|
|
|
||||
| Home Help Feedback Subscriptions Archive Search | |||||
The fully linked HTML version of this article has now been published.
In large models of neuronal cell death, there is a tight correlation between Cdk5 deregulation and cell-cycle dysfunction. However, pathways that link Cdk5 to the cell cycle during neuronal death are still unclear. We have investigated the molecular events that precede p25/Cdk5-triggered neuronal death using a neuronal cell line that allows inducible p25 expression. In this system, no sign of apoptosis was seen before 24 hours of p25 induction. Thus, at that time, cell-cycle-regulatory proteins were analysed by immunoblotting and some of them showed a significant deregulation. Interestingly, after time-course experiments, the earliest feature correlated with p25 expression was the phosphorylation of the retinoblastoma protein (Rb). Indeed, this phosphorylation was observed 6 hours after p25 induction and was abolished in the presence of a Cdk5 inhibitor, roscovitine, which does not inhibit the usual Rb cyclin-D kinases Cdk4 and Cdk6. Furthermore, analyses of levels and subcellular localization of Cdk-related cyclins did not reveal any change following Cdk5 activation, arguing for a direct effect of Cdk5 activity on Rb protein. This latter result was clearly demonstrated by in vitro kinase assays showing that the p25-Cdk5 complex in our cell system phosphorylates Rb directly without the need for any intermediary kinase activity. Hence, Rb might be an appropriate candidate that connects Cdk5 to cell-cycle deregulation during neuronal cell death.
This article has been cited by other articles:
JCS ePress
online publication date 1 Mar 2005
doi: 10.1242/jcs.01724
This Article ![]()
![]()
Full Text (PDF)
![]()
All Versions of this Article:
jcs.01724v1
118/6/1291
most recent![]()
Alert me when this article is cited
![]()
Alert me if a correction is posted
![]()
Services ![]()
![]()
Email this article to a friend
![]()
Similar articles in this journal
![]()
Similar articles in PubMed
![]()
Alert me to new issues of the journal
![]()
Download to citation manager
![]()
![]()
Citing Articles ![]()
![]()
Citing Articles via HighWire
![]()
Citing Articles via Google Scholar
![]()
Google Scholar ![]()
![]()
Articles by Hamdane, M.
![]()
Articles by Buée, L.
![]()
Search for Related Content
![]()
PubMed ![]()
![]()
PubMed Citation
![]()
Articles by Hamdane, M.
![]()
Articles by Buée, L.
Research Article
p25/Cdk5-mediated retinoblastoma phosphorylation is an early event in neuronal cell death
* Author for correspondence (e-mail: buee{at}lille.inserm.fr)
![]()
![]()

![]()
![]()
![]()
D. Muyllaert, D. Terwel, A. Kremer, K. Sennvik, P. Borghgraef, H. Devijver, I. Dewachter, and F. Van Leuven
Neurodegeneration and Neuroinflammation in cdk5/p25-Inducible Mice: A Model for Hippocampal Sclerosis and Neocortical Degeneration
Am. J. Pathol.,
February 1, 2008;
172(2):
470 - 485.
[Abstract]
[Full Text]
[PDF]
![]()
![]()
![]()

![]()
![]()
![]()
H. Kamei, T. Saito, M. Ozawa, Y. Fujita, A. Asada, J. A. Bibb, T. C. Saido, H. Sorimachi, and S.-i. Hisanaga
Suppression of Calpain-dependent Cleavage of the CDK5 Activator p35 to p25 by Site-specific Phosphorylation
J. Biol. Chem.,
January 19, 2007;
282(3):
1687 - 1694.
[Abstract]
[Full Text]
[PDF]
![]()
![]()
![]()

![]()
![]()
![]()
S. Cicero and K. Herrup
Cyclin-Dependent Kinase 5 Is Essential for Neuronal Cell Cycle Arrest and Differentiation
J. Neurosci.,
October 19, 2005;
25(42):
9658 - 9668.
[Abstract]
[Full Text]
[PDF]
![]()
© The Company of Biologists Ltd 2005