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hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation

Prion-like proteins form multivalent assemblies and phase separate into membraneless organelles. Heterogeneous ribonucleoprotein D-like (hnRNPDL) is a RNA-processing prion-like protein with three alternative splicing (AS) isoforms, which lack none, one, or both of its two disordered domains. It has...

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Autores principales: Batlle, Cristina, Yang, Peiguo, Coughlin, Maura, Messing, James, Pesarrodona, Mireia, Szulc, Elzbieta, Salvatella, Xavier, Kim, Hong Joo, Taylor, J. Paul, Ventura, Salvador
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996132/
https://www.ncbi.nlm.nih.gov/pubmed/31995753
http://dx.doi.org/10.1016/j.celrep.2019.12.080
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author Batlle, Cristina
Yang, Peiguo
Coughlin, Maura
Messing, James
Pesarrodona, Mireia
Szulc, Elzbieta
Salvatella, Xavier
Kim, Hong Joo
Taylor, J. Paul
Ventura, Salvador
author_facet Batlle, Cristina
Yang, Peiguo
Coughlin, Maura
Messing, James
Pesarrodona, Mireia
Szulc, Elzbieta
Salvatella, Xavier
Kim, Hong Joo
Taylor, J. Paul
Ventura, Salvador
author_sort Batlle, Cristina
collection PubMed
description Prion-like proteins form multivalent assemblies and phase separate into membraneless organelles. Heterogeneous ribonucleoprotein D-like (hnRNPDL) is a RNA-processing prion-like protein with three alternative splicing (AS) isoforms, which lack none, one, or both of its two disordered domains. It has been suggested that AS might regulate the assembly properties of RNA-processing proteins by controlling the incorporation of multivalent disordered regions in the isoforms. This, in turn, would modulate their activity in the downstream splicing program. Here, we demonstrate that AS controls the phase separation of hnRNPDL, as well as the size and dynamics of its nuclear complexes, its nucleus-cytoplasm shuttling, and amyloidogenicity. Mutation of the highly conserved D378 in the disordered C-terminal prion-like domain of hnRNPDL causes limb-girdle muscular dystrophy 1G. We show that D378H/N disease mutations impact hnRNPDL assembly properties, accelerating aggregation and dramatically reducing the protein solubility in the muscle of Drosophila, suggesting a genetic loss-of-function mechanism for this muscular disorder.
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spelling pubmed-69961322020-02-05 hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation Batlle, Cristina Yang, Peiguo Coughlin, Maura Messing, James Pesarrodona, Mireia Szulc, Elzbieta Salvatella, Xavier Kim, Hong Joo Taylor, J. Paul Ventura, Salvador Cell Rep Article Prion-like proteins form multivalent assemblies and phase separate into membraneless organelles. Heterogeneous ribonucleoprotein D-like (hnRNPDL) is a RNA-processing prion-like protein with three alternative splicing (AS) isoforms, which lack none, one, or both of its two disordered domains. It has been suggested that AS might regulate the assembly properties of RNA-processing proteins by controlling the incorporation of multivalent disordered regions in the isoforms. This, in turn, would modulate their activity in the downstream splicing program. Here, we demonstrate that AS controls the phase separation of hnRNPDL, as well as the size and dynamics of its nuclear complexes, its nucleus-cytoplasm shuttling, and amyloidogenicity. Mutation of the highly conserved D378 in the disordered C-terminal prion-like domain of hnRNPDL causes limb-girdle muscular dystrophy 1G. We show that D378H/N disease mutations impact hnRNPDL assembly properties, accelerating aggregation and dramatically reducing the protein solubility in the muscle of Drosophila, suggesting a genetic loss-of-function mechanism for this muscular disorder. Cell Press 2020-01-28 /pmc/articles/PMC6996132/ /pubmed/31995753 http://dx.doi.org/10.1016/j.celrep.2019.12.080 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Batlle, Cristina
Yang, Peiguo
Coughlin, Maura
Messing, James
Pesarrodona, Mireia
Szulc, Elzbieta
Salvatella, Xavier
Kim, Hong Joo
Taylor, J. Paul
Ventura, Salvador
hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation
title hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation
title_full hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation
title_fullStr hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation
title_full_unstemmed hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation
title_short hnRNPDL Phase Separation Is Regulated by Alternative Splicing and Disease-Causing Mutations Accelerate Its Aggregation
title_sort hnrnpdl phase separation is regulated by alternative splicing and disease-causing mutations accelerate its aggregation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6996132/
https://www.ncbi.nlm.nih.gov/pubmed/31995753
http://dx.doi.org/10.1016/j.celrep.2019.12.080
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