The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy

RNA interference (RNAi) represents a powerful post-transcriptional gene silencing network which fine-tunes gene expression in all eukaryotic cells. The endogenous triggers of RNAi, microRNAs (miRNAs), are proposed to regulate expression of up to a third of all protein-coding genes, and have been sho...

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Main Authors: Sibley, C, Wood, M
Format: Journal article
Language:English
Published: 2011
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author Sibley, C
Wood, M
author_facet Sibley, C
Wood, M
author_sort Sibley, C
collection OXFORD
description RNA interference (RNAi) represents a powerful post-transcriptional gene silencing network which fine-tunes gene expression in all eukaryotic cells. The endogenous triggers of RNAi, microRNAs (miRNAs), are proposed to regulate expression of up to a third of all protein-coding genes, and have been shown to have critical roles in developmental processes including in the central nervous system and skeletal muscle. Further, many have been reported to display differential expression in various disease states. Here we describe present understanding of the biogenesis and function of miRNAs, review current knowledge of miRNA abnormalities in both human neurological and skeletal muscle disease and discuss their potential as novel disease biomarkers. Finally, we highlight the many ways in which the miRNA pathway may be targeted for therapeutic benefit. © 2011 Springer-Verlag.
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spelling oxford-uuid:713935dd-bf2c-4d7a-945c-f1e6eca165bb2022-03-26T19:42:16ZThe miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapyJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:713935dd-bf2c-4d7a-945c-f1e6eca165bbEnglishSymplectic Elements at Oxford2011Sibley, CWood, MRNA interference (RNAi) represents a powerful post-transcriptional gene silencing network which fine-tunes gene expression in all eukaryotic cells. The endogenous triggers of RNAi, microRNAs (miRNAs), are proposed to regulate expression of up to a third of all protein-coding genes, and have been shown to have critical roles in developmental processes including in the central nervous system and skeletal muscle. Further, many have been reported to display differential expression in various disease states. Here we describe present understanding of the biogenesis and function of miRNAs, review current knowledge of miRNA abnormalities in both human neurological and skeletal muscle disease and discuss their potential as novel disease biomarkers. Finally, we highlight the many ways in which the miRNA pathway may be targeted for therapeutic benefit. © 2011 Springer-Verlag.
spellingShingle Sibley, C
Wood, M
The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy
title The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy
title_full The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy
title_fullStr The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy
title_full_unstemmed The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy
title_short The miRNA pathway in neurological and skeletal muscle disease: Implications for pathogenesis and therapy
title_sort mirna pathway in neurological and skeletal muscle disease implications for pathogenesis and therapy
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