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MicroRNA-138 Regulates DNA Damage Response in Small Cell Lung Cancer Cells by Directly Targeting H2AX
Huan Yang1, Jinwen Luo, Zhiguang Liu
1Department of Respiratory Medicine, The Second Xiangya Hospital of Central-South University , Changsha, Hunan , China , 1.
Abstract:
Lung cancer is the leading cause of cancer death worldwide and small cell lung cancer (SCLC) accounts for a significant proportion of all lung cancer cases. Even so, the underlying mechanism governing SCLC development remains poorly understood and SCLC related cancer death stands high despite decades of intensive investigation. We noted that both miR-138 and H2AX have been implicated in development of various malignancies. Also, there is a recent report showing the role of miR-138 in mediating DNA damage response by targeting H2AX. In light of these data, we sought to characterize the role of miR-138 for SCLC cell growth and cell-cycle progression by regulating H2AX expression. Results showed that miR-138 is significantly down-regulated in SCLC tumor tissues as well as in three SCLC cell lines. After successfully engineering miR-138 overexpression in one of the SCLC cell lines, NCI-H2081, we observed a remarkable reduction of cell growth and a significant inhibition on cell-cycle progression. Moreover, we were able to show that miR-138 potently inhibits H2AX expression, which suggests that H2AX may serve as a downstream executor for miR-138. Consistent with this hypothesis, we found that engineered H2AX knockdown achieves a similar effect as observed for miR-138 overexpression in terms of SCLC growth and cell cycle regulation. We also showed that H2AX overexpression largely abolished miR-138-mediated SCLC cancer cell growth and cell-cycle progression inhibition, which strongly suggests, at least in vitro, that miR-138 potently regulates SCLC development by targeting H2AX. In addition, we found lower miR-138 expression confers SCLC cells with greater DNA damage repair capacity. Finally, we were able to show miR-138 overexpression inhibits DNA damage repair in SCLC cells while miR-138 knockdown further facilitates DNA damage repair in these cells after IR. To date, there has been no study showing the role of miR-138/H2AX machinery in SCLC development. Our results may shed a light to development of new lines of SCLC diagnosis and treatment approaches.
Insights
MicroRNA-138 (miR-138) is down-regulated in small cell lung cancer (SCLC). Overexpressing miR-138 inhibits SCLC growth and cell cycle by targeting H2AX, offering potential new diagnostic and treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Small cell lung cancer (SCLC) is a leading cause of cancer death with poorly understood development mechanisms.
- MicroRNA-138 (miR-138) and H2AX are implicated in various malignancies, with miR-138 potentially regulating DNA damage response by targeting H2AX.
Purpose of the Study:
- To investigate the role of miR-138 in SCLC cell growth and cell-cycle progression.
- To elucidate the regulatory relationship between miR-138 and H2AX in SCLC development.
Main Methods:
- Quantification of miR-138 expression in SCLC tumor tissues and cell lines.
- Engineering miR-138 overexpression and H2AX knockdown/overexpression in SCLC cell lines.
- Assessment of cell growth, cell-cycle progression, and DNA damage repair capacity.
Main Results:
- miR-138 was significantly down-regulated in SCLC tissues and cell lines.
- miR-138 overexpression reduced SCLC cell growth and inhibited cell-cycle progression by down-regulating H2AX.
- H2AX knockdown mimicked miR-138 overexpression effects; H2AX overexpression abolished miR-138's inhibitory effects on SCLC growth and cell cycle.
Conclusions:
- miR-138 regulates SCLC development by targeting H2AX, impacting cell growth, cell cycle, and DNA damage repair.
- Lower miR-138 expression correlates with enhanced DNA damage repair capacity in SCLC cells.
- The miR-138/H2AX axis presents a potential therapeutic target for SCLC diagnosis and treatment.
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