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Published on: June 26, 2020
Myc is required for activation of the ATM-dependent checkpoints in response to DNA damage
Lina Guerra1, Ami Albihn, Susanna Tronnersjö
1Department of Cell Biology, Karolinska Institutet, Stockholm, Sweden.
Background:
The MYC protein controls cellular functions such as differentiation, proliferation, and apoptosis. In response to genotoxic agents, cells overexpressing MYC undergo apoptosis. However, the MYC-regulated effectors acting upstream of the mitochondrial apoptotic pathway are still unknown.
Principal Findings:
In this study, we demonstrate that expression of Myc is required to activate the Ataxia telangiectasia mutated (ATM)-dependent DNA damage checkpoint responses in rat cell lines exposed to ionizing radiation (IR) or the bacterial cytolethal distending toxin (CDT). Phosphorylation of the ATM kinase and its downstream effectors, such as histone H2AX, were impaired in the myc null cell line HO15.19, compared to the myc positive TGR-1 and HOmyc3 cells. Nuclear foci formation of the Nijmegen Breakage Syndrome (Nbs) 1 protein, essential for efficient ATM activation, was also reduced in absence of myc. Knock down of the endogenous levels of MYC by siRNA in the human cell line HCT116 resulted in decreased ATM and CHK2 phosphorylation in response to irradiation. Conversely, cell death induced by UV irradiation, known to activate the ATR-dependent checkpoint, was similar in all the cell lines, independently of the myc status.
Conclusion:
These data demonstrate that MYC contributes to the activation of the ATM-dependent checkpoint responses, leading to cell death in response to specific genotoxic stimuli.
Insights
The MYC protein is essential for activating the ATM-dependent DNA damage response, crucial for cell death following specific genotoxic stress. Its absence impairs this critical cellular pathway.
Area of Science:
- Cellular Biology
- Molecular Oncology
- DNA Damage Response
Background:
- The MYC protein regulates key cellular processes including proliferation, differentiation, and apoptosis.
- While MYC overexpression induces apoptosis upon genotoxic stress, the upstream effectors remain unidentified.
Purpose of the Study:
- To investigate the role of MYC in the activation of DNA damage checkpoint responses.
- To identify MYC-regulated effectors upstream of the mitochondrial apoptotic pathway.
Main Methods:
- Utilized rat cell lines (TGR-1, HOmyc3, HO15.19) and a human cell line (HCT116) with varying MYC expression levels.
- Exposed cells to genotoxic agents like ionizing radiation (IR) and cytolethal distending toxin (CDT).
- Assessed DNA damage response markers including ATM and CHK2 phosphorylation, and Nbs1 foci formation.
Main Results:
- MYC expression is required for activating ATM-dependent DNA damage checkpoints in response to IR and CDT.
- Impaired phosphorylation of ATM, H2AX, and CHK2 was observed in MYC-deficient cells.
- Reduced Nbs1 nuclear foci formation, essential for ATM activation, occurred in the absence of MYC.
- UV-induced cell death, mediated by the ATR pathway, was independent of MYC status.
Conclusions:
- MYC plays a significant role in activating ATM-dependent checkpoint responses.
- These findings elucidate MYC's contribution to genotoxic-induced cell death via the ATM pathway.
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