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The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway

OBJECTIVE: Factors governing microRNA expressions in response to changes of cellular environment are still largely unknown. Our aim was to determine whether insulin, the major hormone controlling whole-body energy homeostasis, is involved in the regulation of microRNA expressions in human skeletal m...

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Autores principales: Granjon, Aurélie, Gustin, Marie-Paule, Rieusset, Jennifer, Lefai, Etienne, Meugnier, Emmanuelle, Güller, Isabelle, Cerutti, Catherine, Paultre, Christian, Disse, Emmanuel, Rabasa-Lhoret, Rémi, Laville, Martine, Vidal, Hubert, Rome, Sophie
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2768160/
https://www.ncbi.nlm.nih.gov/pubmed/19720801
http://dx.doi.org/10.2337/db09-0165
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author Granjon, Aurélie
Gustin, Marie-Paule
Rieusset, Jennifer
Lefai, Etienne
Meugnier, Emmanuelle
Güller, Isabelle
Cerutti, Catherine
Paultre, Christian
Disse, Emmanuel
Rabasa-Lhoret, Rémi
Laville, Martine
Vidal, Hubert
Rome, Sophie
author_facet Granjon, Aurélie
Gustin, Marie-Paule
Rieusset, Jennifer
Lefai, Etienne
Meugnier, Emmanuelle
Güller, Isabelle
Cerutti, Catherine
Paultre, Christian
Disse, Emmanuel
Rabasa-Lhoret, Rémi
Laville, Martine
Vidal, Hubert
Rome, Sophie
author_sort Granjon, Aurélie
collection PubMed
description OBJECTIVE: Factors governing microRNA expressions in response to changes of cellular environment are still largely unknown. Our aim was to determine whether insulin, the major hormone controlling whole-body energy homeostasis, is involved in the regulation of microRNA expressions in human skeletal muscle. RESEARCH DESIGN AND METHODS: We carried out comparative microRNA (miRNA) expression profiles in human skeletal muscle biopsies before and after a 3-h euglycemic-hyperinsulinemic clamp, with TaqMan low-density arrays. Then, using DNA microarrays, we determined the response to insulin of the miRNA putative target genes in order to determine their role in the transcriptional action of insulin. We further characterized the mechanism of action of insulin on two representative miRNAs, miR-1 and miR-133a, in human muscle cells. RESULTS: Insulin downregulated the expressions of 39 distinct miRNAs in human skeletal muscle. Their potential target mRNAs coded for proteins that were mainly involved in insulin signaling and ubiquitination-mediated proteolysis. Bioinformatic analysis suggested that combinations of different downregulated miRNAs worked in concert to regulate gene expressions in response to insulin. We further demonstrated that sterol regulatory element–binding protein (SREBP)-1c and myocyte enhancer factor 2C were involved in the effect of insulin on miR-1 and miR-133a expression. Interestingly, we found an impaired regulation of miRNAs by insulin in the skeletal muscle of type 2 diabetic patients, likely as consequences of altered SREBP-1c activation. CONCLUSIONS: This work demonstrates a new role of insulin in the regulation of miRNAs in human skeletal muscle and suggests a possible implication of these new modulators in insulin resistance.
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spelling pubmed-27681602010-11-01 The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway Granjon, Aurélie Gustin, Marie-Paule Rieusset, Jennifer Lefai, Etienne Meugnier, Emmanuelle Güller, Isabelle Cerutti, Catherine Paultre, Christian Disse, Emmanuel Rabasa-Lhoret, Rémi Laville, Martine Vidal, Hubert Rome, Sophie Diabetes Original Article OBJECTIVE: Factors governing microRNA expressions in response to changes of cellular environment are still largely unknown. Our aim was to determine whether insulin, the major hormone controlling whole-body energy homeostasis, is involved in the regulation of microRNA expressions in human skeletal muscle. RESEARCH DESIGN AND METHODS: We carried out comparative microRNA (miRNA) expression profiles in human skeletal muscle biopsies before and after a 3-h euglycemic-hyperinsulinemic clamp, with TaqMan low-density arrays. Then, using DNA microarrays, we determined the response to insulin of the miRNA putative target genes in order to determine their role in the transcriptional action of insulin. We further characterized the mechanism of action of insulin on two representative miRNAs, miR-1 and miR-133a, in human muscle cells. RESULTS: Insulin downregulated the expressions of 39 distinct miRNAs in human skeletal muscle. Their potential target mRNAs coded for proteins that were mainly involved in insulin signaling and ubiquitination-mediated proteolysis. Bioinformatic analysis suggested that combinations of different downregulated miRNAs worked in concert to regulate gene expressions in response to insulin. We further demonstrated that sterol regulatory element–binding protein (SREBP)-1c and myocyte enhancer factor 2C were involved in the effect of insulin on miR-1 and miR-133a expression. Interestingly, we found an impaired regulation of miRNAs by insulin in the skeletal muscle of type 2 diabetic patients, likely as consequences of altered SREBP-1c activation. CONCLUSIONS: This work demonstrates a new role of insulin in the regulation of miRNAs in human skeletal muscle and suggests a possible implication of these new modulators in insulin resistance. American Diabetes Association 2009-11 2009-08-31 /pmc/articles/PMC2768160/ /pubmed/19720801 http://dx.doi.org/10.2337/db09-0165 Text en © 2009 American Diabetes Association Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Article
Granjon, Aurélie
Gustin, Marie-Paule
Rieusset, Jennifer
Lefai, Etienne
Meugnier, Emmanuelle
Güller, Isabelle
Cerutti, Catherine
Paultre, Christian
Disse, Emmanuel
Rabasa-Lhoret, Rémi
Laville, Martine
Vidal, Hubert
Rome, Sophie
The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway
title The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway
title_full The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway
title_fullStr The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway
title_full_unstemmed The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway
title_short The microRNA Signature in Response to Insulin Reveals Its Implication in the Transcriptional Action of Insulin in Human Skeletal Muscle and the Role of a Sterol Regulatory Element–Binding Protein-1c/Myocyte Enhancer Factor 2C Pathway
title_sort microrna signature in response to insulin reveals its implication in the transcriptional action of insulin in human skeletal muscle and the role of a sterol regulatory element–binding protein-1c/myocyte enhancer factor 2c pathway
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2768160/
https://www.ncbi.nlm.nih.gov/pubmed/19720801
http://dx.doi.org/10.2337/db09-0165
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