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LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p

Poultry meat quality is affected by many factors, among which intramuscular fat (IMF) is predominant. IMF content affects the tenderness, juiciness, and flavor of chicken. An increasing number of studies are focusing on the functions of lncRNAs in adipocyte differentiation. However, little is known...

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Autores principales: Zhang, Meng, Li, Fang, Sun, Jun-wei, Li, Dong-hua, Li, Wen-ting, Jiang, Rui-rui, Li, Zhuan-jian, Liu, Xiao-jun, Han, Rui-li, Li, Guo-xi, Wang, Yan-bin, Tian, Ya-dong, Kang, Xiang-tao, Sun, Gui-rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6378276/
https://www.ncbi.nlm.nih.gov/pubmed/30804984
http://dx.doi.org/10.3389/fgene.2019.00042
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author Zhang, Meng
Li, Fang
Sun, Jun-wei
Li, Dong-hua
Li, Wen-ting
Jiang, Rui-rui
Li, Zhuan-jian
Liu, Xiao-jun
Han, Rui-li
Li, Guo-xi
Wang, Yan-bin
Tian, Ya-dong
Kang, Xiang-tao
Sun, Gui-rong
author_facet Zhang, Meng
Li, Fang
Sun, Jun-wei
Li, Dong-hua
Li, Wen-ting
Jiang, Rui-rui
Li, Zhuan-jian
Liu, Xiao-jun
Han, Rui-li
Li, Guo-xi
Wang, Yan-bin
Tian, Ya-dong
Kang, Xiang-tao
Sun, Gui-rong
author_sort Zhang, Meng
collection PubMed
description Poultry meat quality is affected by many factors, among which intramuscular fat (IMF) is predominant. IMF content affects the tenderness, juiciness, and flavor of chicken. An increasing number of studies are focusing on the functions of lncRNAs in adipocyte differentiation. However, little is known about lncRNAs associated with intramuscular adipocyte differentiation. In the present study, we focused on an up-regulated lncRNA during intramuscular adipogenetic differentiation, which we named intramuscular fat-associated long non-coding RNA (IMFNCR). IMFNCR promotes intramuscular adipocyte differentiation. In-depth analyses showed that IMFNCR acts as a molecular sponge for miR-128-3p and miR-27b-3p and that PPARG is a direct target of miR-128-3p and miR-27b-3p in chicken. High-fat and high-protein diet inhibited chicken IMFNCR level in vivo. Moreover, IMFNCR level was positively correlated with PPARG mRNA level in chicken breast muscle tissues, a vital corollary to ceRNA function. Altogether, our research showed that IMFNCR acts as a ceRNA to sequester miR-128-3p and miR-27b-3p, leading to heightened PPARG expression, and thus promotes intramuscular adipocyte differentiation. Taken together, our findings may contribute to a more thorough understanding of chicken IMF deposition and the improvement of poultry meat quality.
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spelling pubmed-63782762019-02-25 LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p Zhang, Meng Li, Fang Sun, Jun-wei Li, Dong-hua Li, Wen-ting Jiang, Rui-rui Li, Zhuan-jian Liu, Xiao-jun Han, Rui-li Li, Guo-xi Wang, Yan-bin Tian, Ya-dong Kang, Xiang-tao Sun, Gui-rong Front Genet Genetics Poultry meat quality is affected by many factors, among which intramuscular fat (IMF) is predominant. IMF content affects the tenderness, juiciness, and flavor of chicken. An increasing number of studies are focusing on the functions of lncRNAs in adipocyte differentiation. However, little is known about lncRNAs associated with intramuscular adipocyte differentiation. In the present study, we focused on an up-regulated lncRNA during intramuscular adipogenetic differentiation, which we named intramuscular fat-associated long non-coding RNA (IMFNCR). IMFNCR promotes intramuscular adipocyte differentiation. In-depth analyses showed that IMFNCR acts as a molecular sponge for miR-128-3p and miR-27b-3p and that PPARG is a direct target of miR-128-3p and miR-27b-3p in chicken. High-fat and high-protein diet inhibited chicken IMFNCR level in vivo. Moreover, IMFNCR level was positively correlated with PPARG mRNA level in chicken breast muscle tissues, a vital corollary to ceRNA function. Altogether, our research showed that IMFNCR acts as a ceRNA to sequester miR-128-3p and miR-27b-3p, leading to heightened PPARG expression, and thus promotes intramuscular adipocyte differentiation. Taken together, our findings may contribute to a more thorough understanding of chicken IMF deposition and the improvement of poultry meat quality. Frontiers Media S.A. 2019-02-11 /pmc/articles/PMC6378276/ /pubmed/30804984 http://dx.doi.org/10.3389/fgene.2019.00042 Text en Copyright © 2019 Zhang, Li, Sun, Li, Li, Jiang, Li, Liu, Han, Li, Wang, Tian, Kang and Sun. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Zhang, Meng
Li, Fang
Sun, Jun-wei
Li, Dong-hua
Li, Wen-ting
Jiang, Rui-rui
Li, Zhuan-jian
Liu, Xiao-jun
Han, Rui-li
Li, Guo-xi
Wang, Yan-bin
Tian, Ya-dong
Kang, Xiang-tao
Sun, Gui-rong
LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p
title LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p
title_full LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p
title_fullStr LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p
title_full_unstemmed LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p
title_short LncRNA IMFNCR Promotes Intramuscular Adipocyte Differentiation by Sponging miR-128-3p and miR-27b-3p
title_sort lncrna imfncr promotes intramuscular adipocyte differentiation by sponging mir-128-3p and mir-27b-3p
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6378276/
https://www.ncbi.nlm.nih.gov/pubmed/30804984
http://dx.doi.org/10.3389/fgene.2019.00042
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