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Radiosensitizing effects of ectopic miR-101 on non-small-cell lung cancer cells depend on the endogenous miR-101
Susie Chen1, Hongyan Wang, Wooi Loon Ng
1Department of Radiation Oncology, School of Medicine and the Winship Cancer Institute, Emory University, Atlanta, GA 30322, USA.
Purpose:
Previously, we showed that ectopic miR-101 could sensitize human tumor cells to radiation by targeting ATM and DNA-PK catalytic subunit (DNA-PKcs) to inhibit DNA repair, as the endogenous miR-101 levels are low in tumors in general. However, the heterogeneity of human cancers may result in an exception. The purpose of this study was to test the hypothesis that a few tumor cell lines with a high level of endogenous miR-101 would prove less response to ectopic miR-101.
Methods And Materials:
Fourteeen non-small-cell lung cancer (NSCLC) cell lines and one immortalized non-malignant lung epithelial cell line (NL20) were used for comparing endogenous miR-101 levels by real-time reverse transcription-polymerase chain reaction. Based on the different miR-101 levels, four cell lines with different miR-101 levels were chosen for transfection with a green fluorescent protein-lentiviral plasmid encoding miR-101. The target protein levels were measured by using Western blotting. The radiosensitizing effects of ectopic miR-101 on these NSCLC cell lines were determined by a clonogenic assay and xenograft mouse model.
Results:
The endogenous miR-101 level was similar or lower in 13 NSCLC cell lines but was 11-fold higher in one cell line (H157) than in NL20 cells. Although ectopic miR-101 efficiently decreased the ATM and DNA-PKcs levels and increased the radiosensitization level in H1299, H1975, and A549 cells, it did not change the levels of the miR-101 targets or radiosensitivity in H157 cells. Similar results were observed in xenograft mice.
Conclusions:
A small number of NSCLC cell lines could have a high level of endogenous miR-101. The ectopic miR-101 was able to radiosensitize most NSCLC cells, except for the NSCLC cell lines that had a much higher endogenous miR-101 level. These results suggest that when we choose one miRNA as a therapeutic tool, the endogenous level of the miRNA in each tumor should be considered.
Insights
Ectopic miR-101 sensitizes most non-small-cell lung cancer cells to radiation, but not those with high endogenous miR-101. Tumor miR-101 levels must be considered for effective miRNA-based cancer therapy.
Area of Science:
- Molecular biology
- Cancer research
- Radiotherapy
Background:
- MicroRNA-101 (miR-101) can sensitize tumor cells to radiation by targeting DNA repair proteins like ATM and DNA-PKcs.
- Endogenous miR-101 levels are typically low in tumors, making exogenous miR-101 a potential radiosensitizing agent.
Purpose of the Study:
- To investigate if non-small-cell lung cancer (NSCLC) cell lines with high endogenous miR-101 levels are less responsive to ectopic miR-101.
- To test the hypothesis that high endogenous miR-101 can confer resistance to exogenous miR-101-mediated radiosensitization.
Main Methods:
- Real-time RT-PCR was used to quantify endogenous miR-101 levels in 14 NSCLC cell lines and one control lung epithelial cell line.
- Selected NSCLC cell lines were transfected with miR-101, and target protein levels (ATM, DNA-PKcs) were assessed via Western blotting.
- Radiosensitivity was evaluated using clonogenic assays and a xenograft mouse model.
Main Results:
- One NSCLC cell line (H157) exhibited an 11-fold higher endogenous miR-101 level compared to the control.
- Ectopic miR-101 reduced target proteins and enhanced radiosensitivity in H1299, H1975, and A549 cells, but not in H157 cells.
- Similar resistance to ectopic miR-101 was observed in H157 xenografts.
Conclusions:
- A subset of NSCLC cell lines possesses high endogenous miR-101 levels.
- Ectopic miR-101 effectively radiosensitizes most NSCLC cells, with exceptions in cell lines having significantly high endogenous miR-101.
- Endogenous microRNA levels are a critical factor to consider when developing miRNA-based therapeutic strategies.
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