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Pathological impact of SMN2 mis-splicing in adult SMA mice

Loss-of-function mutations in SMN1 cause spinal muscular atrophy (SMA), a leading genetic cause of infant mortality. The related SMN2 gene expresses suboptimal levels of functional SMN protein, due to a splicing defect. Many SMA patients reach adulthood, and there is also adult-onset (type IV) SMA....

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Autores principales: Sahashi, Kentaro, Ling, Karen K Y, Hua, Yimin, Wilkinson, John Erby, Nomakuchi, Tomoki, Rigo, Frank, Hung, Gene, Xu, David, Jiang, Ya-Ping, Lin, Richard Z, Ko, Chien-Ping, Bennett, C Frank, Krainer, Adrian R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3799581/
https://www.ncbi.nlm.nih.gov/pubmed/24014320
http://dx.doi.org/10.1002/emmm.201302567
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author Sahashi, Kentaro
Ling, Karen K Y
Hua, Yimin
Wilkinson, John Erby
Nomakuchi, Tomoki
Rigo, Frank
Hung, Gene
Xu, David
Jiang, Ya-Ping
Lin, Richard Z
Ko, Chien-Ping
Bennett, C Frank
Krainer, Adrian R
author_facet Sahashi, Kentaro
Ling, Karen K Y
Hua, Yimin
Wilkinson, John Erby
Nomakuchi, Tomoki
Rigo, Frank
Hung, Gene
Xu, David
Jiang, Ya-Ping
Lin, Richard Z
Ko, Chien-Ping
Bennett, C Frank
Krainer, Adrian R
author_sort Sahashi, Kentaro
collection PubMed
description Loss-of-function mutations in SMN1 cause spinal muscular atrophy (SMA), a leading genetic cause of infant mortality. The related SMN2 gene expresses suboptimal levels of functional SMN protein, due to a splicing defect. Many SMA patients reach adulthood, and there is also adult-onset (type IV) SMA. There is currently no animal model for adult-onset SMA, and the tissue-specific pathogenesis of post-developmental SMN deficiency remains elusive. Here, we use an antisense oligonucleotide (ASO) to exacerbate SMN2 mis-splicing. Intracerebroventricular ASO injection in adult SMN2-transgenic mice phenocopies key aspects of adult-onset SMA, including delayed-onset motor dysfunction and relevant histopathological features. SMN2 mis-splicing increases during late-stage disease, likely accelerating disease progression. Systemic ASO injection in adult mice causes peripheral SMN2 mis-splicing and affects prognosis, eliciting marked liver and heart pathologies, with decreased IGF1 levels. ASO dose–response and time-course studies suggest that only moderate SMN levels are required in the adult central nervous system, and treatment with a splicing-correcting ASO shows a broad therapeutic time window. We describe distinctive pathological features of adult-onset and early-onset SMA.
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spelling pubmed-37995812013-10-23 Pathological impact of SMN2 mis-splicing in adult SMA mice Sahashi, Kentaro Ling, Karen K Y Hua, Yimin Wilkinson, John Erby Nomakuchi, Tomoki Rigo, Frank Hung, Gene Xu, David Jiang, Ya-Ping Lin, Richard Z Ko, Chien-Ping Bennett, C Frank Krainer, Adrian R EMBO Mol Med Research Articles Loss-of-function mutations in SMN1 cause spinal muscular atrophy (SMA), a leading genetic cause of infant mortality. The related SMN2 gene expresses suboptimal levels of functional SMN protein, due to a splicing defect. Many SMA patients reach adulthood, and there is also adult-onset (type IV) SMA. There is currently no animal model for adult-onset SMA, and the tissue-specific pathogenesis of post-developmental SMN deficiency remains elusive. Here, we use an antisense oligonucleotide (ASO) to exacerbate SMN2 mis-splicing. Intracerebroventricular ASO injection in adult SMN2-transgenic mice phenocopies key aspects of adult-onset SMA, including delayed-onset motor dysfunction and relevant histopathological features. SMN2 mis-splicing increases during late-stage disease, likely accelerating disease progression. Systemic ASO injection in adult mice causes peripheral SMN2 mis-splicing and affects prognosis, eliciting marked liver and heart pathologies, with decreased IGF1 levels. ASO dose–response and time-course studies suggest that only moderate SMN levels are required in the adult central nervous system, and treatment with a splicing-correcting ASO shows a broad therapeutic time window. We describe distinctive pathological features of adult-onset and early-onset SMA. Blackwell Publishing Ltd 2013-10 2013-09-09 /pmc/articles/PMC3799581/ /pubmed/24014320 http://dx.doi.org/10.1002/emmm.201302567 Text en © 2013 The Authors. Published by John Wiley and Sons, Ltd on behalf of EMBO http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Sahashi, Kentaro
Ling, Karen K Y
Hua, Yimin
Wilkinson, John Erby
Nomakuchi, Tomoki
Rigo, Frank
Hung, Gene
Xu, David
Jiang, Ya-Ping
Lin, Richard Z
Ko, Chien-Ping
Bennett, C Frank
Krainer, Adrian R
Pathological impact of SMN2 mis-splicing in adult SMA mice
title Pathological impact of SMN2 mis-splicing in adult SMA mice
title_full Pathological impact of SMN2 mis-splicing in adult SMA mice
title_fullStr Pathological impact of SMN2 mis-splicing in adult SMA mice
title_full_unstemmed Pathological impact of SMN2 mis-splicing in adult SMA mice
title_short Pathological impact of SMN2 mis-splicing in adult SMA mice
title_sort pathological impact of smn2 mis-splicing in adult sma mice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3799581/
https://www.ncbi.nlm.nih.gov/pubmed/24014320
http://dx.doi.org/10.1002/emmm.201302567
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