4.7 Article

Lung fibrosis is induced in ADAR2 overexpressing mice via HuR-induced CTGF signaling

期刊

FASEB JOURNAL
卷 36, 期 2, 页码 -

出版社

WILEY
DOI: 10.1096/fj.202101511R

关键词

ADAR2; CTGF; HuR; lung fibrosis; Delta ECS mice

资金

  1. HHS | NIH | National Heart, Lung, and Blood Institute (NHLBI) [R01 HL105932]

向作者/读者索取更多资源

The study reveals the important role of ADAR2 in the lungs, with overexpression leading to spontaneous lung fibrosis via HuR-mediated CTGF signaling pathway. The findings contribute to a better understanding of the function of ADAR2 in the lungs and provide potential therapeutic strategies for lung fibrosis.
Adenosine deaminase acting on RNA 2 (ADAR2), an RNA editing enzyme is involved in a site-selective modification of adenosine (A) to inosine (I) in double-stranded RNA (dsRNA). Its role in the lungs is unknown. The phenotypic characterization of Adarb1 mice that lacked ADAR2 auto-regulation due to the deletion of editing complementary sequence (ABCS mice) determined the functional role of ADAR2 in the lungs. ADAR2 protein expression increased in the Delta ECS mice. These mice display immune cell infiltration and alveolar disorganization. The lung wet by dry ratio indicates there is no lung edema in Delta ECS mice. Bronchoalveolar lavage (BAL) analysis of ABCS mice reveals a significant increase in neutrophils. Interestingly, Delta ECS mice spontaneously develop lung fibrosis as indicated by Sirius red staining of collagen fibers in the lung sections and a significant increase in hydroxyproline level in their lungs. ADAR2 expression increased significantly in a bleomycin mouse model, implicating a role of ADAR2 in lung fibrosis. Furthermore, there is a likely possibility that the genetically modified ARCS mice does not model the physiological or pathophysiological process of lung fibrosis. Nevertheless, this model is useful in interrogating the role of ADAR2 in the lungs. The CtemRNA and connective tissue growth factor (CTGF) protein significantly increased in ABCS lungs and occurs in bronchial epithelial cells. There is a significant increase in Human antigen R (ELAVL1; HuR) protein levels in ABCS lungs and suggests a role in stabilizing Ctgf m RNA. Lung mechanics such as total respiratory resistance, Newtonian resistance and tissue damping were increased, whereas inspiratory capacity was decreased in the Delta ECS mice. Taken together, these data indicate that overexpression of ADAR2 causes spontaneous lung fibrosis via HuR-mediated CTGF signaling and implicate a role for ADAR2 auto-regulation in lung homeostasis. The identification of ADAR2 target genes in Delta ECS mice would facilitate a mechanistic understanding of the role of ADAR2 in the lungs and provide a therapeutic strategy for lung fibrosis.

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