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Published on: April 6, 2022
Autophagy contributes to caspase-independent macrophage cell death
Yue Xu1, Sung Ouk Kim, Yilei Li
1Department of Immunology, The Scripps Research Institute, La Jolla, California 92037, USA.
Abstract:
Macrophage cell death plays a role in many physiological and pathophysiological conditions. Previous work has shown that macrophages can undergo caspase-independent cell death, and this process is associated with Nur77 induction, which is involved in inducing chromatin condensation and DNA fragmentation. Here we show that autophagy is a cytosolic event that controls caspase-independent macrophage cell death. Autophagy was induced in macrophages treated with lipopolysaccharides (LPSs) and the pan-caspase inhibitor benzyloxycarbonyl-Val-Ala-Asp (Z-VAD), and the inhibition of autophagy by either chemical inhibitors or by the RNA interference knockdown of beclin (a protein required for autophagic body formation) inhibited caspase-independent macrophage cell death. We also found an increase in poly(ADP-ribose) (PAR) polymerase (PARP) activation and reactive oxygen species (ROS) production in LPS + Z-VAD-treated macrophages, and both are involved in caspase-independent macrophage cell death. We further determined that the formation of autophagic bodies in macrophages occurs downstream of PARP activation, and PARP activation occurs downstream of ROS production. Using macrophages in which receptor-interacting protein 1 (RIP1) was knocked down by small interfering RNA, and macrophages isolated from Toll/interleukin-1 receptor-domain-containing adaptor inducing IFN-beta (TRIF)-deficient mice, we found that TRIF and RIP1 function upstream of ROS production in LPS + Z-VAD-treated macrophages. We also found that Z-VAD inhibits LPS-induced RIP1 cleavage, which may contribute to ROS over-production in macrophages. This paper reveals that TRIF, RIP1, and ROS production, as well as PARP activation, are involved in inducing autophagy, which contributes to caspase-independent macrophage cell death.
Insights
Autophagy controls caspase-independent macrophage cell death. This process involves reactive oxygen species, PARP activation, TRIF, and RIP1, highlighting new pathways in cell death regulation.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Macrophage cell death is crucial in health and disease.
- Caspase-independent cell death in macrophages is linked to Nur77.
- Autophagy's role in this cell death pathway requires elucidation.
Purpose of the Study:
- To investigate the role of autophagy in caspase-independent macrophage cell death.
- To identify upstream regulators and signaling pathways involved.
Main Methods:
- Macrophage treatment with lipopolysaccharides (LPS) and a pan-caspase inhibitor (Z-VAD).
- Inhibition of autophagy using chemical agents and beclin knockdown.
- Assessment of poly(ADP-ribose) polymerase (PARP) activation and reactive oxygen species (ROS) production.
- Analysis of Toll/interleukin-1 receptor-domain-containing adaptor inducing IFN-beta (TRIF) and receptor-interacting protein 1 (RIP1) pathways.
Main Results:
- Autophagy was induced in LPS + Z-VAD-treated macrophages and is essential for caspase-independent cell death.
- Inhibition of autophagy blocked this cell death pathway.
- ROS production and PARP activation were identified as key mediators, occurring downstream of TRIF and RIP1.
- TRIF and RIP1 function upstream of ROS production, with Z-VAD affecting RIP1 cleavage.
Conclusions:
- Autophagy is a critical cytosolic event controlling caspase-independent macrophage cell death.
- The pathway involves TRIF, RIP1, ROS production, and PARP activation.
- Understanding this pathway offers insights into macrophage regulation in various conditions.
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