MICAL2 is essential for myogenic lineage commitment

Author:

Giarratana Nefele,Conti Filippo,La Rovere Rita,Gijsbers Rik,Carai Paolo,Duelen RobinORCID,Vervliet Tim,Bultynck GeertORCID,Ronzoni Flavio,Piciotti Roberto,Costamagna Domiziana,Fulle StefaniaORCID,Barravecchia Ivana,Angeloni Debora,Torrente Yvan,Sampaolesi MaurilioORCID

Abstract

AbstractContractile myofiber units are mainly composed of thick myosin and thin actin (F-actin) filaments. F-Actin interacts with Microtubule Associated Monooxygenase, Calponin And LIM Domain Containing 2 (MICAL2). Indeed, MICAL2 modifies actin subunits and promotes actin filament turnover by severing them and preventing repolymerization. In this study, we found that MICAL2 increases during myogenic differentiation of adult and pluripotent stem cells (PSCs) towards skeletal, smooth and cardiac muscle cells and localizes in the nucleus of acute and chronic regenerating muscle fibers. In vivo delivery of Cas9–Mical2 guide RNA complexes results in muscle actin defects and demonstrates that MICAL2 is essential for skeletal muscle homeostasis and functionality. Conversely, MICAL2 upregulation shows a positive impact on skeletal and cardiac muscle commitments. Taken together these data demonstrate that modulations of MICAL2 have an impact on muscle filament dynamics and its fine-tuned balance is essential for the regeneration of muscle tissues.

Funder

Fondazione Cariplo

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Cell Biology,Cellular and Molecular Neuroscience,Immunology

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