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The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases

Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) are two neurodegenerative diseases in which similar pathogenic mechanisms are involved. Both diseases associate to the high propensity of specific misfolded proteins, like TDP-43 or FUS, to mislocalize and aggregate. This is partl...

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Autores principales: Cristofani, Riccardo, Crippa, Valeria, Vezzoli, Giulia, Rusmini, Paola, Galbiati, Mariarita, Cicardi, Maria Elena, Meroni, Marco, Ferrari, Veronica, Tedesco, Barbara, Piccolella, Margherita, Messi, Elio, Carra, Serena, Poletti, Angelo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Netherlands 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5741577/
https://www.ncbi.nlm.nih.gov/pubmed/28608264
http://dx.doi.org/10.1007/s12192-017-0806-9
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author Cristofani, Riccardo
Crippa, Valeria
Vezzoli, Giulia
Rusmini, Paola
Galbiati, Mariarita
Cicardi, Maria Elena
Meroni, Marco
Ferrari, Veronica
Tedesco, Barbara
Piccolella, Margherita
Messi, Elio
Carra, Serena
Poletti, Angelo
author_facet Cristofani, Riccardo
Crippa, Valeria
Vezzoli, Giulia
Rusmini, Paola
Galbiati, Mariarita
Cicardi, Maria Elena
Meroni, Marco
Ferrari, Veronica
Tedesco, Barbara
Piccolella, Margherita
Messi, Elio
Carra, Serena
Poletti, Angelo
author_sort Cristofani, Riccardo
collection PubMed
description Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) are two neurodegenerative diseases in which similar pathogenic mechanisms are involved. Both diseases associate to the high propensity of specific misfolded proteins, like TDP-43 or FUS, to mislocalize and aggregate. This is partly due to their intrinsic biophysical properties and partly as a consequence of failure of the neuronal protein quality control (PQC) system. Several familial ALS/FTD cases are linked to an expansion of a repeated G4C2 hexanucleotide sequence present in the C9ORF72 gene. The G4C2, which localizes in an untranslated region of the C9ORF72 transcript, drives an unconventional repeat-associated ATG-independent translation. This leads to the synthesis of five different dipeptide repeat proteins (DPRs), which are not “classical” misfolded proteins, but generate aberrant aggregation-prone unfolded conformations poorly removed by the PQC system. The DPRs accumulate into p62/SQSTM1 and ubiquitin positive inclusions. Here, we analyzed the biochemical behavior of the five DPRs in immortalized motoneurons. Our data suggest that while the DPRs are mainly processed via autophagy, this system is unable to fully clear their aggregated forms, and thus they tend to accumulate in basal conditions. Overexpression of the small heat shock protein B8 (HSPB8), which facilitates the autophagy-mediated disposal of a large variety of classical misfolded aggregation-prone proteins, significantly decreased the accumulation of most DPR insoluble species. Thus, the induction of HSPB8 might represent a valid approach to decrease DPR-mediated toxicity and maintain motoneuron viability.
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spelling pubmed-57415772018-01-01 The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases Cristofani, Riccardo Crippa, Valeria Vezzoli, Giulia Rusmini, Paola Galbiati, Mariarita Cicardi, Maria Elena Meroni, Marco Ferrari, Veronica Tedesco, Barbara Piccolella, Margherita Messi, Elio Carra, Serena Poletti, Angelo Cell Stress Chaperones Original Paper Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) are two neurodegenerative diseases in which similar pathogenic mechanisms are involved. Both diseases associate to the high propensity of specific misfolded proteins, like TDP-43 or FUS, to mislocalize and aggregate. This is partly due to their intrinsic biophysical properties and partly as a consequence of failure of the neuronal protein quality control (PQC) system. Several familial ALS/FTD cases are linked to an expansion of a repeated G4C2 hexanucleotide sequence present in the C9ORF72 gene. The G4C2, which localizes in an untranslated region of the C9ORF72 transcript, drives an unconventional repeat-associated ATG-independent translation. This leads to the synthesis of five different dipeptide repeat proteins (DPRs), which are not “classical” misfolded proteins, but generate aberrant aggregation-prone unfolded conformations poorly removed by the PQC system. The DPRs accumulate into p62/SQSTM1 and ubiquitin positive inclusions. Here, we analyzed the biochemical behavior of the five DPRs in immortalized motoneurons. Our data suggest that while the DPRs are mainly processed via autophagy, this system is unable to fully clear their aggregated forms, and thus they tend to accumulate in basal conditions. Overexpression of the small heat shock protein B8 (HSPB8), which facilitates the autophagy-mediated disposal of a large variety of classical misfolded aggregation-prone proteins, significantly decreased the accumulation of most DPR insoluble species. Thus, the induction of HSPB8 might represent a valid approach to decrease DPR-mediated toxicity and maintain motoneuron viability. Springer Netherlands 2017-06-12 2018-01 /pmc/articles/PMC5741577/ /pubmed/28608264 http://dx.doi.org/10.1007/s12192-017-0806-9 Text en © The Author(s) 2017 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Paper
Cristofani, Riccardo
Crippa, Valeria
Vezzoli, Giulia
Rusmini, Paola
Galbiati, Mariarita
Cicardi, Maria Elena
Meroni, Marco
Ferrari, Veronica
Tedesco, Barbara
Piccolella, Margherita
Messi, Elio
Carra, Serena
Poletti, Angelo
The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases
title The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases
title_full The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases
title_fullStr The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases
title_full_unstemmed The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases
title_short The small heat shock protein B8 (HSPB8) efficiently removes aggregating species of dipeptides produced in C9ORF72-related neurodegenerative diseases
title_sort small heat shock protein b8 (hspb8) efficiently removes aggregating species of dipeptides produced in c9orf72-related neurodegenerative diseases
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5741577/
https://www.ncbi.nlm.nih.gov/pubmed/28608264
http://dx.doi.org/10.1007/s12192-017-0806-9
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