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Cell Communication and Signaling· 2026Q1

PEDV evades host immunity through reciprocal stabilization of PLP2 and GSDMD-CT

Weilv Xu, Zexu Yu, Jinhuang Shi, Shiyang Liu et al.

Short summary

Porcine epidemic diarrhea virus (PEDV) protein PLP2 stabilizes host GSDMD-CT, which in turn stabilizes PLP2, creating a feedback loop that suppresses pyroptosis and interferon signaling to promote viral replication.

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Key points

  • PEDV protein PLP2 interacts with and stabilizes host GSDMD-CT.
  • GSDMD-CT enhances PLP2 stability by promoting K11-linked ubiquitination at K66.
  • PLP2 enhances GSDMD-CT stability by removing K48-linked polyubiquitination at K118.
  • This reciprocal stabilization suppresses pyroptosis and interferon signaling, promoting PEDV replication.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract GSDMD-mediated pyroptosis is a critical component of the host innate immune defense against viral infection. While the pyroptosis-executing N-terminal domain of GSDMD (GSDMD-NT) has been extensively investigated, the role of the C-terminal domain (GSDMD-CT) remains largely unexplored. Building on our previous findings that GSDMD-CT degrades RIG-I and TBK1 to inhibit type I interferon (IFN-I) signaling, this study demonstrates that porcine GSDMD-CT inhibits IFN-I signaling and promotes porcine epidemic diarrhea virus (PEDV) replication. We found that the PEDV-encoded PLP2 protein directly interacts with GSDMD-CT, resulting in mutual stabilization. Mechanistically, PLP2 enhances GSDMD-CT stability by removing K48-linked polyubiquitination at residue K118, while GSDMD-CT promotes K11-linked ubiquitination at the K66 site of PLP2. This mutual stabilization creates a synergistic feedback loop that suppresses both pyroptosis and IFN-I signaling, ultimately facilitating robust PEDV replication. These findings provide novel insights into viral immune evasion mechanisms and establish a theoretical foundation for developing innovative strategies for viral prevention and control.

The authors' abstract, as published at the source. Cell Communication and Signaling, 2026 · DOI ↗

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Field: Animal Science and Zoology

Animal Science and ZoologyAgricultural and Biological Sciences