Specific regulation of E2F family members by cyclin-dependent kinases

Author:

Dynlacht B D1,Moberg K1,Lees J A1,Harlow E1,Zhu L1

Affiliation:

1. Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA. dynlacht@biosun.harvard.edu

Abstract

The transcription factor E2F-1 interacts stably with cyclin A via a small domain near its amino terminus and is negatively regulated by the cyclin A-dependent kinases. Thus, the activities of E2F, a family of transcription factors involved in cell proliferation, are regulated by at least two types of cell growth regulators: the retinoblastoma protein family and the cyclin-dependent kinase family. To investigate further the regulation of E2F by cyclin-dependent kinases, we have extended our studies to include additional cyclins and E2F family members. Using purified components in an in vitro system, we show that the E2F-1-DP-1 heterodimer, the functionally active form of the E2F activity, is not a substrate for the active cyclin D-dependent kinases but is efficiently phosphorylated by the cyclin B-dependent kinases, which do not form stable complexes with the E2F-1-DP-1 heterodimer. Phosphorylation of the E2F-1-DP-1 heterodimer by cyclin B-dependent kinases, however, did not result in down-regulation of its DNA-binding activity, as is readily seen after phosphorylation by cyclin A-dependent kinases, suggesting that phosphorylation per se is not sufficient to regulate E2F DNA-binding activity. Furthermore, heterodimers containing E2F-4, a family member lacking the cyclin A binding domain found in E2F-1, are not efficiently phosphorylated or functionally down-regulated by cyclin A-dependent kinases. However, addition of the E2F-1 cyclin A binding domain to E2F-4 conferred cyclin A-dependent kinase-mediated down-regulation of the E2F-4-DP-1 heterodimer. Thus, both enzymatic phosphorylation and stable physical interaction are necessary for the specific regulation of E2F family members by cyclin-dependent kinases.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference54 articles.

1. E2F-4, a new member of the E2F gene family, has oncogenic activity and associates with p107 in vivo;Beijersbergen R. L.;Genes Dev.,1994

2. Independent binding of the retinoblastoma protein and p107 to the transcription factor E2F;Cao L.;Nature,1992

3. Characterization of p21cip1/waf1 peptide domains required for cyclin E/cdk2 and PCNA interactions;Chen I.;Oncogene,1996

4. Cyclinbinding motifs are essential for the function of p21CIP1;Chen J.;Mol. Cell. Biol.,1996

5. Activation of human cyclin-dependent kinases in vitro;Desai D.;Mol. Biol. Cell,1992

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