Smad2/3-Regulated Expression of DLX2 Is Associated with Radiation-Induced Epithelial-Mesenchymal Transition and Radioresistance of A549 and MDA-MB-231 Human Cancer Cell Lines
Smad2/3-Regulated Expression of DLX2 Is Associated with Radiation-Induced Epithelial-Mesenchymal Transition and Radioresistance of A549 and MDA-MB-231 Human Cancer Cell Lines
The control of radioresistance and metastatic potential of surviving cancer cells is important for improving cancer eradication by radiotheraphy. The distal-less homeobox2 (DLX2) gene encodes for a homeobox transcription factor involved in morphogenesis and its deregulation was found in human solid tumors and hematologic malignancies. Here we investigated the role of DLX2 in association with radiation-induced epithelial to mesenchymal transition (EMT) and stem cell-like properties and its regulation by Smad2/3 signaling in irradiated A549 and MDA-MB-231 human cancer cell lines. In irradiated A549 and MDA-MB-231 cells, EMT was induced as demonstrated by EMT marker expression, phosphorylation of Smad2/3, and migratory and invasive ability. Also, irradiated A549 and MDA-MB-231 cells showed increased cancer stem cells (CSCs) marker. Interestingly, DLX2 was overexpressed upon irradiation. Therefore, we examined the role of DLX2 in radiation-induced EMT and radioresistance. The overexpression of DLX2 alone induced EMT, migration and invasion, and CSC marker expression. The reduced colony-forming ability in irradiated cells was partially restored by DLX2 overexpression. On the other hand, the depletion of DLX2 using si-RNA abolished radiation-induced EMT, CSC marker expression, and phosphorylation of Smad2/3 in irradiated A549 and MDA-MB-231 cells. Also, depletion of DLX2 increased the radiation sensitivity in both cell lines. Moreover, knockdown of Smad2/3, a key activator of TGF-β1 pathway, abrogated the radiation-induced DLX2 expression, indicating that radiation-induced DLX2 expression is dependent on Smad2/3 signaling. These results demonstrated that DLX2 plays a crucial role in radioresistance, radiation-induced EMT and CSC marker expression, and the expression of DLX2 is regulated by Smad2/3 signaling in A549 and MDA-MB-231 cell lines.
- National Research Foundation of Korea Korea (Republic of)
- University of Science and Technology Yemen
- University of Science and Technology (KNUST) Ghana
- UNIVERSITY SCIENCE AND TECHNOLOGY China (People's Republic of)
- Wayne State University School of Medicine United States
Epithelial-Mesenchymal Transition, Cell Survival, Science, Smad2 Protein, Radiation Tolerance, Transforming Growth Factor beta1, Cell Movement, Cell Line, Tumor, Neoplasms, Humans, Neoplasm Invasiveness, Smad3 Protein, Phosphorylation, RNA, Small Interfering, Homeodomain Proteins, Q, R, Hyaluronan Receptors, Neoplastic Stem Cells, Medicine, RNA Interference, Research Article, Signal Transduction, Transcription Factors
Epithelial-Mesenchymal Transition, Cell Survival, Science, Smad2 Protein, Radiation Tolerance, Transforming Growth Factor beta1, Cell Movement, Cell Line, Tumor, Neoplasms, Humans, Neoplasm Invasiveness, Smad3 Protein, Phosphorylation, RNA, Small Interfering, Homeodomain Proteins, Q, R, Hyaluronan Receptors, Neoplastic Stem Cells, Medicine, RNA Interference, Research Article, Signal Transduction, Transcription Factors
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