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Mapping SCA1 regional vulnerabilities reveals neural and skeletal muscle contributions to disease.
Duvick, Lisa; Southern, W Michael; Benzow, Kellie A; Burch, Zoe N; Handler, Hillary P; Mitchell, Jason S; Kuivinen, Hannah; Gadiparthi, Udaya; Yang, Praseuth; Soles, Alyssa; Sheeler, Carrie A; Rainwater, Orion; Serres, Shannah; Lind, Erin B; Nichols-Meade, Tessa; You, Yun; O'Callaghan, Brennon; Zoghbi, Huda Y; Cvetanovic, Marija; Wheeler, Vanessa C; Ervasti, James M; Koob, Michael D; Orr, Harry T.
Affiliation
  • Duvick L; Institute of Translational Neuroscience.
  • Southern WM; Department of Laboratory Medicine and Pathology, and.
  • Benzow KA; Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis, Minnesota, USA.
  • Burch ZN; Institute of Translational Neuroscience.
  • Handler HP; Department of Laboratory Medicine and Pathology, and.
  • Mitchell JS; Molecular Neurogenetics Unit, Center for Genomic Medicine, Massachusetts General Hospital, Boston, Massachusetts, USA.
  • Kuivinen H; Institute of Translational Neuroscience.
  • Gadiparthi U; Department of Laboratory Medicine and Pathology, and.
  • Yang P; Institute of Translational Neuroscience.
  • Soles A; Department of Laboratory Medicine and Pathology, and.
  • Sheeler CA; Institute of Translational Neuroscience.
  • Rainwater O; Department of Laboratory Medicine and Pathology, and.
  • Serres S; Institute of Translational Neuroscience.
  • Lind EB; Department of Laboratory Medicine and Pathology, and.
  • Nichols-Meade T; Institute of Translational Neuroscience.
  • You Y; Department of Laboratory Medicine and Pathology, and.
  • O'Callaghan B; Institute of Translational Neuroscience.
  • Zoghbi HY; Department of Neuroscience, University of Minnesota, Minneapolis, Minnesota, USA.
  • Cvetanovic M; Institute of Translational Neuroscience.
  • Wheeler VC; Department of Neuroscience, University of Minnesota, Minneapolis, Minnesota, USA.
  • Ervasti JM; Institute of Translational Neuroscience.
  • Koob MD; Department of Laboratory Medicine and Pathology, and.
  • Orr HT; Institute of Translational Neuroscience.
JCI Insight ; 9(9)2024 Mar 21.
Article in En | MEDLINE | ID: mdl-38512434
ABSTRACT
Spinocerebellar ataxia type 1 (SCA1) is a fatal neurodegenerative disease caused by an expanded polyglutamine tract in the widely expressed ataxin-1 (ATXN1) protein. To elucidate anatomical regions and cell types that underlie mutant ATXN1-induced disease phenotypes, we developed a floxed conditional knockin mouse (f-ATXN1146Q/2Q) with mouse Atxn1 coding exons replaced by human ATXN1 exons encoding 146 glutamines. f-ATXN1146Q/2Q mice manifested SCA1-like phenotypes including motor and cognitive deficits, wasting, and decreased survival. Central nervous system (CNS) contributions to disease were revealed using f-ATXN1146Q/2Q;Nestin-Cre mice, which showed improved rotarod, open field, and Barnes maze performance by 6-12 weeks of age. In contrast, striatal contributions to motor deficits using f-ATXN1146Q/2Q;Rgs9-Cre mice revealed that mice lacking ATXN1146Q/2Q in striatal medium-spiny neurons showed a trending improvement in rotarod performance at 30 weeks of age. Surprisingly, a prominent role for muscle contributions to disease was revealed in f-ATXN1146Q/2Q;ACTA1-Cre mice based on their recovery from kyphosis and absence of muscle pathology. Collectively, data from the targeted conditional deletion of the expanded allele demonstrated CNS and peripheral contributions to disease and highlighted the need to consider muscle in addition to the brain for optimal SCA1 therapeutics.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Muscle, Skeletal / Spinocerebellar Ataxias / Disease Models, Animal / Ataxin-1 Limits: Animals / Female / Humans / Male Language: En Journal: JCI Insight Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Muscle, Skeletal / Spinocerebellar Ataxias / Disease Models, Animal / Ataxin-1 Limits: Animals / Female / Humans / Male Language: En Journal: JCI Insight Year: 2024 Document type: Article