M. Kapoor et al., Cooperative phosphorylation at multiple sites is required to activate p53 in response to UV radiation, ONCOGENE, 19(3), 2000, pp. 358-364
The activity of the tumor suppressor p53 is induced in response to DNA-dama
ging agents such as UV and gamma radiation. Phosphorylation is one of the k
ey regulatory steps for activating p53 function. Recent reports have shown
that p53 is phosphorylated at both serines 15 and 392 in response to UV rad
iation, Phosphorylation at serine 15 prevents the binding of HDM2, a negati
ve regulator of p53. Phosphorylation at serine 392 induces the DNA-binding
function of p53, We examined the requirement for phosphorylation at both se
rines and show that both these modifications occur on the same molecule of
p53, In vitro assays demonstrate that phosphorylation at either one of thes
e sites is not sufficient to yield an active p53. Phosphorylation by DNA-PK
, that modifies serines 15 and 37, inhibits HDM2 binding to p53 but does no
t induce the DNA-binding activity of p53, Phosphorylation at serine 392, on
the other hand, stimulates the DNA-binding ability of p53 but does not mak
e it immune to binding and inhibition by HDM2, Thus, our results demonstrat
e that multiple sites need to be modified to yield a functional p53.