SESN1 is a negative regulator of MAVS and dynamically expressed during RNA viral infection

RNA viruses, major pathogens of humans and animals, are responsible for numerous inflammatory diseases. Commonly, mild RNA virus infection fails to trigger inflammatory diseases due to host immune homeostasis. However, severe RNA virus infection destroys immune homeostasis and causes hyperinflammation. The detail mechanism is still unclear. Here, we reported that SESN1 acts as a critical negative regulator of mitochondrial antiviral signaling protein (MAVS), a central hub protein in RNA-triggered innate immune response, by potentiating MAVS autophagic degradation to repress innate immune response. Upon low dose RNA virus infection, SESN1 level was decreased at infection early stage and was rebounded at late stage, which restrained SESN1-mediated MAVS degradation to clear virus at early stage and enhanced MAVS degradation to prevent excessive cytokines production at late stage. Whereas, SESN1 level was continuously impaired after high dose RNA virus infection, which caused robust cytokines production. Notably, we observed that the expression of SESN1 was markedly downregulated and negatively correlated with cytokine levels in patients with severe influenza. Replenishment of SESN1 effectively inhibited cytokines production in the Human Primary Bronchial/Tracheal Epithelial Cells infected with Influenza A virus PR8 and peripheral blood mononuclear cells of patients with severe influenza. Mechanistically, SESN1 interacted with MAVS and enhanced MAVS autophagic degradation via SQSTM1. Together, these findings revealed SESN1 was an important factor to regulate host innate immune response.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-08-26
DOI
https://doi.org/10.1073/pnas.2621443123
Primary Topic
interferon and immune responses
Type
article
Field-Weighted Citation Impact
0.00

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article

SESN1 is a negative regulator of MAVS and dynamically expressed during RNA viral infection

Mingyu Pan, Lingxiao Xu, Qianghui Liu, Yubo Zhang et al.
Proceedings of the National Academy of Sciences
interferon and immune responses
article

SESN1 is a negative regulator of MAVS and dynamically expressed during RNA viral infection

Mingyu Pan, Lingxiao Xu, Qianghui Liu, Yubo Zhang, Peiran Chen, Zuocheng Qiu, Jia Wang, Chunyan He, Yong Xu
article en

Abstract

RNA viruses, major pathogens of humans and animals, are responsible for numerous inflammatory diseases. Commonly, mild RNA virus infection fails to trigger inflammatory diseases due to host immune homeostasis. However, severe RNA virus infection destroys immune homeostasis and causes hyperinflammation. The detail mechanism is still unclear. Here, we reported that SESN1 acts as a critical negative regulator of mitochondrial antiviral signaling protein (MAVS), a central hub protein in RNA-triggered innate immune response, by potentiating MAVS autophagic degradation to repress innate immune response. Upon low dose RNA virus infection, SESN1 level was decreased at infection early stage and was rebounded at late stage, which restrained SESN1-mediated MAVS degradation to clear virus at early stage and enhanced MAVS degradation to prevent excessive cytokines production at late stage. Whereas, SESN1 level was continuously impaired after high dose RNA virus infection, which caused robust cytokines production. Notably, we observed that the expression of SESN1 was markedly downregulated and negatively correlated with cytokine levels in patients with severe influenza. Replenishment of SESN1 effectively inhibited cytokines production in the Human Primary Bronchial/Tracheal Epithelial Cells infected with Influenza A virus PR8 and peripheral blood mononuclear cells of patients with severe influenza. Mechanistically, SESN1 interacted with MAVS and enhanced MAVS autophagic degradation via SQSTM1. Together, these findings revealed SESN1 was an important factor to regulate host innate immune response.

Proceedings of the National Academy of SciencesVol. 123(35)
Jinan University (CN), City University of Hong Kong (HK), Huaian First People’s Hospital (CN), Shanghai University of Traditional Chinese Medicine (CN), Traditional Chinese Medicine Hospital of Kunshan (CN), Jiangsu Province Hospital (CN), Nanjing Medical University (CN)
National Natural Science Foundation of China, Nanjing Medical University
Good health and well-being
Openalex Percentile: Top 17%
interferon and immune responses
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