Identification of AP-1 as a Critical Regulator of Glutathione Peroxidase 4 (GPX4) Transcriptional Suppression and Acinar Cell Ferroptosis in Acute Pancreatitis
Xiaojie Ma, Xiaowu Dong, Yao Xu, Nan Ma, Mei Wei, Xiaochun Xie, Yingying Lu, Wangsen Cao, Guotao Lu, Weiqin Li
Journal:Antioxidants
IF:7.68
DOI:10.3390/antiox12010100
PMID:36670963
Published:2022-12-31
research field:分子生物学毒理学细胞生物学生殖生物学环境健康
Abstract
Glutathione peroxidase 4 (GPX4)-dependent ferroptosis in pancreatic acinar cells plays a critical role in acute pancreatitis (AP). However, potential upstream regulators of GPX4 are not well defined. Here, we observed a marked reduction in acinar GPX4 expression and ferroptotic cell death in mice with cerulein-induced AP. To determine the critical factors involved in acinar cell ferroptosis, pancreas transcriptome data from an AP mouse model were analyzed and overlapped with predicted transcription factors ofGpx4, and an upregulated transcription factor active protein 1 (AP-1) protein, Jun, was identified. The administration of a specific ferroptosis inhibitor liproxstatin-1 alleviated AP pathology and significantly decreased Jun levels. Bioinformatic analysis indicated that theGpx4promoter contains a putative AP-1 binding site. Jun binds directly to theGpx4promoter and inhibitsGpx4transcription under pancreatic conditions. AP-1 inhibition by a selective inhibitor SR11302 reversed GPX4 reduction and ameliorated AP pathology in a GPX4-dependent manner. Collectively, our study demonstrates that the downregulation of GPX4 by AP-1 is critical in the aggravation of acinar cell ferroptosis during the progression of AP. Strategies targeting the AP-1/GPX4 axis may be potentially effective for the prevention and treatment of AP.Keywords:acute pancreatitis;ferroptosis;active protein 1;transcription factor;GPX4
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