Transgenic expression of E2F3a causes DNA damage leading to ATM-dependent apoptosis
Open Access
- 12 May 2008
- journal article
- research article
- Published by Springer Nature in Oncogene
- Vol. 27 (36), 4954-4961
- https://doi.org/10.1038/onc.2008.138
Abstract
Many early stage human tumors display markers of a DNA-damage response (DDR), including ataxia telangiectasia mutated (ATM) kinase activation. This suggests that DNA damage accumulates during the process of carcinogenesis and that the ATM-dependent response to this damage may function to suppress cancer progression. The E2F3a transcription factor plays an important role in regulating cell proliferation and is amplified in a subset of human cancers. Similar to human premalignant lesions, we find activated ATM and other markers of the DDR in the hyperplastic epidermis of transgenic mice expressing E2F3a through a keratin 5 (K5) promoter. Primary keratinocytes from K5 E2F3a transgenic mice contain increased levels of DNA breaks compared to wild-type cells. E2F3a overexpression also induced DNA damage in primary human fibroblasts that was inhibited by blocking DNA replication. The absence of ATM impaired apoptosis induced by E2F3a and treating K5 E2F3a transgenic mice with caffeine, an inhibitor of ATM and Rad3-related (ATR), promoted skin tumor development. These findings demonstrate that the deregulated expression of E2F3a causes DNA damage under physiological conditions and indicate that the ATM-dependent response to this damage is important for the induction of apoptosis and tumor suppression.This publication has 34 references indexed in Scilit:
- Patterns of somatic mutation in human cancer genomesNature, 2007
- The DNA damage signaling pathway is a critical mediator of oncogene-induced senescenceGenes & Development, 2007
- Oncogene-induced senescence is a DNA damage response triggered by DNA hyper-replicationNature, 2006
- Oncogene-induced senescence is part of the tumorigenesis barrier imposed by DNA damage checkpointsNature, 2006
- Deregulated Replication Licensing Causes DNA Fragmentation Consistent with Head-to-Tail Fork CollisionMolecular Cell, 2006
- Activation of the DNA damage checkpoint and genomic instability in human precancerous lesionsNature, 2005
- DNA damage response as a candidate anti-cancer barrier in early human tumorigenesisNature, 2005
- IGF-1 phosphorylates AMPK-α subunit in ATM-dependent and LKB1-independent mannerBiochemical and Biophysical Research Communications, 2004
- Apoptosis Associated with Deregulated E2F Activity Is Dependent on E2F1 and Atm/Nbs1/Chk2Molecular and Cellular Biology, 2004
- DNA damage activates ATM through intermolecular autophosphorylation and dimer dissociationNature, 2003