Knockout of rbm24a and rbm24b genes in zebrafish impairs skeletal and cardiac muscle integrity and function during development

被引:2
作者
Saquet, Audrey [1 ]
Ying, Ziwei [1 ]
Shi, De-Li [1 ,2 ]
Grifone, Raphaelle [1 ]
机构
[1] Sorbonne Univ, Inst Biol Paris Seine IBPS, Lab Dev Biol LBD, CNRS,UMR7622, Paris, France
[2] Guangdong Med Univ, Affiliated Hosp, Dept Med Res, Zhanjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
heart; post-transcriptional regulation; Rbm24; RNA-binding protein; sarcomere; skeletal muscle; zebrafish; RNA-BINDING PROTEIN; EXPRESSION; TARGET; P53;
D O I
10.1002/dvdy.743
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Backgound Skeletal and cardiac muscles are contractile tissues whose development and function are dependent on genetic programs that must be precisely orchestrated in time and space. In addition to transcription factors, RNA-binding proteins tightly regulate gene expression by controlling the fate of RNA transcripts, thus specific proteins levels within the cell. Rbm24 has been identified as a key player of myogenesis and cardiomyogenesis in several vertebrates, by controlling various aspects of post-transcriptional regulation, including pre-mRNA alternative splicing and mRNA stabilization. In zebrafish, knockdown of rbm24a or rbm24b also causes skeletal and cardiac muscle phenotypes, but how their combined loss affects muscle integrity and function remains elusive. Results By genome editing, we have generated rbm24a and rbm24b single mutants as well as double mutants. Structural analyses indicate that homozygous rbm24a and rbm24b double mutants exhibit severe somitic muscle and cardiac phenotypes, although rbm24b single mutants are obviously normal. We further show that the loss of rbm24a and rbm24b disrupts sarcomere organization, impairing functional contractility and motility of skeletal and cardiac muscles. Conclusion The rbm24 mutant zebrafish represents a new genetic tool for in-depth studies of Rbm24-mediated post-transcriptional regulation of skeletal and cardiac muscle development, disease and regeneration.
引用
收藏
页码:420 / 435
页数:16
相关论文
共 41 条
[2]   Cell-matrix interactions in muscle disease [J].
Carmignac, Virginie ;
Durbeej, Madeleine .
JOURNAL OF PATHOLOGY, 2012, 226 (02) :200-218
[3]   Knockdown of col22a1 gene in zebrafish induces a muscular dystrophy by disruption of the myotendinous junction [J].
Charvet, Benjamin ;
Guiraud, Alexandre ;
Malbouyres, Marilyne ;
Zwolanek, Daniela ;
Guillon, Emilie ;
Bretaud, Sandrine ;
Monnot, Catherine ;
Schulze, Joerg ;
Bader, Hannah L. ;
Allard, Bruno ;
Koch, Manuel ;
Ruggiero, Florence .
DEVELOPMENT, 2013, 140 (22) :4602-4613
[4]  
Charvet Benjamin, 2012, Muscles Ligaments Tendons J, V2, P53
[5]   Expression of the RNA recognition motif-containing protein SEB-4 during Xenopus embryonic development [J].
Fetka, I ;
Radeghieri, A ;
Bouwmeester, T .
MECHANISMS OF DEVELOPMENT, 2000, 94 (1-2) :283-286
[6]   RNA-binding proteins in human genetic disease [J].
Gebauer, Fatima ;
Schwarzl, Thomas ;
Valcarcel, Juan ;
Hentze, Matthias W. .
NATURE REVIEWS GENETICS, 2021, 22 (03) :185-198
[7]   RNA-binding proteins and post-transcriptional gene regulation [J].
Glisovic, Tina ;
Bachorik, Jennifer L. ;
Yong, Jeongsik ;
Dreyfuss, Gideon .
FEBS LETTERS, 2008, 582 (14) :1977-1986
[8]   Rbm24 displays dynamic functions required for myogenic differentiation during muscle regeneration [J].
Grifone, Raphaelle ;
Saquet, Audrey ;
Desgres, Manon ;
Sangiorgi, Claudia ;
Gargano, Caterina ;
Li, Zhenlin ;
Coletti, Dario ;
Shi, De-Li .
SCIENTIFIC REPORTS, 2021, 11 (01)
[9]   RNA-Binding Protein Rbm24 as a Multifaceted Post-Transcriptional Regulator of Embryonic Lineage Differentiation and Cellular Homeostasis [J].
Grifone, Raphaelle ;
Shao, Ming ;
Saquet, Audrey ;
Shi, De-Li .
CELLS, 2020, 9 (08) :1-19
[10]   The RNA-binding protein Rbm24 is transiently expressed in myoblasts and is required for myogenic differentiation during vertebrate development [J].
Grifone, Raphaelle ;
Xie, Xin ;
Bourgeois, Adeline ;
Saquet, Audrey ;
Duprez, Delphine ;
Shi, De-Li .
MECHANISMS OF DEVELOPMENT, 2014, 134 :1-15