Literature DB >> 31871118

Rainbow trout slow myoblast cell culture as a model to study slow skeletal muscle, and the characterization of mir-133 and mir-499 families as a case study.

Bruno Oliveira da Silva Duran1, Maeli Dal-Pai-Silva2, Daniel Garcia de la Serrana3,4.   

Abstract

Muscle fibres are classified as fast, intermediate and slow. In vitro myoblast cell culture model from fast muscle is a very useful tool to study muscle growth and development; however, similar models for slow muscle do not exist. Owing to the compartmentalization of fish muscle fibres, we have developed a slow myoblast cell culture for rainbow trout (Oncorhynchus mykiss). Slow and fast muscle-derived myoblasts have similar morphology, but with differential expression of slow muscle markers such as slow myhc, sox6 and pgc-1α We also characterized the mir-133 and mir-499 microRNA families in trout slow and fast myoblasts as a case study during myogenesis and in response to electrostimulation. Three mir-133 (a-1a, a-1b and a-2) and four mir-499 (aa, ab, ba and bb) paralogues were identified for rainbow trout and named base on their phylogenetic relationship to zebrafish and Atlantic salmon orthologues. Omy-mir-499ab and omy-mir-499bb had 0.6 and 0.5-fold higher expression in slow myoblasts compared with fast myoblasts, whereas mir-133 duplicates had similar levels in both phenotypes and little variation during development. Slow myoblasts also showed increased expression for omy-mir-499b paralogues in response to chronic electrostimulation (7-fold increase for omy-mir-499ba and 2.5-fold increase for omy-mir-499bb). The higher expression of mir-499 paralogues in slow myoblasts suggests a role in phenotype determination, while the lack of significant differences of mir-133 copies during culture development might indicate a different role in fish compared with mammals. We have also found signs of sub-functionalization of mir-499 paralogues after electrostimulation, with omy-mir-499b copies more responsive to electrical signals.
© 2020. Published by The Company of Biologists Ltd.

Entities:  

Keywords:  Cell culture, Myoblasts; Slow skeletal muscle; miRNA, Electrostimulation

Mesh:

Substances:

Year:  2020        PMID: 31871118     DOI: 10.1242/jeb.216390

Source DB:  PubMed          Journal:  J Exp Biol        ISSN: 0022-0949            Impact factor:   3.312


  2 in total

1.  Amino Acids and IGF1 Regulation of Fish Muscle Growth Revealed by Transcriptome and microRNAome Integrative Analyses of Pacu (Piaractus mesopotamicus) Myotubes.

Authors:  Bruno Oliveira Silva Duran; Bruna Tereza Thomazini Zanella; Erika Stefani Perez; Edson Assunção Mareco; Josefina Blasco; Maeli Dal-Pai-Silva; Daniel Garcia de la Serrana
Journal:  Int J Mol Sci       Date:  2022-01-21       Impact factor: 5.923

2.  Ascorbic Acid Supplementation Improves Skeletal Muscle Growth in Pacu (Piaractus mesopotamicus) Juveniles: In Vivo and In Vitro Studies.

Authors:  Bruna Tereza Thomazini Zanella; Isabele Cristina Magiore; Bruno Oliveira Silva Duran; Guilherme Gutierrez Pereira; Igor Simões Tiagua Vicente; Pedro Luiz Pucci Figueiredo Carvalho; Rondinelle Artur Simões Salomão; Edson Assunção Mareco; Robson Francisco Carvalho; Tassiana Gutierrez de Paula; Margarida Maria Barros; Maeli Dal-Pai-Silva
Journal:  Int J Mol Sci       Date:  2021-03-15       Impact factor: 5.923

  2 in total

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