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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Androgen receptor suppresses lung cancer invasion and increases cisplatin response via decreasing TPD52 expression
Shiqing Liu1,2,3, Chengping Hu1,2, Min Li1,2
1Department of Respiratory Medicine, Xiangya Hospital, Central South University, Changsha, 410008, China.
Abstract:
Lung cancer, as the most commonly diagnosed malignancy, still accounts for the leading cause of cancer-related deaths worldwide. The high rate of mortality and tumor recurrence has prompted clinicians and scientists to urgently explore new targets for improved treatment. Previous studies have indicated a potential role of the androgen receptor (AR) in the progression of non-small cell lung cancer (NSCLC). However, the precise mechanisms underlying this association, particularly its relation to TPD52-mediated cell invasion and cisplatin (DDP) response, have not been fully elucidated. Therefore, further investigation is necessary to gain a better understanding of these mechanisms and their potential implications for lung cancer treatment. In this study, we discovered that AR can suppress NSCLC cell invasion and increase cisplatin response by downregulating the expression of circular RNA (circRNA), specifically circ-SLCO1B7. This suppression is achieved through the direct binding of AR to the 5' promoter region of the host gene SLCO1B7. The decreased expression of circ-SLCO1B7, mediated by AR, released miR-139-5p back to the RISC (RNA induced silencing complex), where it bonds to the 3' untranslated region (3'UTR) of Tumor Protein D52 (TPD52) messenger RNA, resulting in TPD52 reduction. The in vivo data also validated the functional contribution of AR/circ-SLCO1B7/miR-139-5p/TPD52 axis to lung cancer progression. Furthermore, analysis of human NSCLC databases and clinical specimens confirmed the association of the AR/circ-SLCO1B7/miR-139-5p/TPD52 signaling pathway with NSCLC progression. Collectively, the results from our study suggest that AR can suppress lung cancer cell invasion and increase DDP response by modulating the circ-SLCO1B7/miR-139-5p/TPD52 signaling pathway. Targeting this novel signaling pathway may be a new therapeutic strategy to effectively constrain NSCLC development.
Insights
Androgen receptor (AR) suppresses lung cancer invasion and improves cisplatin response by regulating circ-SLCO1B7, miR-139-5p, and TPD52. This AR pathway offers a potential new therapeutic strategy for non-small cell lung cancer (NSCLC) treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Lung cancer remains a leading cause of cancer deaths globally, necessitating novel therapeutic targets.
- The role of androgen receptor (AR) in non-small cell lung cancer (NSCLC) progression and its interaction with TPD52 and cisplatin (DDP) response require further elucidation.
Purpose of the Study:
- To investigate the mechanisms by which AR influences NSCLC cell invasion and cisplatin response.
- To explore the role of the AR/circ-SLCO1B7/miR-139-5p/TPD52 signaling axis in NSCLC progression.
Main Methods:
- Investigated AR's effect on NSCLC cell invasion and DDP sensitivity.
- Analyzed AR's regulation of circ-SLCO1B7 expression via direct promoter binding.
- Examined the interaction between circ-SLCO1B7, miR-139-5p, and TPD52 mRNA within the RNA-induced silencing complex (RISC).
- Validated findings through in vivo experiments and analysis of human NSCLC databases and clinical specimens.
Main Results:
- AR suppresses NSCLC cell invasion and enhances DDP response by downregulating circ-SLCO1B7 expression.
- AR directly binds to the SLCO1B7 promoter, reducing circ-SLCO1B7 levels.
- Reduced circ-SLCO1B7 releases miR-139-5p, which targets TPD52 mRNA, leading to decreased TPD52 expression.
- The AR/circ-SLCO1B7/miR-139-5p/TPD52 pathway was confirmed to be functionally involved in lung cancer progression in vivo and in human samples.
Conclusions:
- AR acts as a suppressor of NSCLC cell invasion and an enhancer of DDP response through the circ-SLCO1B7/miR-139-5p/TPD52 pathway.
- Targeting this novel AR-mediated signaling pathway presents a promising therapeutic strategy for NSCLC.
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