Literature DB >> 19240687

Nonallele-specific silencing of mutant and wild-type huntingtin demonstrates therapeutic efficacy in Huntington's disease mice.

Ryan L Boudreau1, Jodi L McBride, Inês Martins, Shihao Shen, Yi Xing, Barrie J Carter, Beverly L Davidson.   

Abstract

Huntington's disease (HD) is a fatal neurodegenerative disease caused by mutant huntingtin (htt) protein, and there are currently no effective treatments. Recently, we and others demonstrated that silencing mutant htt via RNA interference (RNAi) provides therapeutic benefit in HD mice. We have since found that silencing wild-type htt in adult mouse striatum is tolerated for at least 4 months. However, given the role of htt in various cellular processes, it remains unknown whether nonallele-specific silencing of both wild-type and mutant htt is a viable therapeutic strategy for HD. Here, we tested whether cosilencing wild-type and mutant htt provides therapeutic benefit and is tolerable in HD mice. After treatment, HD mice showed significant reductions in wild-type and mutant htt, and demonstrated improved motor coordination and survival. We performed transcriptional profiling to evaluate the effects of reducing wild-type htt in adult mouse striatum. We identified gene expression changes that are concordant with previously described roles for htt in various cellular processes. Also, several abnormally expressed transcripts associated with early-stage HD were differentially expressed in our studies, but intriguingly, those involved in neuronal function changed in opposing directions. Together, these encouraging and surprising findings support further testing of nonallele-specific RNAi therapeutics for HD.

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Year:  2009        PMID: 19240687      PMCID: PMC2835182          DOI: 10.1038/mt.2009.17

Source DB:  PubMed          Journal:  Mol Ther        ISSN: 1525-0016            Impact factor:   11.454


  50 in total

1.  Allele-specific silencing of dominant disease genes.

Authors:  Victor M Miller; Haibin Xia; Ginger L Marrs; Cynthia M Gouvion; Gloria Lee; Beverly L Davidson; Henry L Paulson
Journal:  Proc Natl Acad Sci U S A       Date:  2003-06-02       Impact factor: 11.205

2.  Genome-wide analysis of repressor element 1 silencing transcription factor/neuron-restrictive silencing factor (REST/NRSF) target genes.

Authors:  Alexander W Bruce; Ian J Donaldson; Ian C Wood; Sally A Yerbury; Michael I Sadowski; Michael Chapman; Berthold Göttgens; Noel J Buckley
Journal:  Proc Natl Acad Sci U S A       Date:  2004-07-06       Impact factor: 11.205

3.  Artificial microRNAs as siRNA shuttles: improved safety as compared to shRNAs in vitro and in vivo.

Authors:  Ryan L Boudreau; Inês Martins; Beverly L Davidson
Journal:  Mol Ther       Date:  2008-11-11       Impact factor: 11.454

4.  Therapeutic effects of coenzyme Q10 and remacemide in transgenic mouse models of Huntington's disease.

Authors:  Robert J Ferrante; Ole A Andreassen; Alpaslan Dedeoglu; Kimberly L Ferrante; Bruce G Jenkins; Steven M Hersch; M Flint Beal
Journal:  J Neurosci       Date:  2002-03-01       Impact factor: 6.167

5.  Huntingtin controls neurotrophic support and survival of neurons by enhancing BDNF vesicular transport along microtubules.

Authors:  Laurent R Gauthier; Bénédicte C Charrin; Maria Borrell-Pagès; Jim P Dompierre; Hélène Rangone; Fabrice P Cordelières; Jan De Mey; Marcy E MacDonald; Volkmar Lessmann; Sandrine Humbert; Frédéric Saudou
Journal:  Cell       Date:  2004-07-09       Impact factor: 41.582

6.  Histone deacetylase inhibition by sodium butyrate chemotherapy ameliorates the neurodegenerative phenotype in Huntington's disease mice.

Authors:  Robert J Ferrante; James K Kubilus; Junghee Lee; Hoon Ryu; Ayshe Beesen; Birgit Zucker; Karen Smith; Neil W Kowall; Rajiv R Ratan; Ruth Luthi-Carter; Steven M Hersch
Journal:  J Neurosci       Date:  2003-10-15       Impact factor: 6.167

7.  Bioconductor: open software development for computational biology and bioinformatics.

Authors:  Robert C Gentleman; Vincent J Carey; Douglas M Bates; Ben Bolstad; Marcel Dettling; Sandrine Dudoit; Byron Ellis; Laurent Gautier; Yongchao Ge; Jeff Gentry; Kurt Hornik; Torsten Hothorn; Wolfgang Huber; Stefano Iacus; Rafael Irizarry; Friedrich Leisch; Cheng Li; Martin Maechler; Anthony J Rossini; Gunther Sawitzki; Colin Smith; Gordon Smyth; Luke Tierney; Jean Y H Yang; Jianhua Zhang
Journal:  Genome Biol       Date:  2004-09-15       Impact factor: 13.583

