R. Khosravi et al., Rapid ATM-dependent phosphorylation of MDM2 precedes p53 accumulation in response to DNA damage, P NAS US, 96(26), 1999, pp. 14973-14977
Citations number
50
Categorie Soggetti
Multidisciplinary
Journal title
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
The p53 tumor-suppressor protein, a key regulator of cellular responses to
genotoxic stress, is stabilized and activated after DNA damage, This proces
s is associated with posttranslational modifications of p53, some of which
are mediated by the ATM protein kinase, However, these modifications alone
may not account in full for p53 stabilization. p53'5 stability and activity
are negatively regulated by the oncoprotein MDM2, whose gene is activated
by p53. Conceivably, p53 function may be modulated by modifications of MDM2
as well. We show here that after treatment of cells with ionizing radiatio
n or a radiomimetic chemical, but not UV radiation, MDM2 is phosphorylated
rapidly in an ATM-dependent manner, This phosphorylation is independent of
p53 and the DNA-dependent protein kinase, Furthermore, MDM2 is directly pho
sphorylated by ATM in vitro, These findings suggest that in response to DNA
strand breaks, ATM may promote p53 activity and stability by mediating sim
ultaneous phosphorylation of both partners of the p53-MDM2 autoregulatory f
eedback loop.