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Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation

Muscle is one of the important economic traits in poultry production, and its production depends on the increased number of muscle fibers during the embryonic stage. Chicken GHR gene can transcribe in double directions, possessing not only GHR-S but also GHR-AS. The 2 kinds of transcripts are partia...

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Autores principales: Xu, H.D., Li, T., Wang, Z., Adu-Asiamah, P., Leng, Q.Y., Zheng, J.H., Zhao, Z.H., An, L.L., Zhang, X.Q., Zhang, L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913965/
https://www.ncbi.nlm.nih.gov/pubmed/31376348
http://dx.doi.org/10.3382/ps/pez416
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author Xu, H.D.
Li, T.
Wang, Z.
Adu-Asiamah, P.
Leng, Q.Y.
Zheng, J.H.
Zhao, Z.H.
An, L.L.
Zhang, X.Q.
Zhang, L.
author_facet Xu, H.D.
Li, T.
Wang, Z.
Adu-Asiamah, P.
Leng, Q.Y.
Zheng, J.H.
Zhao, Z.H.
An, L.L.
Zhang, X.Q.
Zhang, L.
author_sort Xu, H.D.
collection PubMed
description Muscle is one of the important economic traits in poultry production, and its production depends on the increased number of muscle fibers during the embryonic stage. Chicken GHR gene can transcribe in double directions, possessing not only GHR-S but also GHR-AS. The 2 kinds of transcripts are partially complementation in sequences and interact with each other. Until now, the roles and mechanisms of GHR-AS in myoblast differentiation was still unknown. In this study, we not only analyzed the GHR-AS expression patterns in myoblast differentiation phase but also clarified that GHR-AS promoted myoblast differentiation via GH-GHR-IGF1 signal pathway. Quantitative PCR analysis indicated that GHR-AS was increased during myoblast differentiation. Sub-cellular localization showed that GHR-AS and GHR-S were expressed at a higher level in the nucleus than that in the cytoplasm. The expression of MyoD and MyHC and the myoblast differentiation significantly increased after GHR-AS overexpression, while the distance between wounds decreased, suggesting that GHR-AS repressed myoblast migration and promoted differentiation. Additionally, the expression of GHR -AS, IGF1 and MyHC increased after GH protein treated, and the myoblast differentiation also increased. In conclusion, GHR-AS promoted myoblast differentiation by enhancing fusion and inhibiting migration possibly via GH-GHR-IGF1 signal pathway.
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spelling pubmed-89139652022-03-12 Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation Xu, H.D. Li, T. Wang, Z. Adu-Asiamah, P. Leng, Q.Y. Zheng, J.H. Zhao, Z.H. An, L.L. Zhang, X.Q. Zhang, L. Poult Sci Molecular and Cellular Muscle is one of the important economic traits in poultry production, and its production depends on the increased number of muscle fibers during the embryonic stage. Chicken GHR gene can transcribe in double directions, possessing not only GHR-S but also GHR-AS. The 2 kinds of transcripts are partially complementation in sequences and interact with each other. Until now, the roles and mechanisms of GHR-AS in myoblast differentiation was still unknown. In this study, we not only analyzed the GHR-AS expression patterns in myoblast differentiation phase but also clarified that GHR-AS promoted myoblast differentiation via GH-GHR-IGF1 signal pathway. Quantitative PCR analysis indicated that GHR-AS was increased during myoblast differentiation. Sub-cellular localization showed that GHR-AS and GHR-S were expressed at a higher level in the nucleus than that in the cytoplasm. The expression of MyoD and MyHC and the myoblast differentiation significantly increased after GHR-AS overexpression, while the distance between wounds decreased, suggesting that GHR-AS repressed myoblast migration and promoted differentiation. Additionally, the expression of GHR -AS, IGF1 and MyHC increased after GH protein treated, and the myoblast differentiation also increased. In conclusion, GHR-AS promoted myoblast differentiation by enhancing fusion and inhibiting migration possibly via GH-GHR-IGF1 signal pathway. Elsevier 2019-12-17 /pmc/articles/PMC8913965/ /pubmed/31376348 http://dx.doi.org/10.3382/ps/pez416 Text en © Crown copyright 2019. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Molecular and Cellular
Xu, H.D.
Li, T.
Wang, Z.
Adu-Asiamah, P.
Leng, Q.Y.
Zheng, J.H.
Zhao, Z.H.
An, L.L.
Zhang, X.Q.
Zhang, L.
Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
title Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
title_full Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
title_fullStr Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
title_full_unstemmed Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
title_short Roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
title_sort roles of chicken growth hormone receptor antisense transcript in chicken muscle development and myoblast differentiation
topic Molecular and Cellular
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913965/
https://www.ncbi.nlm.nih.gov/pubmed/31376348
http://dx.doi.org/10.3382/ps/pez416
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