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research article

Expression analysis of novel striatal-enriched genes in Huntington disease

Mazarei, Gelareh
•
Neal, Scott J.
•
Becanovic, Kristina
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2010
Human Molecular Genetics

Selective degeneration of striatal neurons is a pathologic hallmark of Huntington disease (HD). The exact mechanism(s) behind this specific neurodegeneration is still unknown. Expression studies of diseased human post-mortem brain, as well as different mouse models exhibiting striatal degeneration, have demonstrated changes in the expression of many important genes with a large proportion of changes being observed in the striatal-enriched genes. These investigations have raised questions about how enrichment of particular transcripts in the striatum can lead to its selective vulnerability to neurodegeneration. Monitoring the expression changes of striatal-enriched genes during the course of the disease may be informative about their potential involvement in selective degeneration. In this study, we analyzed a Serial Analysis of Gene Expression (SAGE) database (www.mouseatlas.org) and compared the mouse striatum to 18 other brain regions to generate a novel list of striatal-enriched transcripts. These novel striatal-enriched transcripts were subsequently evaluated for expression changes in the YAC128 mouse model of HD, and differentially expressed transcripts were further examined in human post-mortem caudate samples. We identified transcripts with altered expression in YAC128 mice, which also showed consistent expression changes in human post-mortem tissue. The identification of novel striatal-enriched genes with altered expression in HD offers new avenues of study, leading towards a better understanding of specific pathways involved in the selective degeneration of striatal neurons in HD.

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Type
research article
DOI
10.1093/hmg/ddp527
Web of Science ID

WOS:000273702200005

Author(s)
Mazarei, Gelareh
Neal, Scott J.
Becanovic, Kristina
Luthi-Carter, Ruth  
Simpson, Elizabeth M.
Leavitt, Blair R.
Date Issued

2010

Publisher

Oxford University Press

Published in
Human Molecular Genetics
Volume

19

Issue

4

Start page

609

End page

622

Subjects

Yac128 Mouse Model

•

Mutant Huntingtin

•

Indoleamine 2,3-Dioxygenase

•

Transgenic Mice

•

Brain

•

Onset

•

Identification

•

Dysfunction

•

Metabolite

•

Length

Note

National Licences

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LNGF  
Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/75769
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