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Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish

Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a multisystem hereditary ataxia associated with mutations in SACS, which encodes sacsin, a protein of still only partially understood function. Although mouse models of ARSACS mimic largely the disease progression seen in humans,...

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Autores principales: Naef, Valentina, Marchese, Maria, Ogi, Asahi, Fichi, Gianluca, Galatolo, Daniele, Licitra, Rosario, Doccini, Stefano, Verri, Tiziano, Argenton, Francesco, Morani, Federica, Santorelli, Filippo M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8395086/
https://www.ncbi.nlm.nih.gov/pubmed/34445111
http://dx.doi.org/10.3390/ijms22168401
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author Naef, Valentina
Marchese, Maria
Ogi, Asahi
Fichi, Gianluca
Galatolo, Daniele
Licitra, Rosario
Doccini, Stefano
Verri, Tiziano
Argenton, Francesco
Morani, Federica
Santorelli, Filippo M.
author_facet Naef, Valentina
Marchese, Maria
Ogi, Asahi
Fichi, Gianluca
Galatolo, Daniele
Licitra, Rosario
Doccini, Stefano
Verri, Tiziano
Argenton, Francesco
Morani, Federica
Santorelli, Filippo M.
author_sort Naef, Valentina
collection PubMed
description Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a multisystem hereditary ataxia associated with mutations in SACS, which encodes sacsin, a protein of still only partially understood function. Although mouse models of ARSACS mimic largely the disease progression seen in humans, their use in the validation of effective therapies has not yet been proposed. Recently, the teleost Danio rerio has attracted increasing attention as a vertebrate model that allows rapid and economical screening, of candidate molecules, and thus combines the advantages of whole-organism phenotypic assays and in vitro high-throughput screening assays. Through CRISPR/Cas9-based mutagenesis, we generated and characterized a zebrafish sacs-null mutant line that replicates the main features of ARSACS. The sacs-null fish showed motor impairment, hindbrain atrophy, mitochondrial dysfunction, and reactive oxygen species accumulation. As proof of principle for using these mutant fish in high-throughput screening studies, we showed that both acetyl-DL-leucine and tauroursodeoxycholic acid improved locomotor and biochemical phenotypes in sacs(−/−) larvae treated with these neuroprotective agents, by mediating significant rescue of the molecular functions altered by sacsin loss. Taken together, the evidence here reported shows the zebrafish to be a valuable model organism for the identification of novel molecular mechanisms and for efficient and rapid in vivo optimization and screening of potential therapeutic compounds. These findings may pave the way for new interventions targeting the earliest phases of Purkinje cell degeneration in ARSACS.
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spelling pubmed-83950862021-08-28 Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish Naef, Valentina Marchese, Maria Ogi, Asahi Fichi, Gianluca Galatolo, Daniele Licitra, Rosario Doccini, Stefano Verri, Tiziano Argenton, Francesco Morani, Federica Santorelli, Filippo M. Int J Mol Sci Article Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a multisystem hereditary ataxia associated with mutations in SACS, which encodes sacsin, a protein of still only partially understood function. Although mouse models of ARSACS mimic largely the disease progression seen in humans, their use in the validation of effective therapies has not yet been proposed. Recently, the teleost Danio rerio has attracted increasing attention as a vertebrate model that allows rapid and economical screening, of candidate molecules, and thus combines the advantages of whole-organism phenotypic assays and in vitro high-throughput screening assays. Through CRISPR/Cas9-based mutagenesis, we generated and characterized a zebrafish sacs-null mutant line that replicates the main features of ARSACS. The sacs-null fish showed motor impairment, hindbrain atrophy, mitochondrial dysfunction, and reactive oxygen species accumulation. As proof of principle for using these mutant fish in high-throughput screening studies, we showed that both acetyl-DL-leucine and tauroursodeoxycholic acid improved locomotor and biochemical phenotypes in sacs(−/−) larvae treated with these neuroprotective agents, by mediating significant rescue of the molecular functions altered by sacsin loss. Taken together, the evidence here reported shows the zebrafish to be a valuable model organism for the identification of novel molecular mechanisms and for efficient and rapid in vivo optimization and screening of potential therapeutic compounds. These findings may pave the way for new interventions targeting the earliest phases of Purkinje cell degeneration in ARSACS. MDPI 2021-08-05 /pmc/articles/PMC8395086/ /pubmed/34445111 http://dx.doi.org/10.3390/ijms22168401 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Naef, Valentina
Marchese, Maria
Ogi, Asahi
Fichi, Gianluca
Galatolo, Daniele
Licitra, Rosario
Doccini, Stefano
Verri, Tiziano
Argenton, Francesco
Morani, Federica
Santorelli, Filippo M.
Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish
title Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish
title_full Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish
title_fullStr Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish
title_full_unstemmed Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish
title_short Efficient Neuroprotective Rescue of Sacsin-Related Disease Phenotypes in Zebrafish
title_sort efficient neuroprotective rescue of sacsin-related disease phenotypes in zebrafish
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8395086/
https://www.ncbi.nlm.nih.gov/pubmed/34445111
http://dx.doi.org/10.3390/ijms22168401
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