SIRT2 negatively regulates the cGAS‐STING pathway by deacetylating G3BP1

Author:

Li Yutong1,Bie Juntao1,Song Chen1,Li Yunfei2,Zhang Tianzhuo1,Li Haishuang3,Zhao Long4ORCID,You Fuping2ORCID,Luo Jianyuan15ORCID

Affiliation:

1. Department of Medical Genetics, Center for Medical Genetics, School of Basic Medical Sciences Peking University Health Science Center Beijing China

2. Department of Immunology, School of Basic Medical Sciences, Beijing Key Laboratory of Tumor Systems Biology Institute of Systems Biomedicine, Peking University Health Science Center Beijing China

3. Department of Pathology, School of Basic Medical Sciences Peking University Third Hospital, Peking University Health Science Center Beijing China

4. Department of Gastroenterological Surgery Peking University People's Hospital Beijing China

5. Beijing Key Laboratory of Protein Posttranslational Modifications and Cell Function, Department of Biochemistry and Biophysics, School of Basic Medical Sciences Peking University Health Science Center Beijing China

Abstract

AbstractSIRT2, a cytoplasmic member of the Sirtuin family, has important roles in immunity and inflammation. However, its function in regulating the response to DNA virus infection remains elusive. Here, we find that SIRT2 is a unique regulator among the Sirtuin family that negatively modulates the cGAS‐STING‐signaling pathway. SIRT2 is down‐regulated after Herpes simplex virus‐1 (HSV‐1) infection, and SIRT2 deficiency markedly elevates the expression levels of type I interferon (IFN). SIRT2 inhibits the DNA binding ability and droplet formation of cGAS by interacting with and deacetylating G3BP1 at K257, K276, and K376, leading to the disassembly of the cGAS‐G3BP1 complex, which is critical for cGAS activation. Administration of AGK2, a selective SIRT2 inhibitor, protects mice from HSV‐1 infection and increases the expression of IFN and IFN‐stimulated genes. Our study shows that SIRT2 negatively regulates cGAS activation through G3BP1 deacetylation, suggesting a potential antiviral strategy by modulating SIRT2 activity.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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