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lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration

Sarcopenia is a serious public health problem associated with the loss of muscle mass and function. The purpose of this study was to identify molecular markers and construct a ceRNA pathway as a significant predictor of sarcopenia. We designed a prediction model to select important differentially ex...

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Autores principales: Wang, Yao, Zhao, Zhi-Jie, Kang, Xue-Ran, Bian, Tao, Shen, Zhe-Min, Jiang, Yang, Sun, Bao, Hu, Han-Bing, Chen, Yi-Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762514/
https://www.ncbi.nlm.nih.gov/pubmed/33221762
http://dx.doi.org/10.18632/aging.104095
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author Wang, Yao
Zhao, Zhi-Jie
Kang, Xue-Ran
Bian, Tao
Shen, Zhe-Min
Jiang, Yang
Sun, Bao
Hu, Han-Bing
Chen, Yi-Sheng
author_facet Wang, Yao
Zhao, Zhi-Jie
Kang, Xue-Ran
Bian, Tao
Shen, Zhe-Min
Jiang, Yang
Sun, Bao
Hu, Han-Bing
Chen, Yi-Sheng
author_sort Wang, Yao
collection PubMed
description Sarcopenia is a serious public health problem associated with the loss of muscle mass and function. The purpose of this study was to identify molecular markers and construct a ceRNA pathway as a significant predictor of sarcopenia. We designed a prediction model to select important differentially expressed mRNAs (DEMs), and constructed a sarcopenia associated ceRNA network. After correlation analysis of each element in the ceRNA network based on clinical samples and GTEX database, C2C12 mouse myoblasts were used as a model to verify the identified ceRNA pathways. A new model for predicting sarcopenia based on four molecular markers SEPP1, SV2A, GOT1, and GFOD1 was developed. The model was used to construct a ceRNA network and showed high accuracy. Correlation analysis showed that the expression levels of lncDLEU2, SEPP1, and miR-181a were closely associated with a high risk of sarcopenia. lncDLEU2 inhibits muscle differentiation and regeneration by acting as a miR-181a sponge regulating SEPP1 expression. In this study, a highly accurate prediction tool was developed to improve the prediction outcomes of sarcopenia. These findings suggest that the lncDLEU2-miR-181a-SEPP1 pathway inhibits muscle differentiation and regeneration. This pathway may be a new therapeutic target for the treatment of sarcopenia.
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spelling pubmed-77625142021-01-08 lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration Wang, Yao Zhao, Zhi-Jie Kang, Xue-Ran Bian, Tao Shen, Zhe-Min Jiang, Yang Sun, Bao Hu, Han-Bing Chen, Yi-Sheng Aging (Albany NY) Research Paper Sarcopenia is a serious public health problem associated with the loss of muscle mass and function. The purpose of this study was to identify molecular markers and construct a ceRNA pathway as a significant predictor of sarcopenia. We designed a prediction model to select important differentially expressed mRNAs (DEMs), and constructed a sarcopenia associated ceRNA network. After correlation analysis of each element in the ceRNA network based on clinical samples and GTEX database, C2C12 mouse myoblasts were used as a model to verify the identified ceRNA pathways. A new model for predicting sarcopenia based on four molecular markers SEPP1, SV2A, GOT1, and GFOD1 was developed. The model was used to construct a ceRNA network and showed high accuracy. Correlation analysis showed that the expression levels of lncDLEU2, SEPP1, and miR-181a were closely associated with a high risk of sarcopenia. lncDLEU2 inhibits muscle differentiation and regeneration by acting as a miR-181a sponge regulating SEPP1 expression. In this study, a highly accurate prediction tool was developed to improve the prediction outcomes of sarcopenia. These findings suggest that the lncDLEU2-miR-181a-SEPP1 pathway inhibits muscle differentiation and regeneration. This pathway may be a new therapeutic target for the treatment of sarcopenia. Impact Journals 2020-11-18 /pmc/articles/PMC7762514/ /pubmed/33221762 http://dx.doi.org/10.18632/aging.104095 Text en Copyright: © 2020 Wang et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Wang, Yao
Zhao, Zhi-Jie
Kang, Xue-Ran
Bian, Tao
Shen, Zhe-Min
Jiang, Yang
Sun, Bao
Hu, Han-Bing
Chen, Yi-Sheng
lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration
title lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration
title_full lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration
title_fullStr lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration
title_full_unstemmed lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration
title_short lncRNA DLEU2 acts as a miR-181a sponge to regulate SEPP1 and inhibit skeletal muscle differentiation and regeneration
title_sort lncrna dleu2 acts as a mir-181a sponge to regulate sepp1 and inhibit skeletal muscle differentiation and regeneration
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762514/
https://www.ncbi.nlm.nih.gov/pubmed/33221762
http://dx.doi.org/10.18632/aging.104095
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