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Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice

Huntington's disease (HD) is an autosomal dominant, progressive and fatal neurological disorder caused by an expansion of CAG repeats in exon-1 of the huntingtin gene. The encoded poly-glutamine stretch renders mutant huntingtin prone to aggregation. HdhQ150 mice genocopy a pathogenic repeat (∼...

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Autores principales: Young, Douglas, Mayer, Franziska, Vidotto, Nella, Schweizer, Tatjana, Berth, Ramon, Abramowski, Dorothee, Shimshek, Derya R., van der Putten, P. Herman, Schmid, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3781050/
https://www.ncbi.nlm.nih.gov/pubmed/24086450
http://dx.doi.org/10.1371/journal.pone.0075108
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author Young, Douglas
Mayer, Franziska
Vidotto, Nella
Schweizer, Tatjana
Berth, Ramon
Abramowski, Dorothee
Shimshek, Derya R.
van der Putten, P. Herman
Schmid, Peter
author_facet Young, Douglas
Mayer, Franziska
Vidotto, Nella
Schweizer, Tatjana
Berth, Ramon
Abramowski, Dorothee
Shimshek, Derya R.
van der Putten, P. Herman
Schmid, Peter
author_sort Young, Douglas
collection PubMed
description Huntington's disease (HD) is an autosomal dominant, progressive and fatal neurological disorder caused by an expansion of CAG repeats in exon-1 of the huntingtin gene. The encoded poly-glutamine stretch renders mutant huntingtin prone to aggregation. HdhQ150 mice genocopy a pathogenic repeat (∼150 CAGs) in the endogenous mouse huntingtin gene and model predominantly pre-manifest HD. Treating early is likely important to prevent or delay HD, and HdhQ150 mice may be useful to assess therapeutic strategies targeting pre-manifest HD. This requires appropriate markers and here we demonstrate, that pre-symptomatic HdhQ150 mice show several dramatic mutant huntingtin gene-dose dependent pathological changes including: (i) an increase of neuronal intra-nuclear inclusions (NIIs) in brain, (ii) an increase of extra-nuclear aggregates in dentate gyrus, (iii) a decrease of DARPP32 protein and (iv) an increase in glial markers of neuroinflammation, which curiously did not correlate with local neuronal mutant huntingtin inclusion-burden. HdhQ150 mice developed NIIs also in all retinal neuron cell-types, demonstrating that retinal NIIs are not specific to human exon-1 R6 HD mouse models. Taken together, the striking and robust mutant huntingtin gene-dose related changes in aggregate-load, DARPP32 levels and glial activation markers should greatly facilitate future testing of therapeutic strategies in the HdhQ150 HD mouse model.
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spelling pubmed-37810502013-10-01 Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice Young, Douglas Mayer, Franziska Vidotto, Nella Schweizer, Tatjana Berth, Ramon Abramowski, Dorothee Shimshek, Derya R. van der Putten, P. Herman Schmid, Peter PLoS One Research Article Huntington's disease (HD) is an autosomal dominant, progressive and fatal neurological disorder caused by an expansion of CAG repeats in exon-1 of the huntingtin gene. The encoded poly-glutamine stretch renders mutant huntingtin prone to aggregation. HdhQ150 mice genocopy a pathogenic repeat (∼150 CAGs) in the endogenous mouse huntingtin gene and model predominantly pre-manifest HD. Treating early is likely important to prevent or delay HD, and HdhQ150 mice may be useful to assess therapeutic strategies targeting pre-manifest HD. This requires appropriate markers and here we demonstrate, that pre-symptomatic HdhQ150 mice show several dramatic mutant huntingtin gene-dose dependent pathological changes including: (i) an increase of neuronal intra-nuclear inclusions (NIIs) in brain, (ii) an increase of extra-nuclear aggregates in dentate gyrus, (iii) a decrease of DARPP32 protein and (iv) an increase in glial markers of neuroinflammation, which curiously did not correlate with local neuronal mutant huntingtin inclusion-burden. HdhQ150 mice developed NIIs also in all retinal neuron cell-types, demonstrating that retinal NIIs are not specific to human exon-1 R6 HD mouse models. Taken together, the striking and robust mutant huntingtin gene-dose related changes in aggregate-load, DARPP32 levels and glial activation markers should greatly facilitate future testing of therapeutic strategies in the HdhQ150 HD mouse model. Public Library of Science 2013-09-23 /pmc/articles/PMC3781050/ /pubmed/24086450 http://dx.doi.org/10.1371/journal.pone.0075108 Text en © 2013 Young et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Young, Douglas
Mayer, Franziska
Vidotto, Nella
Schweizer, Tatjana
Berth, Ramon
Abramowski, Dorothee
Shimshek, Derya R.
van der Putten, P. Herman
Schmid, Peter
Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice
title Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice
title_full Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice
title_fullStr Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice
title_full_unstemmed Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice
title_short Mutant Huntingtin Gene-Dose Impacts on Aggregate Deposition, DARPP32 Expression and Neuroinflammation in HdhQ150 Mice
title_sort mutant huntingtin gene-dose impacts on aggregate deposition, darpp32 expression and neuroinflammation in hdhq150 mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3781050/
https://www.ncbi.nlm.nih.gov/pubmed/24086450
http://dx.doi.org/10.1371/journal.pone.0075108
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