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CircCDR1as mediates PM2.5-induced lung cancer progression by binding to SRSF1
Jingbin Xu1, Lanyi Huang1, Tuya Bao1
1College of Medical Laboratory, Dalian Medical University, Dalian 116044, China.
Abstract:
Research indicates that particulate matter with an aerodynamic equivalent diameter of less than or equal to 2.5 µm in ambient air may induce lung cancer progression. Circular RNAs are a special kind of endogenous noncoding RNA, and their functions are reflected in various diseases and physiological processes, but there are still few studies related to PM2.5-induced lung cancer. Here, we identified that circCDR1as was upregulated in lung cancer cells stimulated with PM2.5 and positively correlated with the malignant features of lung cancer. The lower expression of CircCDR1as reduced the adverse progression of lung cancer cells after PM2.5 treatment; the lower expression of circCDR1as impaired the growth size and metastatic ability of lung cancer cells in mouse tumour models. Mechanistically, circCDR1as specifically bound to serine/arginine-rich splicing Factor 1 (SRSF1) and affected the splicing of vascular endothelial growth factor-A (VEGFA) by SRSF1. Furthermore, circCDR1as affected SRSF1 function by regulating PARK2-mediated SRSF1 ubiquitination, protein production and degradation. CircCDR1as also affected C-myc and cyclin D1 expression by regulating SRSF1 and affecting the wnt/β-catenin signalling pathway, ultimately promoting malignant behavior and inhibiting the apoptosis of lung cancer cells, thereby causing PM2.5-induced lung cancer development.
Insights
Particulate matter (PM2.5) exposure promotes lung cancer by upregulating circCDR1as. Lowering circCDR1as expression inhibits tumor growth and metastasis, offering a potential therapeutic target for PM2.5-induced lung cancer.
Area of Science:
- Environmental Health
- Molecular Biology
- Oncology
Background:
- Particulate matter (PM2.5) is linked to lung cancer progression.
- Circular RNAs (circRNAs) are implicated in diseases, but their role in PM2.5-induced lung cancer is understudied.
Purpose of the Study:
- To investigate the role of circCDR1as in PM2.5-induced lung cancer.
- To elucidate the molecular mechanisms by which circCDR1as promotes lung cancer progression.
Main Methods:
- Stimulation of lung cancer cells and mouse models with PM2.5.
- Analysis of circCDR1as expression and its correlation with lung cancer malignancy.
- Investigating the interaction of circCDR1as with SRSF1 and its downstream effects on VEGFA splicing, wnt/β-catenin pathway, and cell apoptosis.
Main Results:
- circCDR1as was upregulated in PM2.5-stimulated lung cancer cells and correlated with malignancy.
- Reduced circCDR1as expression impaired lung cancer cell growth and metastasis in vivo.
- circCDR1as binds SRSF1, affecting VEGFA splicing, PARK2-mediated SRSF1 ubiquitination, and wnt/β-catenin signaling, ultimately promoting cancer progression.
Conclusions:
- circCDR1as is a key mediator in PM2.5-induced lung cancer development.
- Targeting circCDR1as may offer a novel therapeutic strategy for lung cancer associated with air pollution.
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