Cyclin D1/Cdk4 regulates retinoblastoma protein-mediated cell cycle arrest by site-specific phosphorylation.
Open Access
- 1 February 1997
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 8 (2) , 287-301
- https://doi.org/10.1091/mbc.8.2.287
Abstract
The retinoblastoma protein (pRb) inhibits progression through the cell cycle. Although pRb is phosphorylated when G1 cyclin-dependent kinases (Cdks) are active, the mechanisms underlying pRb regulation are unknown. In vitro phosphorylation by cyclin D1/Cdk4 leads to inactivation of pRb in a microinjection-based in vivo cell cycle assay. In contrast, phosphorylation of pRb by Cdk2 or Cdk3 in complexes with A- or E-type cyclins is not sufficient to inactivate pRb function in this assay, despite extensive phosphorylation and conversion to a slowly migrating "hyperphosphorylated form." The differential effects of phosphorylation on pRb function coincide with modification of distinct sets of sites. Serine 795 is phosphorylated efficiently by Cdk4, even in the absence of an intact LXCXE motif in cyclin D, but not by Cdk2 or Cdk3. Mutation of serine 795 to alanine prevents pRb inactivation by Cdk4 phosphorylation in the microinjection assay. This study identifies a residue whose phosphorylation is critical for inactivation of pRb-mediated growth suppression, and it indicates that hyperphosphorylation and inactivation of pRb are not necessarily synonymous.Keywords
This publication has 42 references indexed in Scilit:
- Differential effects of cdk2 and cdk3 on the control of pRb and E2F function during G1 exit.Genes & Development, 1996
- Tumour-derived p16 alleles encoding proteins defective in cell-cycle inhibitionNature, 1995
- Differential regulation of E2F transactivation by cyclin/cdk2 complexes.Genes & Development, 1994
- Inhibition of cell proliferation by p107, a relative of the retinoblastoma protein.Genes & Development, 1993
- Mice deficient for Rb are nonviable and show defects in neurogenesis and haematopoiesisNature, 1992
- The retinoblastoma protein and the regulation of cell cyclingTrends in Biochemical Sciences, 1992
- A cellular protein that competes with SV40 T antigen for binding to the retinoblastoma gene productNature, 1991
- In vitro phosphorylation of the tumor suppressor gene RB protein by mitosis-specific histone H1 kinaseBiochemical and Biophysical Research Communications, 1989
- The product of the retinoblastoma susceptibility gene has properties of a cell cycle regulatory elementCell, 1989
- Phosphorylation of the retinoblastoma gene product is modulated during the cell cycle and cellular differentiationCell, 1989