Cargando…

Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)

This research is aimed at evaluating the effects of leucine supplementation on muscle fibers growth and development of blunt snout bream through a feeding trial and a primary muscle cells treatment. An 8-week trial with diets containing 1.61% leucine (LL) or 2.15% leucine (HL) was conducted in blunt...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Mang-mang, Guo, Hui-xing, Huang, Yang-yang, Liu, Wen-bin, Wang, Xi, Xiao, Kang, Xiong, Wei, Hua, Hao-kun, Li, Xiang-fei, Jiang, Guang-zhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9973133/
https://www.ncbi.nlm.nih.gov/pubmed/36860449
http://dx.doi.org/10.1155/2022/7285851
_version_ 1784898454285189120
author Wang, Mang-mang
Guo, Hui-xing
Huang, Yang-yang
Liu, Wen-bin
Wang, Xi
Xiao, Kang
Xiong, Wei
Hua, Hao-kun
Li, Xiang-fei
Jiang, Guang-zhen
author_facet Wang, Mang-mang
Guo, Hui-xing
Huang, Yang-yang
Liu, Wen-bin
Wang, Xi
Xiao, Kang
Xiong, Wei
Hua, Hao-kun
Li, Xiang-fei
Jiang, Guang-zhen
author_sort Wang, Mang-mang
collection PubMed
description This research is aimed at evaluating the effects of leucine supplementation on muscle fibers growth and development of blunt snout bream through a feeding trial and a primary muscle cells treatment. An 8-week trial with diets containing 1.61% leucine (LL) or 2.15% leucine (HL) was conducted in blunt snout bream (mean initial weight = 56.56 ± 0.83 g). Results demonstrated that the specific gain rate and the condition factor of fish in the HL group were the highest. The essential amino acids content of fish fed HL diets was significantly higher than that fed LL diets. The texture (hardness, springiness, resilience, and chewiness), the small-sized fiber ratio, fibers density, and sarcomere lengths in fish all obtained the highest in the HL group. Additionally, the proteins expression related with the activation of the AMPK pathway (p-Ampk, Ampk, p-Ampk/Ampk, and Sirt1) and the expression of genes (myogenin (myog), myogenic regulatory factor 4 (mrf4) and myoblast determination protein (myod), and protein (Pax7) related to muscle fiber formation were significantly upregulated with increasing level of dietary leucine. In vitro, the muscle cells were treated with 0, 40 and 160 mg/L leucine for 24 h. The results showed that treated with 40 mg/L leucine significantly raised the protein expressions of BCKDHA, Ampk, p-Ampk, p-Ampk/Ampk, Sirt1, and Pax7 and the gene expressions of myog, mrf4, and myogenic factor 5 (myf5) in muscle cells. In summary, leucine supplementation promoted muscle fibers growth and development, which may be related to the activation of BCKDH and AMPK.
format Online
Article
Text
id pubmed-9973133
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-99731332023-02-28 Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala) Wang, Mang-mang Guo, Hui-xing Huang, Yang-yang Liu, Wen-bin Wang, Xi Xiao, Kang Xiong, Wei Hua, Hao-kun Li, Xiang-fei Jiang, Guang-zhen Aquac Nutr Research Article This research is aimed at evaluating the effects of leucine supplementation on muscle fibers growth and development of blunt snout bream through a feeding trial and a primary muscle cells treatment. An 8-week trial with diets containing 1.61% leucine (LL) or 2.15% leucine (HL) was conducted in blunt snout bream (mean initial weight = 56.56 ± 0.83 g). Results demonstrated that the specific gain rate and the condition factor of fish in the HL group were the highest. The essential amino acids content of fish fed HL diets was significantly higher than that fed LL diets. The texture (hardness, springiness, resilience, and chewiness), the small-sized fiber ratio, fibers density, and sarcomere lengths in fish all obtained the highest in the HL group. Additionally, the proteins expression related with the activation of the AMPK pathway (p-Ampk, Ampk, p-Ampk/Ampk, and Sirt1) and the expression of genes (myogenin (myog), myogenic regulatory factor 4 (mrf4) and myoblast determination protein (myod), and protein (Pax7) related to muscle fiber formation were significantly upregulated with increasing level of dietary leucine. In vitro, the muscle cells were treated with 0, 40 and 160 mg/L leucine for 24 h. The results showed that treated with 40 mg/L leucine significantly raised the protein expressions of BCKDHA, Ampk, p-Ampk, p-Ampk/Ampk, Sirt1, and Pax7 and the gene expressions of myog, mrf4, and myogenic factor 5 (myf5) in muscle cells. In summary, leucine supplementation promoted muscle fibers growth and development, which may be related to the activation of BCKDH and AMPK. Hindawi 2022-12-21 /pmc/articles/PMC9973133/ /pubmed/36860449 http://dx.doi.org/10.1155/2022/7285851 Text en Copyright © 2022 Mang-mang Wang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Mang-mang
Guo, Hui-xing
Huang, Yang-yang
Liu, Wen-bin
Wang, Xi
Xiao, Kang
Xiong, Wei
Hua, Hao-kun
Li, Xiang-fei
Jiang, Guang-zhen
Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)
title Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)
title_full Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)
title_fullStr Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)
title_full_unstemmed Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)
title_short Dietary Leucine Supplementation Improves Muscle Fiber Growth and Development by Activating AMPK/Sirt1 Pathway in Blunt Snout Bream (Megalobrama amblycephala)
title_sort dietary leucine supplementation improves muscle fiber growth and development by activating ampk/sirt1 pathway in blunt snout bream (megalobrama amblycephala)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9973133/
https://www.ncbi.nlm.nih.gov/pubmed/36860449
http://dx.doi.org/10.1155/2022/7285851
work_keys_str_mv AT wangmangmang dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT guohuixing dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT huangyangyang dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT liuwenbin dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT wangxi dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT xiaokang dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT xiongwei dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT huahaokun dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT lixiangfei dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala
AT jiangguangzhen dietaryleucinesupplementationimprovesmusclefibergrowthanddevelopmentbyactivatingampksirt1pathwayinbluntsnoutbreammegalobramaamblycephala