PRMT5 Promotes Human Lung Cancer Cell Apoptosis via Akt/Gsk3β Signaling Induced by Resveratrol
Yong Li1,2, Yanxia Yang3,2, Xiaoping Liu3
1Department of Respiratory Medicine, Luwan Branch of Ruijin Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Abstract:
Protein arginine methyltransferase 5 (PRMT5) is implicated in various types of human cancer and tumor development, especially in lung cancer. Nevertheless, it is still unclear whether suppression of PRMT5 could promote lung cancer cell apoptosis and chemosensitivity induced by resveratrol, and the underlying molecular mechanism remains completely unknown. Here, we showed that PRMT5 was overexpressed in human lung cancer tissues and different types of lung cancer cell lines. Moreover, we constructed PRMT5 stable knockdown cell lines (A549 and ASCT-a-1) and investigated the roles of PRMT5 and the related signaling pathway in lung cancer cell apoptosis induced by resveratrol. Our results indicated that inhibition or down-regulation of PRMT5 by GSK591, a PRMT5-specific inhibitor, or shRNAs markedly enhanced cell apoptosis and chemosensitivity stimulated by resveratrol. Further investigation showed that inhibition or down-regulation of PRMT5 further reduced Akt/GSK3β phosphorylation and the downstream targets cyclin D1 and E1 expression upon resveratrol treatment. Our findings suggest that PRMT5 is a pivotal mediator for human lung cancer cell death induced by resveratrol, which also reveals that PRMT5 may serve as a new therapeutic target for the treatment of human lung cancer.
Insights
Suppression of Protein Arginine Methyltransferase 5 (PRMT5) enhances lung cancer cell apoptosis and chemosensitivity to resveratrol. This study reveals PRMT5 as a potential therapeutic target for lung cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Protein arginine methyltransferase 5 (PRMT5) is frequently overexpressed in human lung cancer.
- The role of PRMT5 in resveratrol-induced lung cancer cell apoptosis and chemosensitivity is not well understood.
Purpose of the Study:
- To investigate the effect of PRMT5 suppression on lung cancer cell apoptosis and chemosensitivity induced by resveratrol.
- To elucidate the molecular mechanisms underlying PRMT5's role in lung cancer.
Main Methods:
- Generated PRMT5 stable knockdown cell lines (A549 and ASCT-a-1).
- Utilized GSK591 (a PRMT5-specific inhibitor) and shRNAs to down-regulate PRMT5.
- Assessed cell apoptosis and chemosensitivity.
- Analyzed Akt/GSK3β phosphorylation and downstream targets (cyclin D1 and E1).
Main Results:
- PRMT5 down-regulation significantly enhanced resveratrol-induced apoptosis and chemosensitivity in lung cancer cells.
- Inhibition of PRMT5 reduced Akt/GSK3β phosphorylation and downstream cyclin D1 and E1 expression.
- PRMT5 overexpression was confirmed in lung cancer tissues and cell lines.
Conclusions:
- PRMT5 acts as a key mediator in resveratrol-induced human lung cancer cell death.
- Targeting PRMT5 could represent a novel therapeutic strategy for lung cancer.
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