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PMID: 15115766 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Progressive decrease in chaperone protein levels in a mouse model of Huntington's disease and induction of stress proteins as a therapeutic approach.

Human molecular genetics ·Vol. 13 ·No. 13 ·2004-07-01 ·Pages 1389-405

Hay DG, Sathasivam K, Tobaben S, Stahl B, Marber M, Mestril R, Mahal A, Smith DL, Woodman B, Bates GP

Abstract

The manipulation of chaperone levels has been shown to inhibit aggregation and/or rescue cell death in Saccharomyces cerevisiae, Caenorhabditis elegans, Drosophila melanogaster and cell culture models of Huntington's disease (HD) and other polyglutamine (polyQ) disorders. We show here that a progressive decrease in Hdj1, Hdj2, Hsp70, alphaSGT and betaSGT brain levels likely contributes to disease pathogenesis in the R6/2 mouse model of HD. Despite a predominantly extranuclear location, Hdj1, Hdj2, Hsc70, alphaSGT and betaSGT were found to co-localize with nuclear but not with extranuclear aggregates. Quantification of Hdj1 and alphaSGT mRNA levels showed that these do not change and therefore the decrease in protein levels may be a consequence of their sequestration to aggregates, or an increase in protein turnover, possibly as a consequence of their relocation to the nucleus. We have used genetic and pharmacological approaches to assess the therapeutic potential of chaperone manipulation. Ubiquitous overexpression of Hsp70 in the R6/2 mouse (as a result of crossing to Hsp70 transgenics) delays aggregate formation by 1 week, has no effect on the detergent solubility of aggregates and does not alter the course of the neurological phenotype. We used an organotypic slice culture assay to show that pharmacological induction of the heat shock response might be a more useful approach. Radicicol and geldanamycin could both maintain chaperone induction for at least 3 weeks and alter the detergent soluble properties of polyQ aggregates over this time course.

MeSH Terms
Animals Benzoquinones Brain/metabolism,pathology Cell Nucleus/metabolism Cells, Cultured Crosses, Genetic Disease Models, Animal Enzyme Inhibitors/pharmacology Gene Expression Regulation/drug effects Huntington Disease/metabolism,pathology Lactams, Macrocyclic Lactones/pharmacology Macrolides Mice Molecular Chaperones/genetics,metabolism Peptides/metabolism Quinones/pharmacology RNA, Messenger/biosynthesis
Chemicals
Benzoquinones Enzyme Inhibitors Lactams, Macrocyclic Lactones Macrolides Molecular Chaperones Peptides Quinones RNA, Messenger polyglutamine monorden geldanamycin
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Hay David G
Medical and Molecular Genetics, GKT School of Medicine, King's College, London, UK.
Sathasivam Kirupa
Tobaben Sönke
Stahl Bernd
Marber Michael
Mestril Ruben
Mahal Amarbirpal
Smith Donna L
Woodman Ben
Bates Gillian P
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
2004-07-01
Epub
2004-00-28
Pages
1389-405
Language
English
Region
England
NLM ID
9208958
Subset
IM
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