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Genetic Ablation of Inositol 1,4,5-Trisphosphate Receptor Type 2 (IP3R2) Fails to Modify Disease Progression in a Mouse Model of Spinocerebellar Ataxia Type 3.
Cunha-Garcia, Daniela; Monteiro-Fernandes, Daniela; Correia, Joana Sofia; Neves-Carvalho, Andreia; Vilaça-Ferreira, Ana Catarina; Guerra-Gomes, Sónia; Viana, João Filipe; Oliveira, João Filipe; Teixeira-Castro, Andreia; Maciel, Patrícia; Duarte-Silva, Sara.
  • Cunha-Garcia D; Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
  • Monteiro-Fernandes D; ICVS/3B's-PT Government Associate Laboratory, 4710-057 Braga/4805-017 Guimarães, Portugal.
  • Correia JS; Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
  • Neves-Carvalho A; ICVS/3B's-PT Government Associate Laboratory, 4710-057 Braga/4805-017 Guimarães, Portugal.
  • Vilaça-Ferreira AC; Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
  • Guerra-Gomes S; ICVS/3B's-PT Government Associate Laboratory, 4710-057 Braga/4805-017 Guimarães, Portugal.
  • Viana JF; Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
  • Oliveira JF; ICVS/3B's-PT Government Associate Laboratory, 4710-057 Braga/4805-017 Guimarães, Portugal.
  • Teixeira-Castro A; Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
  • Maciel P; ICVS/3B's-PT Government Associate Laboratory, 4710-057 Braga/4805-017 Guimarães, Portugal.
  • Duarte-Silva S; Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
Int J Mol Sci ; 24(13)2023 Jun 25.
Article en En | MEDLINE | ID: mdl-37445783
ABSTRACT
Spinocerebellar ataxia type 3 (SCA3) is a rare neurodegenerative disease caused by an abnormal polyglutamine expansion within the ataxin-3 protein (ATXN3). This leads to neurodegeneration of specific brain and spinal cord regions, resulting in a progressive loss of motor function. Despite neuronal death, non-neuronal cells, including astrocytes, are also involved in SCA3 pathogenesis. Astrogliosis is a common pathological feature in SCA3 patients and animal models of the disease. However, the contribution of astrocytes to SCA3 is not clearly defined. Inositol 1,4,5-trisphosphate receptor type 2 (IP3R2) is the predominant IP3R in mediating astrocyte somatic calcium signals, and genetically ablation of IP3R2 has been widely used to study astrocyte function. Here, we aimed to investigate the relevance of IP3R2 in the onset and progression of SCA3. For this, we tested whether IP3R2 depletion and the consecutive suppression of global astrocytic calcium signalling would lead to marked changes in the behavioral phenotype of a SCA3 mouse model, the CMVMJD135 transgenic line. This was achieved by crossing IP3R2 null mice with the CMVMJD135 mouse model and performing a longitudinal behavioral characterization of these mice using well-established motor-related function tests. Our results demonstrate that IP3R2 deletion in astrocytes does not modify SCA3 progression.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Enfermedad de Machado-Joseph / Enfermedades Neurodegenerativas Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Año: 2023 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Enfermedad de Machado-Joseph / Enfermedades Neurodegenerativas Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Año: 2023 Tipo del documento: Article