Affiliation:
1. Molecular Cardiology, Department of Internal Medicine IV, University of Frankfurt, 60590 Frankfurt, Germany
Abstract
ABSTRACT
The protein kinase Akt is activated by growth factors and promotes cell survival and cell cycle progression. Here, we demonstrate that Akt phosphorylates the cell cycle inhibitory protein p21
Cip1
at Thr 145 in vitro and in intact cells as shown by in vitro kinase assays, site-directed mutagenesis, and phospho-peptide analysis. Akt-dependent phosphorylation of p21
Cip1
at Thr 145 prevents the complex formation of p21
Cip1
with PCNA, which inhibits DNA replication. In addition, phosphorylation of p21
Cip1
at Thr 145 decreases the binding of the cyclin-dependent kinases Cdk2 and Cdk4 to p21
Cip1
and attenuates the Cdk2 inhibitory activity of p21
Cip1
. Immunohistochemistry and biochemical fractionation reveal that the decrease of PCNA binding and regulation of Cdk activity by p21
Cip1
phosphorylation is not caused by altered intracellular localization of p21
Cip1
. As a functional consequence, phospho-mimetic mutagenesis of Thr 145 reverses the cell cycle-inhibitory properties of p21
Cip1
, whereas the nonphosphorylatable p21
Cip1
T145A construct arrests cells in G
0
phase. These data suggest that the modulation of p21
Cip1
cell cycle functions by Akt-mediated phosphorylation regulates endothelial cell proliferation in response to stimuli that activate Akt.
Publisher
American Society for Microbiology
Subject
Cell Biology,Molecular Biology
Cited by
308 articles.
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