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CAK-independent activation of CDK6 by a viral cyclin

  1. Author:
    Kaldis, P.
    Ojala, P. M.
    Tong, L.
    Makela, T. P.
    Solomon, M. J.
  2. Author Address

    NCI, Frederick Canc Res & Dev Ctr, Regulat Cell Growth Lab, Bldg 560-12-91A, W 7th St, Frederick, MD 21702 USA. Yale Univ, Sch Med, Dept Mol Biophys & Biochem, New Haven, CT 06520 USA. Haartman Inst, SF-00014 Helsinki, Finland. Univ Helsinki, Cent Hosp, SF-00014 Helsinki, Finland. Mem Sloan Kettering Canc Ctr, Cellular Biochem & Biophys Program, New York, NY 10021 USA. Kaldis P NCI, Frederick Canc Res & Dev Ctr, Regulat Cell Growth Lab, Bldg 560-12-91A, W 7th St, Frederick, MD 21702 USA.
    1. Year: 2001
  1. Journal: Molecular Biology of the Cell
    1. 12
    2. 12
    3. Pages: 3987-3999
  2. Type of Article: Article
  1. Abstract:

    In normal cells, activation of cyclin-dependent kinases (cdks) requires binding to a cyclin and phosphorylation by the cdk- activating kinase (CAK). The Kaposi's sarcoma-associated herpesvirus encodes a protein with similarity to D-type cyclins. This KSHV-cyclin activates CDK6, alters its substrate specificity, and renders CDK6 insensitive to inhibition by the cdk inhibitor P16(INK4a). Here we investigate the regulation of the CDK6/KSHV-cyclin kinase with the use of purified proteins and a cell-based assay. We find that KSHV-cyclin can activate CDK6 independent of phosphorylation by CAK in vitro. In addition, CAK phosphorylation decreased the p16(INK4a) sensitivity of CDK6/KSHV-cyclin complexes. In cells, expression of CDK6 or to a lesser degree of a nonphosphorylatable CDK6(T177A) together with KSHV-cyclin induced apoptosis, indicating that CDK6 activation by KSHV-cyclin can proceed in the absence of phosphorylation by CAK in vivo. Coexpression of p16 partially protected cells from cell death. p16 and KSHV- cyclin can form a ternary complex with CDK6 that can be detected by binding assays as well as by conformational changes in CDK6. The Kaposi's sarcoma-associated herpesvirus has adopted a clever strategy to render cell cycle progression independent of mitogenic signals, cdk inhibition, or phosphorylation by CAK.

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