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Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice

The deposition of mutant huntingtin (mHTT) protein aggregates in neurons of patients is a pathological hallmark of Huntington’s disease (HD). Previous investigations in cell-free and cell-based disease models showed mHTT exon-1 (mHTTex1) fragments with pathogenic polyglutamine (polyQ) tracts (>40...

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Autores principales: Schindler, Franziska, Praedel, Nicole, Neuendorf, Nancy, Kunz, Severine, Schnoegl, Sigrid, Mason, Michael A., Taxy, Bridget A., Bates, Gillian P., Khoshnan, Ali, Priller, Josef, Grimm, Jan, Maier, Marcel, Boeddrich, Annett, Wanker, Erich E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8257939/
https://www.ncbi.nlm.nih.gov/pubmed/34239412
http://dx.doi.org/10.3389/fnins.2021.682172
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author Schindler, Franziska
Praedel, Nicole
Neuendorf, Nancy
Kunz, Severine
Schnoegl, Sigrid
Mason, Michael A.
Taxy, Bridget A.
Bates, Gillian P.
Khoshnan, Ali
Priller, Josef
Grimm, Jan
Maier, Marcel
Boeddrich, Annett
Wanker, Erich E.
author_facet Schindler, Franziska
Praedel, Nicole
Neuendorf, Nancy
Kunz, Severine
Schnoegl, Sigrid
Mason, Michael A.
Taxy, Bridget A.
Bates, Gillian P.
Khoshnan, Ali
Priller, Josef
Grimm, Jan
Maier, Marcel
Boeddrich, Annett
Wanker, Erich E.
author_sort Schindler, Franziska
collection PubMed
description The deposition of mutant huntingtin (mHTT) protein aggregates in neurons of patients is a pathological hallmark of Huntington’s disease (HD). Previous investigations in cell-free and cell-based disease models showed mHTT exon-1 (mHTTex1) fragments with pathogenic polyglutamine (polyQ) tracts (>40 glutamines) to self-assemble into highly stable, β-sheet-rich protein aggregates with a fibrillar morphology. HD knock-in mouse models have not been extensively studied with regard to mHTT aggregation. They endogenously produce full-length mHTT with a pathogenic polyQ tract as well as mHTTex1 fragments. Here, we demonstrate that seeding-competent, fibrillar mHTT aggregates can be readily detected in brains of zQ175 knock-in HD mice. To do this, we applied a highly sensitive FRET-based protein amplification assay that is capable of detecting seeding-competent mHTT aggregate species down to the femtomolar range. Furthermore, we show that fibrillar structures with an average length of ∼200 nm can be enriched with aggregate-specific mouse and human antibodies from zQ175 mouse brain extracts through immunoprecipitations, confirming that such structures are formed in vivo. Together these studies indicate that small, fibrillar, seeding-competent mHTT structures are prominent aggregate species in brains of zQ175 mice.
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spelling pubmed-82579392021-07-07 Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice Schindler, Franziska Praedel, Nicole Neuendorf, Nancy Kunz, Severine Schnoegl, Sigrid Mason, Michael A. Taxy, Bridget A. Bates, Gillian P. Khoshnan, Ali Priller, Josef Grimm, Jan Maier, Marcel Boeddrich, Annett Wanker, Erich E. Front Neurosci Neuroscience The deposition of mutant huntingtin (mHTT) protein aggregates in neurons of patients is a pathological hallmark of Huntington’s disease (HD). Previous investigations in cell-free and cell-based disease models showed mHTT exon-1 (mHTTex1) fragments with pathogenic polyglutamine (polyQ) tracts (>40 glutamines) to self-assemble into highly stable, β-sheet-rich protein aggregates with a fibrillar morphology. HD knock-in mouse models have not been extensively studied with regard to mHTT aggregation. They endogenously produce full-length mHTT with a pathogenic polyQ tract as well as mHTTex1 fragments. Here, we demonstrate that seeding-competent, fibrillar mHTT aggregates can be readily detected in brains of zQ175 knock-in HD mice. To do this, we applied a highly sensitive FRET-based protein amplification assay that is capable of detecting seeding-competent mHTT aggregate species down to the femtomolar range. Furthermore, we show that fibrillar structures with an average length of ∼200 nm can be enriched with aggregate-specific mouse and human antibodies from zQ175 mouse brain extracts through immunoprecipitations, confirming that such structures are formed in vivo. Together these studies indicate that small, fibrillar, seeding-competent mHTT structures are prominent aggregate species in brains of zQ175 mice. Frontiers Media S.A. 2021-06-22 /pmc/articles/PMC8257939/ /pubmed/34239412 http://dx.doi.org/10.3389/fnins.2021.682172 Text en Copyright © 2021 Schindler, Praedel, Neuendorf, Kunz, Schnoegl, Mason, Taxy, Bates, Khoshnan, Priller, Grimm, Maier, Boeddrich and Wanker. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Schindler, Franziska
Praedel, Nicole
Neuendorf, Nancy
Kunz, Severine
Schnoegl, Sigrid
Mason, Michael A.
Taxy, Bridget A.
Bates, Gillian P.
Khoshnan, Ali
Priller, Josef
Grimm, Jan
Maier, Marcel
Boeddrich, Annett
Wanker, Erich E.
Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice
title Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice
title_full Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice
title_fullStr Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice
title_full_unstemmed Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice
title_short Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington’s Disease Knock-in Mice
title_sort small, seeding-competent huntingtin fibrils are prominent aggregate species in brains of zq175 huntington’s disease knock-in mice
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8257939/
https://www.ncbi.nlm.nih.gov/pubmed/34239412
http://dx.doi.org/10.3389/fnins.2021.682172
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