Coronavirus Nsp5‑mediated dual‑site cleavage of GSDMA modifies its antiviral and proinflammatory functions

Although Gasdermin A (GSDMA) drives inflammation by inducing pyroptosis, its specific role in antiviral defense remains unclear. Here we identify GSDMA as an immunomodulatory protein activated in response to coronavirus (CoV) infection. Specifically, CoV-encoded protease nsp5 cleaves GSDMA at two conserved glutamine sites, Q247 and Q187. Cleavage at Q247 liberates an active N-terminal fragment (GSDMA_1–247) that triggers pyroptosis, promotes inflammation, and restricts viral replication. In contrast, cleavage at the alternative site Q187 attenuates this function. Using Gsdma -/- mice, we show that GSDMA deficiency increases viral loads but reduces inflammation, tissue damage, and mortality upon infection. These findings suggest that disease severity is driven more by inflammation than by viral load. Our findings reveal a novel mechanism of antiviral immunity and inflammatory regulation via CoV nsp5-mediated dual cleavage of GSDMA, highlighting a potential target for combined antiviral and anti-inflammatory therapies.

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Publication Details

Journal
PLoS Pathogens
Published
2026-09-16
DOI
https://doi.org/10.1371/journal.ppat.1014602
Primary Topic
Inflammasome and immune disorders
Type
article
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article

Coronavirus Nsp5‑mediated dual‑site cleavage of GSDMA modifies its antiviral and proinflammatory functions

Xiangfei Xu, Guanning Su, Zhaoyu Lin, Liurong Fang et al.
PLoS Pathogens
Inflammasome and immune disorders
article

Coronavirus Nsp5‑mediated dual‑site cleavage of GSDMA modifies its antiviral and proinflammatory functions

Xiangfei Xu, Guanning Su, Zhaoyu Lin, Liurong Fang, Shaobo Xiao, Quangang Chen, Ankang Hu, Yanrong Zhou, Tong Ding, Yuchen Zhang, Xiang Gao, Yuanqing Wang, Chenyu Li, Shuai Li, Yuxi Zhao, Qi Su, Longfei Chen
article en

Abstract

Although Gasdermin A (GSDMA) drives inflammation by inducing pyroptosis, its specific role in antiviral defense remains unclear. Here we identify GSDMA as an immunomodulatory protein activated in response to coronavirus (CoV) infection. Specifically, CoV-encoded protease nsp5 cleaves GSDMA at two conserved glutamine sites, Q247 and Q187. Cleavage at Q247 liberates an active N-terminal fragment (GSDMA_1–247) that triggers pyroptosis, promotes inflammation, and restricts viral replication. In contrast, cleavage at the alternative site Q187 attenuates this function. Using Gsdma -/- mice, we show that GSDMA deficiency increases viral loads but reduces inflammation, tissue damage, and mortality upon infection. These findings suggest that disease severity is driven more by inflammation than by viral load. Our findings reveal a novel mechanism of antiviral immunity and inflammatory regulation via CoV nsp5-mediated dual cleavage of GSDMA, highlighting a potential target for combined antiviral and anti-inflammatory therapies.

PLoS PathogensVol. 22(9)
Xuzhou Medical College (CN), Chinese University of Hong Kong (HK), Huazhong Agricultural University (CN), Model Animal Research Center (CN), Center of Hubei Cooperative Innovation for Emissions Trading System (CN)
Good health and well-being
Openalex Percentile: Top 18%
Inflammasome and immune disorders
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