Derepression of hTERT gene expression promotes escape from oncogene-induced cellular senescence
Priyanka L Patel1, Anitha Suram1, Neena Mirani2
1New Jersey Medical School-Cancer Center, Rutgers Biomedical and Health Sciences, Newark, NJ 07103;
Abstract:
Oncogene-induced senescence (OIS) is a critical tumor-suppressing mechanism that restrains cancer progression at premalignant stages, in part by causing telomere dysfunction. Currently it is unknown whether this proliferative arrest presents a stable and therefore irreversible barrier to cancer progression. Here we demonstrate that cells frequently escape OIS induced by oncogenic H-Ras and B-Raf, after a prolonged period in the senescence arrested state. Cells that had escaped senescence displayed high oncogene expression levels, retained functional DNA damage responses, and acquired chromatin changes that promoted c-Myc-dependent expression of the human telomerase reverse transcriptase gene (hTERT). Telomerase was able to resolve existing telomeric DNA damage response foci and suppressed formation of new ones that were generated as a consequence of DNA replication stress and oncogenic signals. Inhibition of MAP kinase signaling, suppressing c-Myc expression, or inhibiting telomerase activity, caused telomere dysfunction and proliferative defects in cells that had escaped senescence, whereas ectopic expression of hTERT facilitated OIS escape. In human early neoplastic skin and breast tissue, hTERT expression was detected in cells that displayed features of senescence, suggesting that reactivation of telomerase expression in senescent cells is an early event during cancer progression in humans. Together, our data demonstrate that cells arrested in OIS retain the potential to escape senescence by mechanisms that involve derepression of hTERT expression.
Insights
Cells can escape oncogene-induced senescence (OIS), a tumor-suppressing mechanism. Reactivation of human telomerase reverse transcriptase (hTERT) in senescent cells enables this escape, promoting cancer progression.
Area of Science:
- Cellular senescence
- Cancer biology
- Telomere biology
Background:
- Oncogene-induced senescence (OIS) is a key tumor-suppressing mechanism acting at premalignant stages.
- The stability and irreversibility of OIS as a barrier to cancer progression remain unclear.
Purpose of the Study:
- To investigate whether cells can escape OIS.
- To elucidate the mechanisms underlying OIS escape and its implications for cancer progression.
Main Methods:
- Induction of OIS using oncogenic H-Ras and B-Raf.
- Analysis of cellular states, DNA damage response, chromatin changes, and gene expression (hTERT, c-Myc).
- Inhibition of MAP kinase signaling, c-Myc, and telomerase activity; ectopic hTERT expression.
Main Results:
- Cells frequently escape prolonged OIS, retaining oncogene expression and DNA damage responses.
- Chromatin changes promote c-Myc-dependent hTERT expression, which resolves telomere dysfunction.
- Inhibition of signaling pathways or telomerase reactivates senescence phenotypes; hTERT expression facilitates escape.
- hTERT expression is detected in senescent cells in human neoplastic tissues.
Conclusions:
- OIS is not always a stable barrier; cells can escape via derepression of hTERT.
- hTERT reactivation in senescent cells is an early event in human cancer progression.
- Understanding OIS escape mechanisms is crucial for cancer therapy development.
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