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Generation of Prostate Cancer Cell Models of Resistance to the Anti-mitotic Agent Docetaxel
Published on: September 8, 2017
Long noncoding RNA ROR regulates chemoresistance in docetaxel-resistant lung adenocarcinoma cells via epithelial
Yan Pan1, Jing Chen1, Leilei Tao1
1Department of Medical Oncology, Jinling Hospital, School of Medicine, Nanjing University, Nanjing, Jiangsu, China.
Abstract:
Emerging evidence indicates that the dysregulation of long non-coding RNAs (lncRNAs) contributes to the development and progression of lung adenocarcinoma (LAD), however the underlying mechanism of action of lncRNAs remains unclear. It is well known that the effective treatment of cancers has been hindered by drug resistance in the clinical setting. Epithelial-mesenchymal transition (EMT) has been recognized to be involved in acquiring drug resistance, cell migration and invasion properties in several types of cancer. Docetaxel-resistant LAD cells established previously in our lab present chemoresistant and mesenchymal features. Long intergenic non-protein coding RNA, regulator of reprogramming (linc-ROR), was first discovered in induced pluripotent stem cells (iPSCs) and was upregulated in docetaxel-resistant LAD cells. In this study, we tried to make clarification of lincRNA-related mechanisms underlying EMT followed by acquired resistance to chemotherapy in LAD. In order to hit the mark, we made use of multiple methods including microarray analysis, qRT-PCR, western blotting analysis, loss/gain-of-function analysis, luciferase assays, drug sensitivity assays, wound-healing assay and invasion assay. We found that decreased expression of linc-ROR effectively reversed EMT in docetaxel-resistant LAD cells and sensitized them to chemotherapy. The function of linc-ROR exerted in LAD cells depended on the sponging of miR-145, therefore, releasing the miR-145 target FSCN1, and thus contributing to the acquisition of chemoresistance and EMT phenotypes of docetaxel-resistant LAD cells. Our findings revealed that linc-ROR might act as potential therapeutic target to overcome chemotherapy resistance in LAD.
Insights
Long intergenic non-protein coding RNA, regulator of reprogramming (linc-ROR) drives chemotherapy resistance and epithelial-mesenchymal transition (EMT) in lung adenocarcinoma (LAD). Inhibiting linc-ROR can reverse these effects, offering a potential therapeutic strategy for LAD.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Dysregulation of long non-coding RNAs (lncRNAs) is implicated in lung adenocarcinoma (LAD) development.
- Drug resistance and epithelial-mesenchymal transition (EMT) are significant challenges in cancer treatment.
- Docetaxel-resistant LAD cells exhibit chemoresistance and mesenchymal characteristics.
Purpose of the Study:
- To elucidate the role of linc-ROR in EMT and chemotherapy resistance in LAD.
- To investigate the underlying molecular mechanisms of linc-ROR in LAD progression.
- To explore linc-ROR as a potential therapeutic target for overcoming chemoresistance in LAD.
Main Methods:
- Microarray analysis, qRT-PCR, and Western blotting were used to assess gene expression.
- Loss/gain-of-function studies, luciferase assays, and drug sensitivity assays were performed.
- Wound-healing and invasion assays evaluated cell migration and invasion capabilities.
Main Results:
- Decreased linc-ROR expression reversed EMT and sensitized docetaxel-resistant LAD cells to chemotherapy.
- linc-ROR sponges miR-145, releasing its target FSCN1, thereby promoting chemoresistance and EMT.
- Upregulation of linc-ROR was observed in docetaxel-resistant LAD cells.
Conclusions:
- linc-ROR plays a crucial role in mediating EMT and chemoresistance in LAD.
- The linc-ROR/miR-145/FSCN1 axis is a key pathway in LAD chemoresistance.
- Targeting linc-ROR presents a promising strategy to enhance chemotherapy efficacy in LAD.
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