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Regulation of DMD pathology by an ankyrin-encoded miRNA

BACKGROUND: Duchenne muscular dystrophy (DMD) is an X-linked myopathy resulting from the production of a nonfunctional dystrophin protein. MicroRNA (miRNA) are small 21- to 24-nucleotide RNA that can regulate both individual genes and entire cell signaling pathways. Previously, we identified several...

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Autores principales: Alexander, Matthew S, Casar, Juan Carlos, Motohashi, Norio, Myers, Jennifer A, Eisenberg, Iris, Gonzalez, Robert T, Estrella, Elicia A, Kang, Peter B, Kawahara, Genri, Kunkel, Louis M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3188430/
https://www.ncbi.nlm.nih.gov/pubmed/21824387
http://dx.doi.org/10.1186/2044-5040-1-27
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author Alexander, Matthew S
Casar, Juan Carlos
Motohashi, Norio
Myers, Jennifer A
Eisenberg, Iris
Gonzalez, Robert T
Estrella, Elicia A
Kang, Peter B
Kawahara, Genri
Kunkel, Louis M
author_facet Alexander, Matthew S
Casar, Juan Carlos
Motohashi, Norio
Myers, Jennifer A
Eisenberg, Iris
Gonzalez, Robert T
Estrella, Elicia A
Kang, Peter B
Kawahara, Genri
Kunkel, Louis M
author_sort Alexander, Matthew S
collection PubMed
description BACKGROUND: Duchenne muscular dystrophy (DMD) is an X-linked myopathy resulting from the production of a nonfunctional dystrophin protein. MicroRNA (miRNA) are small 21- to 24-nucleotide RNA that can regulate both individual genes and entire cell signaling pathways. Previously, we identified several mRNA, both muscle-enriched and inflammation-induced, that are dysregulated in the skeletal muscles of DMD patients. One particularly muscle-enriched miRNA, miR-486, is significantly downregulated in dystrophin-deficient mouse and human skeletal muscles. miR-486 is embedded within the ANKYRIN1(ANK1) gene locus, which is transcribed as either a long (erythroid-enriched) or a short (heart muscle- and skeletal muscle-enriched) isoform, depending on the cell and tissue types. RESULTS: Inhibition of miR-486 in normal muscle myoblasts results in inhibited migration and failure to repair a wound in primary myoblast cell cultures. Conversely, overexpression of miR-486 in primary myoblast cell cultures results in increased proliferation with no changes in cellular apoptosis. Using bioinformatics and miRNA reporter assays, we have identified platelet-derived growth factor receptor β, along with several other downstream targets of the phosphatase and tensin homolog deleted on chromosome 10/AKT (PTEN/AKT) pathway, as being modulated by miR-486. The generation of muscle-specific transgenic mice that overexpress miR-486 revealed that miR-486 alters the cell cycle kinetics of regenerated myofibers in vivo, as these mice had impaired muscle regeneration. CONCLUSIONS: These studies demonstrate a link for miR-486 as a regulator of the PTEN/AKT pathway in dystrophin-deficient muscle and an important factor in the regulation of DMD muscle pathology.
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spelling pubmed-31884302011-10-07 Regulation of DMD pathology by an ankyrin-encoded miRNA Alexander, Matthew S Casar, Juan Carlos Motohashi, Norio Myers, Jennifer A Eisenberg, Iris Gonzalez, Robert T Estrella, Elicia A Kang, Peter B Kawahara, Genri Kunkel, Louis M Skelet Muscle Research BACKGROUND: Duchenne muscular dystrophy (DMD) is an X-linked myopathy resulting from the production of a nonfunctional dystrophin protein. MicroRNA (miRNA) are small 21- to 24-nucleotide RNA that can regulate both individual genes and entire cell signaling pathways. Previously, we identified several mRNA, both muscle-enriched and inflammation-induced, that are dysregulated in the skeletal muscles of DMD patients. One particularly muscle-enriched miRNA, miR-486, is significantly downregulated in dystrophin-deficient mouse and human skeletal muscles. miR-486 is embedded within the ANKYRIN1(ANK1) gene locus, which is transcribed as either a long (erythroid-enriched) or a short (heart muscle- and skeletal muscle-enriched) isoform, depending on the cell and tissue types. RESULTS: Inhibition of miR-486 in normal muscle myoblasts results in inhibited migration and failure to repair a wound in primary myoblast cell cultures. Conversely, overexpression of miR-486 in primary myoblast cell cultures results in increased proliferation with no changes in cellular apoptosis. Using bioinformatics and miRNA reporter assays, we have identified platelet-derived growth factor receptor β, along with several other downstream targets of the phosphatase and tensin homolog deleted on chromosome 10/AKT (PTEN/AKT) pathway, as being modulated by miR-486. The generation of muscle-specific transgenic mice that overexpress miR-486 revealed that miR-486 alters the cell cycle kinetics of regenerated myofibers in vivo, as these mice had impaired muscle regeneration. CONCLUSIONS: These studies demonstrate a link for miR-486 as a regulator of the PTEN/AKT pathway in dystrophin-deficient muscle and an important factor in the regulation of DMD muscle pathology. BioMed Central 2011-08-08 /pmc/articles/PMC3188430/ /pubmed/21824387 http://dx.doi.org/10.1186/2044-5040-1-27 Text en Copyright ©2011 Alexander et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Alexander, Matthew S
Casar, Juan Carlos
Motohashi, Norio
Myers, Jennifer A
Eisenberg, Iris
Gonzalez, Robert T
Estrella, Elicia A
Kang, Peter B
Kawahara, Genri
Kunkel, Louis M
Regulation of DMD pathology by an ankyrin-encoded miRNA
title Regulation of DMD pathology by an ankyrin-encoded miRNA
title_full Regulation of DMD pathology by an ankyrin-encoded miRNA
title_fullStr Regulation of DMD pathology by an ankyrin-encoded miRNA
title_full_unstemmed Regulation of DMD pathology by an ankyrin-encoded miRNA
title_short Regulation of DMD pathology by an ankyrin-encoded miRNA
title_sort regulation of dmd pathology by an ankyrin-encoded mirna
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3188430/
https://www.ncbi.nlm.nih.gov/pubmed/21824387
http://dx.doi.org/10.1186/2044-5040-1-27
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