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Review
Nature Cell Biology  3, E277 - E286 (2001)
doi:10.1038/ncb1201-e277


There is an Erratum (April 2002) associated with this Review.

The evolution of diverse biological responses to DNA damage: insights from yeast and p53

Geoffrey M. Wahl1 & Antony M. Carr2, 3

1  Gene Expression Laboratory, The Salk Institute, La Jolla, California 92037, USA

2  Genome Damage and Stability Centre, University of Sussex, Falmer, Brighton, BN1 9RR, UK

3  A.M.carr@sussex.ac.uk.

The cellular response to ionizing radiation provides a conceptual framework for understanding how a yeast checkpoint system, designed to make binary decisions between arrest and cycling, evolved in a way as to allow reversible arrest, senescence or apoptosis in mammals. We propose that the diversity of responses to ionizing radiation in mammalian cells is possible because of the addition of a new regulatory control module involving the tumour-suppressor gene p53. We review the complex mechanisms controlling p53 activity and discuss how the p53 regulatory module enables cells to grow, arrest or die by integrating DNA damage checkpoint signals with the response to normal mitogenic signalling and the aberrant signalling engendered by oncogene activation.

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Nature Cell Biology
ISSN: 1465-7392
EISSN: 1476-4679
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