 AI076300-01 · United States
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