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Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression

The common age-related neurodegeneration of Parkinson's disease can result from dominant causes like increased dosage of vesicle-associated alpha-synuclein (SNCA) or recessive causes like deficiency of mitophagy factor PINK1. Interactions between these triggers and their convergence onto shared...

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Autores principales: Gispert, Suzana, Brehm, Nadine, Weil, Jonas, Seidel, Kay, Rüb, Udo, Kern, Beatrice, Walter, Michael, Roeper, Jochen, Auburger, Georg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4986551/
https://www.ncbi.nlm.nih.gov/pubmed/25296918
http://dx.doi.org/10.1093/hmg/ddu520
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author Gispert, Suzana
Brehm, Nadine
Weil, Jonas
Seidel, Kay
Rüb, Udo
Kern, Beatrice
Walter, Michael
Roeper, Jochen
Auburger, Georg
author_facet Gispert, Suzana
Brehm, Nadine
Weil, Jonas
Seidel, Kay
Rüb, Udo
Kern, Beatrice
Walter, Michael
Roeper, Jochen
Auburger, Georg
author_sort Gispert, Suzana
collection PubMed
description The common age-related neurodegeneration of Parkinson's disease can result from dominant causes like increased dosage of vesicle-associated alpha-synuclein (SNCA) or recessive causes like deficiency of mitophagy factor PINK1. Interactions between these triggers and their convergence onto shared pathways are crucial, but currently conflicting evidence exists. Here, we crossed previously characterized mice with A53T-SNCA overexpression and with Pink1 deletion to generate double mutants (DMs). We studied their lifespan and behavior, histological and molecular anomalies at late and early ages. DM animals showed potentiated phenotypes in comparison with both single mutants (SMs), with reduced survival and strongly reduced spontaneous movements from the age of 3 months onwards. In contrast to SMs, a quarter of DM animals manifested progressive paralysis at ages >1 year and exhibited protein aggregates immunopositive for pSer129-SNCA, p62 and ubiquitin in spinal cord and basal brain. Brain proteome quantifications of ubiquitination sites documented altered degradation of SNCA and the DNA-damage marker H2AX at the age of 18 months. Global brain transcriptome profiles and qPCR validation experiments identified many consistent transcriptional dysregulations already at the age of 6 weeks, which were absent from SMs. The observed downregulations for Dapk1, Dcaf17, Rab42 and the novel SNCA-marker Lect1 as well as the upregulations for Dctn5, Mrpl9, Tmem181a, Xaf1 and H2afx reflect changes in ubiquitination, mitochondrial/synaptic/microtubular/cell adhesion dynamics and DNA damage. Thus, our study confirmed that SNCA-triggered neurotoxicity is exacerbated by the absence of PINK1 and identified a novel molecular signature that is detectable early in the course of this double pathology.
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spelling pubmed-49865512016-08-22 Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression Gispert, Suzana Brehm, Nadine Weil, Jonas Seidel, Kay Rüb, Udo Kern, Beatrice Walter, Michael Roeper, Jochen Auburger, Georg Hum Mol Genet Articles The common age-related neurodegeneration of Parkinson's disease can result from dominant causes like increased dosage of vesicle-associated alpha-synuclein (SNCA) or recessive causes like deficiency of mitophagy factor PINK1. Interactions between these triggers and their convergence onto shared pathways are crucial, but currently conflicting evidence exists. Here, we crossed previously characterized mice with A53T-SNCA overexpression and with Pink1 deletion to generate double mutants (DMs). We studied their lifespan and behavior, histological and molecular anomalies at late and early ages. DM animals showed potentiated phenotypes in comparison with both single mutants (SMs), with reduced survival and strongly reduced spontaneous movements from the age of 3 months onwards. In contrast to SMs, a quarter of DM animals manifested progressive paralysis at ages >1 year and exhibited protein aggregates immunopositive for pSer129-SNCA, p62 and ubiquitin in spinal cord and basal brain. Brain proteome quantifications of ubiquitination sites documented altered degradation of SNCA and the DNA-damage marker H2AX at the age of 18 months. Global brain transcriptome profiles and qPCR validation experiments identified many consistent transcriptional dysregulations already at the age of 6 weeks, which were absent from SMs. The observed downregulations for Dapk1, Dcaf17, Rab42 and the novel SNCA-marker Lect1 as well as the upregulations for Dctn5, Mrpl9, Tmem181a, Xaf1 and H2afx reflect changes in ubiquitination, mitochondrial/synaptic/microtubular/cell adhesion dynamics and DNA damage. Thus, our study confirmed that SNCA-triggered neurotoxicity is exacerbated by the absence of PINK1 and identified a novel molecular signature that is detectable early in the course of this double pathology. Oxford University Press 2015-02-15 2014-10-08 /pmc/articles/PMC4986551/ /pubmed/25296918 http://dx.doi.org/10.1093/hmg/ddu520 Text en © The Author 2014. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Articles
Gispert, Suzana
Brehm, Nadine
Weil, Jonas
Seidel, Kay
Rüb, Udo
Kern, Beatrice
Walter, Michael
Roeper, Jochen
Auburger, Georg
Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression
title Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression
title_full Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression
title_fullStr Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression
title_full_unstemmed Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression
title_short Potentiation of neurotoxicity in double-mutant mice with Pink1 ablation and A53T-SNCA overexpression
title_sort potentiation of neurotoxicity in double-mutant mice with pink1 ablation and a53t-snca overexpression
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4986551/
https://www.ncbi.nlm.nih.gov/pubmed/25296918
http://dx.doi.org/10.1093/hmg/ddu520
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