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  4. Akt is altered in an animal model of Huntington's disease and in patients
 
research article

Akt is altered in an animal model of Huntington's disease and in patients

Colin, E.
•
Regulier, E.  
•
Perrin, V.  
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2005
European Journal of Neuroscience

The insulin-like growth factor I (IGF-1)/Akt pathway plays a crucial role in Huntington's disease by phosphorylating the causative protein, polyQ-huntingtin, and abolishing its toxic properties [Humbert et al. (2002)Dev. Cell, 2, 831-837; Rangone et al. (2004)Eur. J. Neurosci., 19, 273-279]. Therefore, dysregulation of this pathway may be essential for disease progression. In the present report, we thus aimed to analyse the status of Akt in brain or in peripheral tissues in Huntington's disease. Using a genetic model of Huntington's disease in rat that reproduces neuronal dysfunction and death, we show a progressive alteration of Akt during neuronal dysfunction and prior neurodegeneration. By analysing a limited number of lymphoblasts and lymphocytes, we detected modifications of Akt in Huntington's disease patients confirming a dysregulation of Akt in the disease process. Finally, we demonstrate that during late stages of the disease, Akt is cleaved into an inactive form by caspase-3. These observations demonstrate a progressive but marked alteration of this pro-survival pathway in Huntington's disease, and further implicate it as a key transduction pathway regulating the toxicity of huntingtin.

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Type
research article
DOI
10.1111/j.1460-9568.2005.03985.x
Web of Science ID

WOS:000228560100003

Author(s)
Colin, E.
Regulier, E.  
Perrin, V.  
Durr, A.
Brice, A.
Aebischer, P.  
Deglon, N.  
Humbert, S.
Saudou, F.
Date Issued

2005

Published in
European Journal of Neuroscience
Volume

21

Issue

6

Start page

1478

End page

88

Subjects

Animals

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Caspase 3

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Caspases/metabolism

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Cells

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Cultured

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Corpus Striatum/metabolism/pathology

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*Disease Models

•

Animal

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Female

•

Humans

•

Huntington Disease/genetics/*metabolism/pathology

•

Hydrolysis

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Lymphocytes/enzymology/metabolism

•

Mice

•

Protein-Serine-Threonine Kinases/antagonists &

•

inhibitors/biosynthesis/genetics/*metabolism

•

Proto-Oncogene Proteins/antagonists &

•

inhibitors/biosynthesis/genetics/*metabolism

•

Proto-Oncogene Proteins c-akt

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Rats

•

Rats

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Sprague-Dawley

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Rats

•

Wistar

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Animal

•

inhibitors/biosynthesis/genetics/*metabolism

•

Rats

•

Rats

Note

UMR 146 CNRS/Institut Curie, Bldg. 110, Centre Universitaire, Orsay, France.

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LEN  
Available on Infoscience
August 27, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/27553
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