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An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
Published on: May 21, 2019
MicroRNA-145 sensitizes cervical cancer cells to low-dose irradiation by downregulating OCT4 expression
Siqi Yan1, Xiangjun Li2, Qiao Jin3
1Department of Oncology, Xiangya Hospital, Central South University, Changsha, Hunan 410008, P.R. China.
Abstract:
Poor elucidation of the mechanisms involved in regulating the radiosensitivity of cancers prevents the extensive application of low-dose radiotherapy in clinical settings. The present study was conducted to investigate the role of microRNA-145 (miR-145) in the modulation of cervical cancer cell radiosensitivity, as well as to identify the underlying target of miR-145 during this process. Cervical cancer tera cells were initially exposed to doses of radiation between 1 and 6 Gy before the assessments of the cell viability and apoptosis rate. Irradiation at dose of 1 Gy was screened as optimum dose and used in subsequent experiments. A dual luciferase reporter assay was performed to demonstrate that octamer-binding transcription factor 4 (OCT4) is a target of miR-145 in cervical cancer. Consequently, OCT4 was suggested to be a target of miR-145, as a dual luciferase vector that was ligated to a fragment corresponding to the predicted target site of miR-145 in OCT4 3'-UTR showed an 83% reduction in fluorescence. Following exposure to 1 Gy irradiation, tera cells transfected with miR-145 mimics, which showed downregulation of OCT4 and cyclin D1, had lower cell viability and cell migration rate and higher apoptosis rate compared to non-transfected cells. However, the co-transfection of miR-145 mimics and OCT4 expression vector restored OCT4 and cyclin D1 expression levels and made no significant difference in terms of cell viability, cell migration rate and apoptosis rate. The present results indicate that miR-145 increases the radiosensitivity of cervical cancer cells by silencing OCT4, that cyclin D1 is putatively under the positive regulation of OCT4 and mediates miR-145 function.
Insights
MicroRNA-145 (miR-145) enhances cervical cancer radiosensitivity by targeting OCT4. This mechanism, involving cyclin D1, offers potential for improved low-dose radiotherapy applications.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy
Background:
- Elucidating radiosensitivity mechanisms is crucial for advancing low-dose radiotherapy.
- MicroRNA-145 (miR-145) role in cervical cancer radiosensitivity requires further investigation.
Purpose of the Study:
- To investigate miR-145's role in modulating cervical cancer cell radiosensitivity.
- To identify miR-145's molecular target in this process.
Main Methods:
- Cervical cancer cells were irradiated (1-6 Gy) to determine optimal dose (1 Gy).
- Dual luciferase reporter assay confirmed OCT4 as a miR-145 target.
- miR-145 mimics and OCT4 expression vectors were used in cell transfections.
Main Results:
- miR-145 mimics reduced cervical cancer cell viability and migration, increasing apoptosis post-irradiation.
- OCT4 was validated as a direct target of miR-145.
- Restoration of OCT4 expression reversed miR-145's effects on cell viability, migration, and apoptosis.
Conclusions:
- miR-145 enhances cervical cancer radiosensitivity by downregulating OCT4.
- Cyclin D1, regulated by OCT4, mediates miR-145's function in radiosensitization.
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