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Author Spotlight: Flow Cytometric Determination of Pyroptosis in Avian Cells
Published on: May 31, 2024
ATP induces caspase-3/gasdermin E-mediated pyroptosis in NLRP3 pathway-blocked murine macrophages
Chen-Ying Zeng1, Chen-Guang Li1, Jun-Xiang Shu1
1Department of Immunobiology, College of Life Science and Technology, Jinan University, Guangzhou, China.
Abstract:
ATP acts as a canonical activator to induce NLRP3 (NOD-like receptor family, pyrin domain containing 3) inflammasome activation in macrophages, leading to caspase-1/gasdermin D (GSDMD)-mediated pyroptosis. It remains unclear whether ATP can induce pyroptosis in macrophages when the NLRP3 pathway is blocked by pathogenic infection. In this study, we used cellular models to mimic such blockade of NLRP3 activation: bone marrow-derived macrophages (BMDMs) treated with NLRP3-specific inhibitor MCC950 and RAW264.7 cells deficient in ASC (apoptosis-associated speck-like protein containing a caspase recruitment domain) expression. The results showed that ATP treatment induced lytic cell death morphologically resembling canonical pyroptosis in both MCC950-treated BMDMs and RAW264.7 cells, but did not cause the activation of caspase-1 (by detecting caspase-1p10 and mature interleukin-1β) and cleavage of GSDMD. Instead, both apoptotic initiator (caspase-8 and -9) and executioner (caspase-3 and -7) caspases were evidently activated and gasdermin E (GSDME) was cleaved to generate its N-terminal fragment (GSDME-NT) which executes pyroptosis. The GSDME-NT production and lytic cell death induced by ATP were diminished by caspase-3 inhibitor. In BMDMs without MCC950 treatment, ATP induced the formation of ASC specks which were co-localized with caspase-8; with MCC950 treatment, however, ATP did not induced the formation of ASC specks. In RAW264.7 cells, knockdown of GSDME by small interfering RNA attenuated ATP-induced lytic cell death and HMGB1 release into culture supernatants. Collectively, our results indicate that ATP induces pyroptosis in macrophages through the caspase-3/GSDME axis when the canonical NLRP3 pathway is blocked, suggestive of an alternative mechanism for combating against pathogen evasion.
Insights
ATP induces pyroptosis in macrophages via the caspase-3/GSDME pathway when NLRP3 inflammasome is blocked. This alternative mechanism bypasses canonical activation, offering a defense against pathogen evasion.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- ATP is a canonical activator of the NOD-like receptor family, pyrin domain containing 3 (NLRP3) inflammasome in macrophages, triggering pyroptosis.
- The role of ATP in inducing pyroptosis when the NLRP3 pathway is inhibited, such as during pathogenic infection, remains unclear.
Purpose of the Study:
- To investigate the mechanism of ATP-induced pyroptosis in macrophages when the NLRP3 inflammasome pathway is blocked.
- To identify alternative pathways involved in ATP-mediated cell death under NLRP3 inhibition.
Main Methods:
- Utilized cellular models including bone marrow-derived macrophages (BMDMs) treated with MCC950 (NLRP3 inhibitor) and RAW264.7 cells deficient in ASC.
- Assessed caspase activation (caspase-1, -3, -7, -8, -9), gasdermin cleavage (GSDMD, GSDME), and lytic cell death.
- Employed small interfering RNA (siRNA) for GSDME knockdown and caspase-3 inhibition.
Main Results:
- ATP induced lytic cell death resembling pyroptosis in NLRP3-inhibited macrophages, but without caspase-1 activation or GSDMD cleavage.
- Apoptotic caspases (-8, -9, -3, -7) were activated, and gasdermin E (GSDME) was cleaved, leading to pyroptosis execution.
- ATP-induced lytic cell death and GSDME cleavage were dependent on caspase-3 activity and GSDME expression.
Conclusions:
- ATP triggers pyroptosis in macrophages through an alternative caspase-3/GSDME axis when the canonical NLRP3 pathway is blocked.
- This caspase-3/GSDME pathway represents a distinct mechanism for macrophage pyroptosis, potentially serving as a defense against pathogen evasion strategies that target NLRP3.
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