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ALS-associated genes in SCA2 mouse spinal cord transcriptomes

The spinocerebellar ataxia type 2 (SCA2) gene ATXN2 has a prominent role in the pathogenesis and treatment of amyotrophic lateral sclerosis (ALS). In addition to cerebellar ataxia, motor neuron disease is often seen in SCA2, and ATXN2 CAG repeat expansions in the long normal range increase ALS risk....

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Autores principales: Scoles, Daniel R, Dansithong, Warunee, Pflieger, Lance T, Paul, Sharan, Gandelman, Mandi, Figueroa, Karla P, Rigo, Frank, Bennett, C Frank, Pulst, Stefan M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7322574/
https://www.ncbi.nlm.nih.gov/pubmed/32307524
http://dx.doi.org/10.1093/hmg/ddaa072
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author Scoles, Daniel R
Dansithong, Warunee
Pflieger, Lance T
Paul, Sharan
Gandelman, Mandi
Figueroa, Karla P
Rigo, Frank
Bennett, C Frank
Pulst, Stefan M
author_facet Scoles, Daniel R
Dansithong, Warunee
Pflieger, Lance T
Paul, Sharan
Gandelman, Mandi
Figueroa, Karla P
Rigo, Frank
Bennett, C Frank
Pulst, Stefan M
author_sort Scoles, Daniel R
collection PubMed
description The spinocerebellar ataxia type 2 (SCA2) gene ATXN2 has a prominent role in the pathogenesis and treatment of amyotrophic lateral sclerosis (ALS). In addition to cerebellar ataxia, motor neuron disease is often seen in SCA2, and ATXN2 CAG repeat expansions in the long normal range increase ALS risk. Also, lowering ATXN2 expression in TDP-43 ALS mice prolongs their survival. Here we investigated the ATXN2 relationship with motor neuron dysfunction in vivo by comparing spinal cord (SC) transcriptomes reported from TDP-43 and SOD1 ALS mice and ALS patients with those from SCA2 mice. SC transcriptomes were determined using an SCA2 bacterial artificial chromosome mouse model expressing polyglutamine expanded ATXN2. SCA2 cerebellar transcriptomes were also determined, and we also investigated the modification of gene expression following treatment of SCA2 mice with an antisense oligonucleotide (ASO) lowering ATXN2 expression. Differentially expressed genes (DEGs) defined three interconnected pathways (innate immunity, fatty acid biosynthesis and cholesterol biosynthesis) in separate modules identified by weighted gene co-expression network analysis. Other key pathways included the complement system and lysosome/phagosome pathways. Of all DEGs in SC, 12.6% were also dysregulated in the cerebellum. Treatment of mice with an ATXN2 ASO also modified innate immunity, the complement system and lysosome/phagosome pathways. This study provides new insights into the underlying molecular basis of SCA2 SC phenotypes and demonstrates annotated pathways shared with TDP-43 and SOD1 ALS mice and ALS patients. It also emphasizes the importance of ATXN2 in motor neuron degeneration and confirms ATXN2 as a therapeutic target.
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spelling pubmed-73225742020-07-02 ALS-associated genes in SCA2 mouse spinal cord transcriptomes Scoles, Daniel R Dansithong, Warunee Pflieger, Lance T Paul, Sharan Gandelman, Mandi Figueroa, Karla P Rigo, Frank Bennett, C Frank Pulst, Stefan M Hum Mol Genet General Article The spinocerebellar ataxia type 2 (SCA2) gene ATXN2 has a prominent role in the pathogenesis and treatment of amyotrophic lateral sclerosis (ALS). In addition to cerebellar ataxia, motor neuron disease is often seen in SCA2, and ATXN2 CAG repeat expansions in the long normal range increase ALS risk. Also, lowering ATXN2 expression in TDP-43 ALS mice prolongs their survival. Here we investigated the ATXN2 relationship with motor neuron dysfunction in vivo by comparing spinal cord (SC) transcriptomes reported from TDP-43 and SOD1 ALS mice and ALS patients with those from SCA2 mice. SC transcriptomes were determined using an SCA2 bacterial artificial chromosome mouse model expressing polyglutamine expanded ATXN2. SCA2 cerebellar transcriptomes were also determined, and we also investigated the modification of gene expression following treatment of SCA2 mice with an antisense oligonucleotide (ASO) lowering ATXN2 expression. Differentially expressed genes (DEGs) defined three interconnected pathways (innate immunity, fatty acid biosynthesis and cholesterol biosynthesis) in separate modules identified by weighted gene co-expression network analysis. Other key pathways included the complement system and lysosome/phagosome pathways. Of all DEGs in SC, 12.6% were also dysregulated in the cerebellum. Treatment of mice with an ATXN2 ASO also modified innate immunity, the complement system and lysosome/phagosome pathways. This study provides new insights into the underlying molecular basis of SCA2 SC phenotypes and demonstrates annotated pathways shared with TDP-43 and SOD1 ALS mice and ALS patients. It also emphasizes the importance of ATXN2 in motor neuron degeneration and confirms ATXN2 as a therapeutic target. Oxford University Press 2020-06-27 2020-04-20 /pmc/articles/PMC7322574/ /pubmed/32307524 http://dx.doi.org/10.1093/hmg/ddaa072 Text en © The Author(s) 2020. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle General Article
Scoles, Daniel R
Dansithong, Warunee
Pflieger, Lance T
Paul, Sharan
Gandelman, Mandi
Figueroa, Karla P
Rigo, Frank
Bennett, C Frank
Pulst, Stefan M
ALS-associated genes in SCA2 mouse spinal cord transcriptomes
title ALS-associated genes in SCA2 mouse spinal cord transcriptomes
title_full ALS-associated genes in SCA2 mouse spinal cord transcriptomes
title_fullStr ALS-associated genes in SCA2 mouse spinal cord transcriptomes
title_full_unstemmed ALS-associated genes in SCA2 mouse spinal cord transcriptomes
title_short ALS-associated genes in SCA2 mouse spinal cord transcriptomes
title_sort als-associated genes in sca2 mouse spinal cord transcriptomes
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7322574/
https://www.ncbi.nlm.nih.gov/pubmed/32307524
http://dx.doi.org/10.1093/hmg/ddaa072
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