Cyclin-binding motifs are essential for the function of p21CIP1

Author:

Chen J1,Saha P1,Kornbluth S1,Dynlacht B D1,Dutta A1

Affiliation:

1. Department of Pathology, Division of Molecular Oncology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.

Abstract

The cyclin-dependent kinase (Cdk) inhibitor p21 is induced by the tumor suppressor p53 and is required for the G1-S block in cells with DNA damage. We report that there are two copies of a cyclin-binding motif in p21, Cy1 and Cy2, which interact with the cyclins independently of Cdk2. The cyclin-binding motifs of p21 are required for optimum inhibition of cyclin-Cdk kinases in vitro and for growth suppression in vivo. Peptides containing only the Cy1 or Cy2 motif partially inhibit cyclin-Cdk kinase activity in vitro and DNA replication in Xenopus egg extracts. A monoclonal antibody which recognizes the Cy1 site of p21 specifically disrupts the association of p21 with cyclin E-Cdk2 and with cyclin D1-Cdk4 in cell extracts. Taken together, these observations suggest that the cyclin-binding motif of p21 is important for kinase inhibition and for formation of p21-cyclin-Cdk complexes in the cell. Finally, we show that the cyclin-Cdk complex is partially active if associated with only the cyclin-binding motif of p21, providing an explanation for how p21 is found associated with active cyclin-Cdk complexes in vivo. The Cy sequences may be general motifs used by Cdk inhibitors or substrates to interact with the cyclin in a cyclin-Cdk complex.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference47 articles.

1. Radiation-induced cell cycle arrest compromised by p21 deficiency;Brugarolas J.;Nature (London),1995

2. Characterization of p21 (Cip1/Waf1) peptide domains required for cyclin E/cdk2 and PCNA interaction;Chen I.;Oncogene,1996

3. Separate domains of p21 involved in the inhibition of cdk kinase and PCNA;Chen J.;Nature (London),1995

4. Mice lacking p21(cip1/waf1) undergo normal development, but are defective in g1 checkpoint control;Deng C. X.;Cell,1995

5. Inhibition of DNA replication factor RPA by p53;Dutta A.;Nature (London),1993

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