DNA Damage Signaling-Induced Cancer Cell Reprogramming as a Driver of Tumor Relapse

Doria Filipponi1, Alexander Emelyanov1, Julius Muller2

  • 1Institute for Research on Cancer and Aging of Nice (IRCAN), INSERM, Université Côte d'Azur, CNRS, Nice, France.

Molecular Cell
|April 8, 2019
PubMed

Insights

The DNA damage response (DDR) can unexpectedly promote cancer by reactivating the pluripotency gene OCT4, leading to chemotherapy resistance and tumor relapse. Deleting OCT4 reverses these effects, offering new therapeutic targets.

Area of Science:

  • Cancer Biology
  • Epigenetics
  • DNA Damage Response

Background:

  • The DNA damage response (DDR) is recognized for its role in suppressing tumor formation.
  • However, the intricate mechanisms by which DDR influences cancer progression remain incompletely understood.

Purpose of the Study:

  • To investigate the role of DDR signaling in epigenetic modifications and its impact on tumorigenesis.
  • To explore the potential of targeting DDR-induced epigenetic changes for cancer therapy.

Main Methods:

  • Genetic-lineage tracing experiments in mice.
  • In situ labeling approaches.
  • Analysis of DNA methylation and gene expression, including OCT4, Myc, and macroH2A.

Main Results:

  • DDR signaling triggers epigenetic events leading to the activation of pro-tumorigenic genes and the pluripotency gene OCT4.
  • Loss of DNA methylation is an initial step in OCT4 reactivation, further promoted by oncogenes like Myc and reduced macroH2A.
  • DDR-induced OCT4 reactivation confers chemoresistance and drives tumor relapse in both mouse models and human cancers.
  • OCT4 deletion effectively reverses chemoresistance and delays tumor relapse.

Conclusions:

  • DDR plays a previously unrecognized tumor-promoting role through cancer cell reprogramming via OCT4 reactivation.
  • Targeting DDR-induced epigenetic reprogramming and OCT4 offers novel therapeutic strategies for overcoming chemoresistance and preventing cancer relapse.

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