EGR1 Regulates PDE12 Mediated Mitochondrial Dysfunction to Induce Oral Mucosal Epithelial Barrier Damage in Oral Submucous Fibrosis
Jing Peng, Linlin Chen, Jinmei Xie, Xi Wang, Xuerou Wang, Cailian Chen, Rong Wang, Xi Xie
Journal:EUROPEAN JOURNAL OF PHARMACOLOGY
IF:5.7
DOI:10.1016/j.ejphar.2026.178865
PMID:42000021
Published:2026-04-16
research field:分子生物学转录调控口腔病理学细胞生物学纤维化疾病
Abstract
The treatment of oral submucosal fibrosis (OSF) is challenging owing to the complex pathogenesis. It is characterized by excessive collagen deposition in the subepithelium along with epithelial damage. Betel nut chewing is considered a major cause of OSF. We previously found that phosphodiesterase 12 (PDE12) was involved in the oral mucosal epithelial barrier damage, promoting the occurrence of OSF. Early growth response 1 (EGR1), a well-characterized transcription factor, has been implicated in the development of fibrotic diseases, including oral fibrosis. This study aimed to explore the effects and underlying mechanisms of PDE12 overexpression on oral epithelial cells in OSF. Overexpression of PDE12 was employed to verify its critical role in mitochondrial dysfunction and oral mucosal epithelial barrier disruption in HOKs. Subsequently, electrophoretic mobility shift assay and chromatin immunoprecipitation analysis were perfomed to demonstrate that EGR1 interacted with the promoter of the PDE12 gene, thereby upregulating its expression in HOKs. By combining EGR1 silengcing and PDE12 overexpressing strategies, our study confirmed that PDE12-induced impairment of mitochondrial function and oral mucosal epithelial barrier was dependent on EGR1. These findings suggest that regulating the expression of PDE12 through EGR1 could alleviate arecoline-induced epithelial injury, thereby inhibiting the development of OSF and offering a potential therapeutic strategy to combat OSF.
本文使用的Yeasen产品


