| Literature DB >> 32164878 |
Long Shuang Huang1, Zhigang Hong1, Wei Wu2, Shiqin Xiong1, Ming Zhong2, Xiaopei Gao1, Jalees Rehman3, Asrar B Malik4.
Abstract
Cytosolic DNA acts as a universal danger-associated molecular pattern (DAMP) signal; however, the mechanisms of self-DNA release into the cytosol and its role in inflammatory tissue injury are not well understood. We found that the internalized bacterial endotoxin lipopolysaccharide (LPS) activated the pore-forming protein Gasdermin D, which formed mitochondrial pores and induced mitochondrial DNA (mtDNA) release into the cytosol of endothelial cells. mtDNA was recognized by the DNA sensor cGAS and generated the second messenger cGAMP, which suppressed endothelial cell proliferation by downregulating YAP1 signaling. This indicated that the surviving endothelial cells in the penumbrium of the inflammatory injury were compromised in their regenerative capacity. In an experimental model of inflammatory lung injury, deletion of cGas in mice restored endothelial regeneration. The results suggest that targeting the endothelial Gasdermin D activated cGAS-YAP signaling pathway could serve as a potential strategy for restoring endothelial function after inflammatory injury.Entities:
Keywords: Gasdermin D; YAP; cGAS; endothelial regeneration; inflammation; lung injury; mitochondrial DNA; pyroptosis; vascular injury
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Year: 2020 PMID: 32164878 PMCID: PMC7266657 DOI: 10.1016/j.immuni.2020.02.002
Source DB: PubMed Journal: Immunity ISSN: 1074-7613 Impact factor: 31.745