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PABPN1-Dependent mRNA Processing Induces Muscle Wasting

Poly(A) Binding Protein Nuclear 1 (PABPN1) is a multifunctional regulator of mRNA processing, and its expression levels specifically decline in aging muscles. An expansion mutation in PABPN1 is the genetic cause of oculopharyngeal muscle dystrophy (OPMD), a late onset and rare myopathy. Moreover, re...

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Autores principales: Riaz, Muhammad, Raz, Yotam, van Putten, Maaike, Paniagua-Soriano, Guillem, Krom, Yvonne D., Florea, Bogdan I., Raz, Vered
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4859507/
https://www.ncbi.nlm.nih.gov/pubmed/27152426
http://dx.doi.org/10.1371/journal.pgen.1006031
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author Riaz, Muhammad
Raz, Yotam
van Putten, Maaike
Paniagua-Soriano, Guillem
Krom, Yvonne D.
Florea, Bogdan I.
Raz, Vered
author_facet Riaz, Muhammad
Raz, Yotam
van Putten, Maaike
Paniagua-Soriano, Guillem
Krom, Yvonne D.
Florea, Bogdan I.
Raz, Vered
author_sort Riaz, Muhammad
collection PubMed
description Poly(A) Binding Protein Nuclear 1 (PABPN1) is a multifunctional regulator of mRNA processing, and its expression levels specifically decline in aging muscles. An expansion mutation in PABPN1 is the genetic cause of oculopharyngeal muscle dystrophy (OPMD), a late onset and rare myopathy. Moreover, reduced PABPN1 expression correlates with symptom manifestation in OPMD. PABPN1 regulates alternative polyadenylation site (PAS) utilization. However, the impact of PAS utilization on cell and tissue function is poorly understood. We hypothesized that altered PABPN1 expression levels is an underlying cause of muscle wasting. To test this, we stably down-regulated PABPN1 in mouse tibialis anterior (TA) muscles by localized injection of adeno-associated viruses expressing shRNA to PABPN1 (shPab). We found that a mild reduction in PABPN1 levels causes muscle pathology including myofiber atrophy, thickening of extracellular matrix and myofiber-type transition. Moreover, reduced PABPN1 levels caused a consistent decline in distal PAS utilization in the 3’-UTR of a subset of OPMD-dysregulated genes. This alternative PAS utilization led to up-regulation of Atrogin-1, a key muscle atrophy regulator, but down regulation of proteasomal genes. Additionally reduced PABPN1 levels caused a reduction in proteasomal activity, and transition in MyHC isotope expression pattern in myofibers. We suggest that PABPN1-mediated alternative PAS utilization plays a central role in aging-associated muscle wasting.
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spelling pubmed-48595072016-05-13 PABPN1-Dependent mRNA Processing Induces Muscle Wasting Riaz, Muhammad Raz, Yotam van Putten, Maaike Paniagua-Soriano, Guillem Krom, Yvonne D. Florea, Bogdan I. Raz, Vered PLoS Genet Research Article Poly(A) Binding Protein Nuclear 1 (PABPN1) is a multifunctional regulator of mRNA processing, and its expression levels specifically decline in aging muscles. An expansion mutation in PABPN1 is the genetic cause of oculopharyngeal muscle dystrophy (OPMD), a late onset and rare myopathy. Moreover, reduced PABPN1 expression correlates with symptom manifestation in OPMD. PABPN1 regulates alternative polyadenylation site (PAS) utilization. However, the impact of PAS utilization on cell and tissue function is poorly understood. We hypothesized that altered PABPN1 expression levels is an underlying cause of muscle wasting. To test this, we stably down-regulated PABPN1 in mouse tibialis anterior (TA) muscles by localized injection of adeno-associated viruses expressing shRNA to PABPN1 (shPab). We found that a mild reduction in PABPN1 levels causes muscle pathology including myofiber atrophy, thickening of extracellular matrix and myofiber-type transition. Moreover, reduced PABPN1 levels caused a consistent decline in distal PAS utilization in the 3’-UTR of a subset of OPMD-dysregulated genes. This alternative PAS utilization led to up-regulation of Atrogin-1, a key muscle atrophy regulator, but down regulation of proteasomal genes. Additionally reduced PABPN1 levels caused a reduction in proteasomal activity, and transition in MyHC isotope expression pattern in myofibers. We suggest that PABPN1-mediated alternative PAS utilization plays a central role in aging-associated muscle wasting. Public Library of Science 2016-05-06 /pmc/articles/PMC4859507/ /pubmed/27152426 http://dx.doi.org/10.1371/journal.pgen.1006031 Text en © 2016 Riaz et al http://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/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Riaz, Muhammad
Raz, Yotam
van Putten, Maaike
Paniagua-Soriano, Guillem
Krom, Yvonne D.
Florea, Bogdan I.
Raz, Vered
PABPN1-Dependent mRNA Processing Induces Muscle Wasting
title PABPN1-Dependent mRNA Processing Induces Muscle Wasting
title_full PABPN1-Dependent mRNA Processing Induces Muscle Wasting
title_fullStr PABPN1-Dependent mRNA Processing Induces Muscle Wasting
title_full_unstemmed PABPN1-Dependent mRNA Processing Induces Muscle Wasting
title_short PABPN1-Dependent mRNA Processing Induces Muscle Wasting
title_sort pabpn1-dependent mrna processing induces muscle wasting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4859507/
https://www.ncbi.nlm.nih.gov/pubmed/27152426
http://dx.doi.org/10.1371/journal.pgen.1006031
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