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Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry

Alternative splicing in Tau exon 10 generates 3 R- and 4 R-Tau proteoforms, which have equal abundance in healthy adult human brain. Aberrant alternative splicing in Tau exon 10 leads to distortion of the balanced 3 R- and 4 R-Tau expression levels, which is a causal factor to trigger toxic Tau aggr...

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Autores principales: Xing, Sansi, Wang, Jane, Wu, Ruilin, Hefti, Marco M., Crary, John F., Lu, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8786334/
https://www.ncbi.nlm.nih.gov/pubmed/34965173
http://dx.doi.org/10.1080/15476286.2021.2015175
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author Xing, Sansi
Wang, Jane
Wu, Ruilin
Hefti, Marco M.
Crary, John F.
Lu, Yu
author_facet Xing, Sansi
Wang, Jane
Wu, Ruilin
Hefti, Marco M.
Crary, John F.
Lu, Yu
author_sort Xing, Sansi
collection PubMed
description Alternative splicing in Tau exon 10 generates 3 R- and 4 R-Tau proteoforms, which have equal abundance in healthy adult human brain. Aberrant alternative splicing in Tau exon 10 leads to distortion of the balanced 3 R- and 4 R-Tau expression levels, which is a causal factor to trigger toxic Tau aggregation, neuron dysfunction and patient death in a group of neurodegenerative diseases known as tauopathies. Hence, identification of regulators upstream of the Tau exon 10 splicing events are crucial to understanding pathogenic mechanisms driving tauopathies. In this study, we used RNA Antisense Purification with Mass Spectrometry (RAP-MS) analysis to identify RNA-binding proteins (RBPs) that interact with the Tau pre-mRNA near exon 10. Among the newly identified RBP candidates, we show that knockdown of hnRNPC induces Tau exon 10 skipping whereas overexpression of hnRNPC promotes Tau exon 10 inclusion. In addition, we show that hnRNPC interacts with the poly-uridine (U-tract) sequences in introns 9 and 10 of Tau pre-mRNA. Mutation of these U-tract motifs abolished binding of hnRNPC with Tau pre-mRNA fragment and blocked its impact on Tau exon 10 inclusion. These findings indicate that hnRNPC binds and utilizes these U-tract motifs located in introns 9 and 10 of Tau pre-mRNA to promote Tau exon 10 inclusion. Intriguingly, high hnRNPC expression level is associated with progressive supranuclear palsy (PSP), a sporadic tauopathy with pathological accumulation of Tau species that contain exon 10, which suggests a putative therapeutic role of hnRNPC for PSP treatment. [Figure: see text]
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spelling pubmed-87863342022-01-25 Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry Xing, Sansi Wang, Jane Wu, Ruilin Hefti, Marco M. Crary, John F. Lu, Yu RNA Biol Research Paper Alternative splicing in Tau exon 10 generates 3 R- and 4 R-Tau proteoforms, which have equal abundance in healthy adult human brain. Aberrant alternative splicing in Tau exon 10 leads to distortion of the balanced 3 R- and 4 R-Tau expression levels, which is a causal factor to trigger toxic Tau aggregation, neuron dysfunction and patient death in a group of neurodegenerative diseases known as tauopathies. Hence, identification of regulators upstream of the Tau exon 10 splicing events are crucial to understanding pathogenic mechanisms driving tauopathies. In this study, we used RNA Antisense Purification with Mass Spectrometry (RAP-MS) analysis to identify RNA-binding proteins (RBPs) that interact with the Tau pre-mRNA near exon 10. Among the newly identified RBP candidates, we show that knockdown of hnRNPC induces Tau exon 10 skipping whereas overexpression of hnRNPC promotes Tau exon 10 inclusion. In addition, we show that hnRNPC interacts with the poly-uridine (U-tract) sequences in introns 9 and 10 of Tau pre-mRNA. Mutation of these U-tract motifs abolished binding of hnRNPC with Tau pre-mRNA fragment and blocked its impact on Tau exon 10 inclusion. These findings indicate that hnRNPC binds and utilizes these U-tract motifs located in introns 9 and 10 of Tau pre-mRNA to promote Tau exon 10 inclusion. Intriguingly, high hnRNPC expression level is associated with progressive supranuclear palsy (PSP), a sporadic tauopathy with pathological accumulation of Tau species that contain exon 10, which suggests a putative therapeutic role of hnRNPC for PSP treatment. [Figure: see text] Taylor & Francis 2021-12-29 /pmc/articles/PMC8786334/ /pubmed/34965173 http://dx.doi.org/10.1080/15476286.2021.2015175 Text en © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://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/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Xing, Sansi
Wang, Jane
Wu, Ruilin
Hefti, Marco M.
Crary, John F.
Lu, Yu
Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry
title Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry
title_full Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry
title_fullStr Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry
title_full_unstemmed Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry
title_short Identification of HnRNPC as a novel Tau exon 10 splicing factor using RNA antisense purification mass spectrometry
title_sort identification of hnrnpc as a novel tau exon 10 splicing factor using rna antisense purification mass spectrometry
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8786334/
https://www.ncbi.nlm.nih.gov/pubmed/34965173
http://dx.doi.org/10.1080/15476286.2021.2015175
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