AI Article Synopsis

  • Early tumorigenesis involves the DNA-damage checkpoint response (DDR), which is activated as a result of oncogene expression like H-RasV12 in normal human cells.
  • During this process, DDR activation leads to oncogene-induced senescence (OIS), preventing further cell transformation.
  • The research indicates that OIS is a result of excessive DNA replication and that without DDR activation, the cells would progress towards transformation instead of senescence.

Article Abstract

Early tumorigenesis is associated with the engagement of the DNA-damage checkpoint response (DDR). Cell proliferation and transformation induced by oncogene activation are restrained by cellular senescence. It is unclear whether DDR activation and oncogene-induced senescence (OIS) are causally linked. Here we show that senescence, triggered by the expression of an activated oncogene (H-RasV12) in normal human cells, is a consequence of the activation of a robust DDR. Experimental inactivation of DDR abrogates OIS and promotes cell transformation. DDR and OIS are established after a hyper-replicative phase occurring immediately after oncogene expression. Senescent cells arrest with partly replicated DNA and with DNA replication origins having fired multiple times. In vivo DNA labelling and molecular DNA combing reveal that oncogene activation leads to augmented numbers of active replicons and to alterations in DNA replication fork progression. We also show that oncogene expression does not trigger a DDR in the absence of DNA replication. Last, we show that oncogene activation is associated with DDR activation in a mouse model in vivo. We propose that OIS results from the enforcement of a DDR triggered by oncogene-induced DNA hyper-replication.

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Source
http://dx.doi.org/10.1038/nature05327DOI Listing

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