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research article

Implication of the JNK pathway in a rat model of Huntington's disease

Perrin, V
•
Dufour, N
•
Raoul, C  
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2009
Experimental Neurology

Huntington's disease (HD) is a neurodegenerative disorder resulting from the expansion of a glutamine repeat (polyQ) in the N-terminus of the huntingtin (htt) protein. Expression of polyQ-containing proteins has been previously shown to induce various cellular stress responses. Among these, activation of the c-Jun N-terminal kinase (JNK) cascade has been observed in cellular models of HD. However, the implication of the JNK pathway has not previously been evaluated in the striatum of HD animal models. Here we report that the JNK pathway participates in HD pathology in a rat model of the disease. Increased phosphorylation of the JNK target c-Jun was observed as early as 4 weeks and persisted for 13 weeks after lentiviral-mediated expression of htt171-82Q. In order to assess the importance of this pathway in HD pathology, JNK inhibitors including dominant-negative mutants of upstream kinases (ASK1(K709R), MEKK1(D1369A)), a c-Jun mutant (Delta169c-Jun) and the active domain of the scaffold protein JIP-1/IBI (IBI-JBD) were tested for their ability to mitigate the effect of htt171-82Q. The overexpression of MEKK1(D1369A) and JIP-1/IBI reduced the polyQ-related loss of DARPP-32 expression, while the other inhibitors had no effect. In all cases, the formation of EM48-positive htt inclusions and P-c-Jun immunoreactivity were unaltered. These results suggest that JNK activation is involved in HD and that blockade of this pathway may be of benefit in counteracting HD-related neurotoxicity.

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Type
research article
DOI
10.1016/j.expneurol.2008.10.008
Web of Science ID

WOS:000262462300024

Author(s)
Perrin, V
•
Dufour, N
•
Raoul, C  
•
Hassig, R
•
Brouillet, E
•
Aebischer, P  
•
Lüthi-Carter, R  
•
Déglon, N  
Date Issued

2009

Published in
Experimental Neurology
Volume

215

Issue

1

Article Number

191.200

Subjects

Polyglutamine-Expanded Huntingtin

•

Activated Protein-Kinase

•

Neurotrophic Factor

•

Lentiviral Vectors

•

Peptide Inhibitor

•

Induced Apoptosis

•

Striatal Neurons

•

Cell-Death

•

Stress

•

Expression

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LEN  
Available on Infoscience
November 24, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/44423
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