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Autophagy modulates temozolomide-induced cell death in alveolar Rhabdomyosarcoma cells
Adel Rezaei Moghadam1, Simone C da Silva Rosa1,2, Ehsan Samiei3,4
11Department of Human Anatomy and Cell Science, Max Rady College of Medicine, Rady Faculty of Health Science, University of Manitoba, Winnipeg, Canada.
Abstract:
Rhabdomyosarcoma (RMS) is a muscle-derived tumor. In both pre-clinical and clinical studies Temozolomide (TMZ) has been recently tested against RMS; however, the precise mechanism of action of TMZ in RMS remains unclear. Here we demonstrate that TMZ decreases the cell viability of the RH30 RMS and C2C12 cell line, where cells display evidence of mitochondrial outer membrane permeability. Interestingly, the C2C12 mouse myoblast line was relatively more resistant to TMZ-induced apoptosis. Moreover, we observed that TMZ activated biochemical and morphological markers of autophagy in both cell lines. Autophagy inhibition in both RH30 and C2C12 cells significantly increased TMZ-induced cell death. In RH30 cells, TMZ increased Mcl-1 and Bax protein expression compared to corresponding time match controls while in C2C12 Mcl-1, Bcl-2, Bcl-XL, and Bax protein expression were not changed. Baf-A1 co-treatment with TMZ significantly decrease Mcl-1 expression compared to TMZ while increase Bax expression in C2C12 cells (Bcl2 and Bcl-XL do not significantly change in Baf-A1/TMZ co-treatment). Using a three-dimensional (3D) C2C12 and RH30 culture model we demonstrated that TMZ is significantly more toxic in RH30 cells (live/dead assay). Additionally, we have observed in our 3D culture model that TMZ induced both apoptosis (cleavage of PARP) and autophagy (LC3-puncta and localization of LC3/p62). Therefore, our data demonstrate that TMZ induces simultaneous autophagy and apoptosis in both RH30 and C2C12 cells in 2D and 3D culture model, where RH30 cells are more sensitive to TMZ-induced death. Furthermore, autophagy serves to protect RH30 cells from TMZ-induced death.
Insights
Temozolomide (TMZ) triggers both apoptosis and autophagy in rhabdomyosarcoma (RMS) and C2C12 cells. Autophagy inhibition enhances TMZ-induced cell death, with RMS cells being more sensitive to TMZ.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Rhabdomyosarcoma (RMS) is a muscle-derived tumor with unclear responses to Temozolomide (TMZ).
- Understanding TMZ's mechanism of action in RMS is crucial for effective treatment strategies.
Purpose of the Study:
- To elucidate the precise mechanism of action of Temozolomide (TMZ) in Rhabdomyosarcoma (RMS) and C2C12 cell lines.
- To investigate the interplay between apoptosis and autophagy in TMZ-treated RMS cells.
Main Methods:
- Cell viability assays were performed on RH30 RMS and C2C12 cell lines treated with TMZ.
- Biochemical and morphological markers of apoptosis and autophagy were analyzed.
- Protein expression levels of key apoptosis regulators (Mcl-1, Bax, Bcl-2, Bcl-XL) were assessed.
- Three-dimensional (3D) culture models were utilized to evaluate TMZ toxicity and cellular responses.
Main Results:
- TMZ decreased cell viability in both RH30 and C2C12 cells, inducing mitochondrial outer membrane permeability.
- TMZ activated both apoptosis and autophagy markers in both cell lines, with C2C12 cells showing relative resistance to apoptosis.
- Autophagy inhibition significantly increased TMZ-induced cell death in both cell lines.
- RH30 cells were more sensitive to TMZ-induced death in 2D and 3D cultures.
- TMZ modulated Mcl-1 and Bax expression in RH30 cells, while effects were less pronounced in C2C12 cells.
Conclusions:
- TMZ induces simultaneous apoptosis and autophagy in RMS and C2C12 cells.
- Autophagy plays a protective role in RH30 cells against TMZ-induced death.
- RH30 RMS cells exhibit higher sensitivity to TMZ compared to C2C12 cells, suggesting differential responses to the drug.
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