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Updated: Aug 9, 2026

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
Neuronal Cdc2-like kinase (Nclk) binds and phosphorylates the retinoblastoma protein
K Y Lee1, C C Helbing, K S Choi
1Department of Anatomy, The University of Calgary, Calgary, Alberta, Canada. kylee@acs.ucalgary.ca
Abstract:
The tumor suppressor retinoblastoma protein (RB) plays a central role in cellular growth regulation, differentiation, and apoptosis. Phosphorylation of RB results in a consequent loss of its ability to inhibit cell cycle progression. However, how RB phosphorylation might be regulated in apoptotic or postmitotic cells, such as neurons, remains unclear. Here we report that neuronal Cdc2-like kinase (Nclk), composed of Cdk5 and a neuronal Cdk5 activator (p25(nck5a)), can bind and phosphorylate RB. Since RB has been shown recently to associate with D-type G1 cyclins and viral oncoproteins through a common peptide sequence motif 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) coprecipitation of GST-RB and reconstituted Cdk5.p25(nck5a), and (iii) phosphorylation of GST-RB by bacterially expressed Cdk5.p25(nck5a) kinase and by Cdk5.p25(nck5a) kinase purified from bovine brain. Finally, we show that immunoprecipitation of RB 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 together, these results suggest that Nclk can bind to and phosphorylate RB in vitro and in vivo. We infer that Nclk may play an important role in regulating the activity of RB in the brain, including perhaps in apoptosing neurons.
Insights
Neuronal Cdc2-like kinase (Nclk) binds and phosphorylates the retinoblastoma protein (RB), a key regulator of cell growth. This suggests Nclk
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Biology
Background:
- The retinoblastoma protein (RB) is a critical tumor suppressor regulating cell cycle progression.
- RB phosphorylation inactivates its cell cycle inhibitory function.
- Regulation of RB phosphorylation in neurons, particularly during apoptosis, is not well understood.
Purpose of the Study:
- To investigate the interaction between neuronal Cdc2-like kinase (Nclk) and the retinoblastoma protein (RB).
- To determine if Nclk can phosphorylate RB.
- To explore the role of Nclk in regulating RB activity in the brain.
Main Methods:
- In vitro binding assays using bacterially expressed p25(nck5a) and GST-RB fusion protein.
- Coprecipitation studies with GST-RB and reconstituted Cdk5.p25(nck5a).
- Kinase assays using purified Cdk5.p25(nck5a) and in vivo studies involving immunoprecipitation from embryonic mouse brain.
Main Results:
- Demonstrated in vitro binding between p25(nck5a) and RB.
- Confirmed coprecipitation of RB with Cdk5.p25(nck5a) complex.
- Showed that Cdk5.p25(nck5a) phosphorylates RB.
- Observed coprecipitation of Cdk5 with RB in embryonic mouse brain homogenates.
- Found peak Cdk5 kinase activity during late embryonic development, coinciding with neuronal apoptosis.
Conclusions:
- Neuronal Cdc2-like kinase (Nclk), comprising Cdk5 and p25(nck5a), binds and phosphorylates the retinoblastoma protein (RB).
- Nclk may regulate RB activity in the brain, potentially influencing processes like neuronal apoptosis.
- The findings suggest a novel mechanism for controlling RB function in the nervous system.
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