4.6 Article

IgLON4 Regulates Myogenesis via Promoting Cell Adhesion and Maintaining Myotube Orientation

Journal

CELLS
Volume 11, Issue 20, Pages -

Publisher

MDPI
DOI: 10.3390/cells11203265

Keywords

skeletal muscle; IgLON4; lipid raft; differentiation; myotube orientation; myotube alignment

Categories

Funding

  1. Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Education [2020R1A6A1A03044512, NRF-2022R1I1A1A01069347]
  2. National Research Foundation of Korea (NRF)
  3. Korean government [NRF-2021R1A2C2004177, NRF-2019R1C1C1006542]

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This study reveals that immunoglobulin-like cell adhesion molecule (IgLON4) is highly expressed in mouse muscles and plays a role in muscle regeneration and differentiation. Inhibition of IgLON4 affects myotube alignment and is involved in lipid raft accumulation during myogenic differentiation.
Immunoglobulin-like cell adhesion molecule (IgLON4) is a glycosylphosphatidylinositol-anchored membrane protein that has been associated with neuronal growth and connectivity, and its deficiency has been linked to increased fat mass and low muscle mass. Adequate information on IgLON4 is lacking, especially in the context of skeletal muscle. In this study, we report that IgLON4 is profusely expressed in mouse muscles and is intensely localized on the cell membrane. IgLON4 expression was elevated in CTX-injected mouse muscles, which confirmed its role during muscle regeneration, and was abundantly expressed at high concentrations at cell-to-cell adhesion and interaction sites during muscle differentiation. IgLON4 inhibition profoundly affected myotube alignment, and directional analysis confirmed this effect. Additionally, results demonstrating a link between IgLON4 and lipid rafts during myogenic differentiation suggest that IgLON4 promotes differentiation by increasing lipid raft accumulation. These findings support the notion that a well-aligned environment promotes myoblast differentiation. Collectively, IgLON4 plays a novel role in myogenesis and regeneration, facilitates myotube orientation, and is involved in lipid raft accumulation.

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