Nuclear cGAS inhibits stimulation-induced inflammatory gene transcription via HDAC1

Cyclic GMP–AMP synthase (cGAS) is a cytosolic DNA sensor that detects aberrant DNA and activates the STING-dependent innate immune response. Although cGAS is predominantly localized in the nucleus under physiological conditions, its nuclear function remains incompletely understood. Here, we identify nuclear cGAS as a transcriptional repressor that restrains inflammatory gene expression independently of STING signaling. Using macrophages challenged with lipopolysaccharide (LPS), we found that cGAS selectively suppresses the transcription of primary response genes, including Cxcl1 and Tnf . Mechanistically, this activity requires nucleosome binding but not cGAS enzymatic signaling. Upon inflammatory stimulation, the transcription factor PU.1 recruits cGAS to target promoters, where the carboxyl-terminal domain of cGAS interacts with histone deacetylase 1 (HDAC1). This complex promotes deacetylation of H3K27ac and restricts transcriptional activation of inflammatory genes. Genome-wide chromatin accessibility and occupancy analyses revealed that cGAS-dependent transcriptional repression occurs at a distinct subset of PU.1-associated inflammatory loci. Functionally, macrophage-specific Hdac1 deficiency phenocopied the exaggerated inflammatory responses observed in Cgas -deficient mice during endotoxemia, whereas the pathogenic effects of Hdac1 loss were abolished in the absence of Cgas . Moreover, increased mortality and neutrophil infiltration in Cgas- deficient mice were rescued by deletion of Csf3r . Together, these findings uncover a previously unrecognized transcriptional function of nuclear cGAS and identify nuclear cGAS as an intrinsic brake that restrains excessive inflammatory responses.

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Journal
Proceedings of the National Academy of Sciences
Published
2026-09-28
DOI
https://doi.org/10.1073/pnas.2601665123
Primary Topic
interferon and immune responses
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article
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article

Nuclear cGAS inhibits stimulation-induced inflammatory gene transcription via HDAC1

Hang Hubert Yin, Shengping Hou, Hong Peng Li, Shuaiting Yan et al.
Proceedings of the National Academy of Sciences
interferon and immune responses
article

Nuclear cGAS inhibits stimulation-induced inflammatory gene transcription via HDAC1

Hang Hubert Yin, Shengping Hou, Hong Peng Li, Shuaiting Yan, 尚澤 高
article en

Abstract

Cyclic GMP–AMP synthase (cGAS) is a cytosolic DNA sensor that detects aberrant DNA and activates the STING-dependent innate immune response. Although cGAS is predominantly localized in the nucleus under physiological conditions, its nuclear function remains incompletely understood. Here, we identify nuclear cGAS as a transcriptional repressor that restrains inflammatory gene expression independently of STING signaling. Using macrophages challenged with lipopolysaccharide (LPS), we found that cGAS selectively suppresses the transcription of primary response genes, including Cxcl1 and Tnf . Mechanistically, this activity requires nucleosome binding but not cGAS enzymatic signaling. Upon inflammatory stimulation, the transcription factor PU.1 recruits cGAS to target promoters, where the carboxyl-terminal domain of cGAS interacts with histone deacetylase 1 (HDAC1). This complex promotes deacetylation of H3K27ac and restricts transcriptional activation of inflammatory genes. Genome-wide chromatin accessibility and occupancy analyses revealed that cGAS-dependent transcriptional repression occurs at a distinct subset of PU.1-associated inflammatory loci. Functionally, macrophage-specific Hdac1 deficiency phenocopied the exaggerated inflammatory responses observed in Cgas -deficient mice during endotoxemia, whereas the pathogenic effects of Hdac1 loss were abolished in the absence of Cgas . Moreover, increased mortality and neutrophil infiltration in Cgas- deficient mice were rescued by deletion of Csf3r . Together, these findings uncover a previously unrecognized transcriptional function of nuclear cGAS and identify nuclear cGAS as an intrinsic brake that restrains excessive inflammatory responses.

Proceedings of the National Academy of SciencesVol. 123(40)
Beijing Tongren Hospital (CN), Capital Medical University (CN), Beijing Normal University (CN), King Center (US), Tsinghua University (CN)
Good health and well-being
Openalex Percentile: Top 19%
interferon and immune responses
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