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Transgenic Rodent Assay for Quantifying Male Germ Cell Mutant Frequency
Published on: August 6, 2014
DNA damage response in human testes and testicular germ cell tumours: biology and implications for therapy
J Bartkova1, E Rajpert-De Meyts, N E Skakkebaek
1Institute of Cancer Biology and Centre for Genotoxic Stress Research, Danish Cancer Society, Copenhagen, Denmark.
Abstract:
DNA damage response (DDR) is emerging as a physiological anti-cancer barrier in early stages of cancer development, as shown for several types of solid cancers derived from somatic cells. Here we discuss our recently published and unpublished results on the exceptional paucity of such constitutive activation of the DDR machinery in human testicular germ cell tumours (TGCTs), including their common pre-invasive stage of carcinoma in situ (CIS). Our conclusions are supported by immunohistochemical analyses of multiple markers of activated DNA damage signalling, such as the phosphorylated ATM and Chk2 checkpoint kinases and phosphorylated histone H2AX. We propose that the unique lack of DDR activation in TGCTs reflects the biology of their cell of origin, the gonocyte. Furthermore, we propose that the lack of DDR activation avoids the pressure to select for mutations in DDR genes such as p53 or ATM, and the resulting intact DDR machinery may have implications for the exceptional curability of TGCTs by DNA damaging therapies.
Insights
Testicular germ cell tumours (TGCTs) show a rare lack of DNA damage response (DDR) activation. This may explain their high curability with DNA damaging therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- DNA damage response (DDR) acts as a cancer barrier in solid tumors.
- Constitutive DDR activation is typically observed in early cancer development.
Purpose of the Study:
- Investigate the activation status of DDR in testicular germ cell tumours (TGCTs).
- Explore the implications of DDR status on TGCT biology and treatment.
Main Methods:
- Immunohistochemical analysis of DDR signaling markers.
- Evaluation of phosphorylated ATM, Chk2, and histone H2AX.
Main Results:
- TGCTs, including carcinoma in situ (CIS), exhibit a notable lack of constitutive DDR activation.
- This paucity is linked to the biology of their cell of origin, the gonocyte.
Conclusions:
- The absence of DDR activation in TGCTs may prevent selection for mutations in DDR genes like p53 or ATM.
- Intact DDR machinery in TGCTs could contribute to their exceptional curability via DNA damaging therapies.
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