8.  Cellular toxicity of polyglutamine expansion proteins: mechanism of transcription factor deactivation.

Authors:  Gregor Schaffar; Peter Breuer; Raina Boteva; Christian Behrends; Nikolay Tzvetkov; Nadine Strippel; Hideki Sakahira; Katja Siegers; Manajit Hayer-Hartl; F Ulrich Hartl
Journal:  Mol Cell       Date:  2004-07-02       Impact factor: 17.970

9.  Early transcriptional profiles in huntingtin-inducible striatal cells by microarray analyses.

Authors:  Simonetta Sipione; Dorotea Rigamonti; Marta Valenza; Chiara Zuccato; Luciano Conti; Joel Pritchard; Charles Kooperberg; James M Olson; Elena Cattaneo
Journal:  Hum Mol Genet       Date:  2002-08-15       Impact factor: 6.150

10.  Huntingtin interacts with REST/NRSF to modulate the transcription of NRSE-controlled neuronal genes.

Authors:  Chiara Zuccato; Marzia Tartari; Andrea Crotti; Donato Goffredo; Marta Valenza; Luciano Conti; Tiziana Cataudella; Blair R Leavitt; Michael R Hayden; Tõnis Timmusk; Dorotea Rigamonti; Elena Cattaneo
Journal:  Nat Genet       Date:  2003-07-27       Impact factor: 38.330

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  156 in total

1.  Basal ganglia atrophy in prodromal Huntington's disease is detectable over one year using automated segmentation.

Authors:  D S Adnan Majid; Adam R Aron; Wesley Thompson; Sarah Sheldon; Samar Hamza; Diederick Stoffers; Dominic Holland; Jody Goldstein; Jody Corey-Bloom; Anders M Dale
Journal:  Mov Disord       Date:  2011-09-19       Impact factor: 10.338

Review 2.  Huntington Disease: Linking Pathogenesis to the Development of Experimental Therapeutics.

Authors:  Tiago A Mestre; Cristina Sampaio
Journal:  Curr Neurol Neurosci Rep       Date:  2017-02       Impact factor: 5.081

Review 3.  Huntington's disease: progress toward effective disease-modifying treatments and a cure.

Authors:  Carl D Johnson; Beverly L Davidson
Journal:  Hum Mol Genet       Date:  2010-04-26       Impact factor: 6.150

Review 4.  Experimental surgical therapies for Huntington's disease.

Authors:  Jelle Demeestere; Wim Vandenberghe
Journal:  CNS Neurosci Ther       Date:  2010-12-28       Impact factor: 5.243

5.  Rational design of therapeutic siRNAs: minimizing off-targeting potential to improve the safety of RNAi therapy for Huntington's disease.

Authors:  Ryan L Boudreau; Ryan M Spengler; Beverly L Davidson
Journal:  Mol Ther       Date:  2011-09-27       Impact factor: 11.454

6.  Sustained therapeutic reversal of Huntington's disease by transient repression of huntingtin synthesis.

Authors:  Holly B Kordasiewicz; Lisa M Stanek; Edward V Wancewicz; Curt Mazur; Melissa M McAlonis; Kimberly A Pytel; Jonathan W Artates; Andreas Weiss; Seng H Cheng; Lamya S Shihabuddin; Gene Hung; C Frank Bennett; Don W Cleveland
Journal:  Neuron       Date:  2012-06-21       Impact factor: 17.173

Review 7.  Allele-selective inhibition of trinucleotide repeat genes.

Authors:  Masayuki Matsui; David R Corey
Journal:  Drug Discov Today       Date:  2012-01-18       Impact factor: 7.851

Review 8.  Oligonucleotide therapeutic approaches for Huntington disease.

Authors:  Dinah W Y Sah; Neil Aronin
Journal:  J Clin Invest       Date:  2011-02-01       Impact factor: 14.808

9.  RNAi or overexpression: alternative therapies for Spinocerebellar Ataxia Type 1.

Authors:  Megan S Keiser; James C Geoghegan; Ryan L Boudreau; Kim A Lennox; Beverly L Davidson
Journal:  Neurobiol Dis       Date:  2013-04-10       Impact factor: 5.996

Review 10.  Use of genetically modified mesenchymal stem cells to treat neurodegenerative diseases.

Authors:  Robert D Wyse; Gary L Dunbar; Julien Rossignol
Journal:  Int J Mol Sci       Date:  2014-01-23       Impact factor: 5.923

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