NEURONAL CDC2-LIKE KINASE (NCLK) BINDS AND PHOSPHORYLATES THE RETINOBLASTOMA PROTEIN

Citation
Ky. Lee et al., NEURONAL CDC2-LIKE KINASE (NCLK) BINDS AND PHOSPHORYLATES THE RETINOBLASTOMA PROTEIN, The Journal of biological chemistry, 272(9), 1997, pp. 5622-5626
Citations number
60
Categorie Soggetti
Biology
ISSN journal
00219258
Volume
272
Issue
9
Year of publication
1997
Pages
5622 - 5626
Database
ISI
SICI code
0021-9258(1997)272:9<5622:NCK(BA>2.0.ZU;2-D
Abstract
The tumor suppressor retinoblastoma protein (RE) plays a central role in cellular growth regulation, differentiation, and apoptosis. Phospho rylation of RR results in a consequent loss of its ability to inhibit cell cycle progression However, how RE: phosphorylation might be regul ated in apoptotic or postmitotic cells, such as neurons, remains uncle ar. Here we report that neuronal Cdc2-like kinase (Nclk), composed of Cdk5 and a neuronal Cdk5 activator (p25(nck5a)), can bind and phosphor ylate RE. Since RE has been shown recently to associate with D-type G( 1) cyclins and viral oncoproteins through a common peptide sequence mo tif of LXCXE, Nclk binding may be mediated by a related sequence motif (LXCXXE) found in p25(nck5a). We demonstrate (i) in vitro binding of bacterially expressed p25(nck5a) to a GST-RB fusion protein, (ii) copr ecipitation of GST-RB and reconstituted Cdk5 . p25(nck5a), and (iii) p hosphorylation of GST-RB by bacterially expressed Cdk5 . p25(nck5a) ki nase and by Cdk5 . p25(nck5a) kinase purified from bovine brain. Final ly, we show that immunoprecipitation of RE from embryonic mouse brain homogenate results in the coprecipitation of Cdk5 and that Cdk5 kinase activity is maximal during late embryonic development, a period when programmed cell death of developing neurons is greatest, Taken togethe r, these results suggest that NcIk can bind to and phosphorylate RE in vitro and in vivo. We infer that Nclk may play an important role in r egulating the activity of RE in the brain, including perhaps in apopto sing neurons.