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miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ
The elucidation of the underlying molecular mechanism of H(2)O(2)-induced adipocyte differentiation in mesenchymal stem cells (MSCs) is important for the development of treatments for metabolic diseases. The aim of the present study was to identify microRNA (miR)-330-5p, which targets retinoid X rec...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
D.A. Spandidos
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6108853/ https://www.ncbi.nlm.nih.gov/pubmed/30015907 http://dx.doi.org/10.3892/ijmm.2018.3773 |
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author | Huang, Weiping Li, Ke Liu, Aijun Yang, Zeyu Hu, Chenxia Chen, Dongfeng Wang, Hongqi |
author_facet | Huang, Weiping Li, Ke Liu, Aijun Yang, Zeyu Hu, Chenxia Chen, Dongfeng Wang, Hongqi |
author_sort | Huang, Weiping |
collection | PubMed |
description | The elucidation of the underlying molecular mechanism of H(2)O(2)-induced adipocyte differentiation in mesenchymal stem cells (MSCs) is important for the development of treatments for metabolic diseases. The aim of the present study was to identify microRNA (miR)-330-5p, which targets retinoid X receptor γ (RXRγ) and to determine the function of H(2)O(2)-induced adipogenic differentiation of MSCs. During differentiation of MSCs into adipocytes induced by H(2)O(2), miR-330-5p expression was decreased with a concomitant increase in RXRγ expression. A luciferase assay with RXRγ 3′-untranslated region (UTR) reporter plasmid, including the miR-330-5p-binding sequences, identified that the introduction of miR-330-5p decreases luciferase activity. However, it did not affect the activity of mutated RXRγ 3′-UTR reporter. Enforced expression of miR-330-5p significantly inhibited adipocyte differentiation by decreasing RXRγ mRNA and protein levels. In contrast, inhibition of the endogenous miR-330-5p promoted the formation of lipid droplets by rescuing RXRγ expression. Furthermore, the effects of inhibition of RXRγ were similar to those of overexpression of miR-330-5p on H(2)O(2)-induced adipogenic differentiation from MSCs. miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs, and this is dependent on RXRγ. Taken together, the results of the present study revealed that miR-330-5p acts as a critical regulator of RXRγ, and is able to determinate the fate of MSCs to differentiate into adipocytes. This suggests that miR-330-5p and RXRγ may be target molecules for controlling metabolic diseases. |
format | Online Article Text |
id | pubmed-6108853 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | D.A. Spandidos |
record_format | MEDLINE/PubMed |
spelling | pubmed-61088532018-08-27 miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ Huang, Weiping Li, Ke Liu, Aijun Yang, Zeyu Hu, Chenxia Chen, Dongfeng Wang, Hongqi Int J Mol Med Articles The elucidation of the underlying molecular mechanism of H(2)O(2)-induced adipocyte differentiation in mesenchymal stem cells (MSCs) is important for the development of treatments for metabolic diseases. The aim of the present study was to identify microRNA (miR)-330-5p, which targets retinoid X receptor γ (RXRγ) and to determine the function of H(2)O(2)-induced adipogenic differentiation of MSCs. During differentiation of MSCs into adipocytes induced by H(2)O(2), miR-330-5p expression was decreased with a concomitant increase in RXRγ expression. A luciferase assay with RXRγ 3′-untranslated region (UTR) reporter plasmid, including the miR-330-5p-binding sequences, identified that the introduction of miR-330-5p decreases luciferase activity. However, it did not affect the activity of mutated RXRγ 3′-UTR reporter. Enforced expression of miR-330-5p significantly inhibited adipocyte differentiation by decreasing RXRγ mRNA and protein levels. In contrast, inhibition of the endogenous miR-330-5p promoted the formation of lipid droplets by rescuing RXRγ expression. Furthermore, the effects of inhibition of RXRγ were similar to those of overexpression of miR-330-5p on H(2)O(2)-induced adipogenic differentiation from MSCs. miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs, and this is dependent on RXRγ. Taken together, the results of the present study revealed that miR-330-5p acts as a critical regulator of RXRγ, and is able to determinate the fate of MSCs to differentiate into adipocytes. This suggests that miR-330-5p and RXRγ may be target molecules for controlling metabolic diseases. D.A. Spandidos 2018-10 2018-07-12 /pmc/articles/PMC6108853/ /pubmed/30015907 http://dx.doi.org/10.3892/ijmm.2018.3773 Text en Copyright: © Huang et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made. |
spellingShingle | Articles Huang, Weiping Li, Ke Liu, Aijun Yang, Zeyu Hu, Chenxia Chen, Dongfeng Wang, Hongqi miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ |
title | miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ |
title_full | miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ |
title_fullStr | miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ |
title_full_unstemmed | miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ |
title_short | miR-330-5p inhibits H(2)O(2)-induced adipogenic differentiation of MSCs by regulating RXRγ |
title_sort | mir-330-5p inhibits h(2)o(2)-induced adipogenic differentiation of mscs by regulating rxrγ |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6108853/ https://www.ncbi.nlm.nih.gov/pubmed/30015907 http://dx.doi.org/10.3892/ijmm.2018.3773 |
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