β2 Adrenoceptor Signaling Modulates Myoblast Differentiation via miR‐374b‐5p/GSK3β and miR‐326‐3p/Tnfrsf11a Axes

ABSTRACT Myoblast differentiation is a crucial step of skeletal muscle regeneration and is impaired in the absence of the β2 adrenoceptor (ADRβ2). Since miR‐374b and miR‐326 regulate cell differentiation, this study investigated if ADRβ2 regulates myoblast differentiation via miR‐374b‐5p and miR‐326‐3p. Primary myoblasts from ADRβ2 knockout (β2KO) mice were cultured in proliferation and differentiation media. In silico, cellular and molecular analyses were performed to evaluate NF‐κB signaling activation and validate mRNAs as miR‐374b‐5p and miR‐326‐3p targets in β2KO differentiating myoblasts. Differentiating myoblasts from β2KO mice had decreased mRNA levels of Nr4a1, Myog, Myh3, Cdkn1c, and Tnni2 and expression of miR‐374b‐5p and miR‐326‐3p. Overexpression of these miRs increased fusion index and gene expression of myogenic markers of these cells. In silico analyses indicated that GSK‐3β and receptor activator of NF‐kB (Tnfrsf11a) had potential binding sites for miR‐374b‐5p and miR‐326‐3p, respectively. The dual‐luciferase reporter assay showed that GSK‐3β and Tnfrsf11a were targets of miR‐374b‐5p and miR‐326‐3p, respectively. Regarding miR‐326‐3p, there was a reduction of NF‐κB signaling and NF‐κB mRNA levels in differentiating myoblasts from β2KO mice, and an upregulation of Tnfrsf11a and a downregulation of Tnfrsf11 . In summary, ADRβ2 modulates myoblast differentiation via miR‐374b‐5p/ GSK‐3β and miR‐326‐3p/ Tnfrsf11a axes.

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Journal
Cell Biology International
Published
2026-09-26
DOI
https://doi.org/10.1002/cbin.70214
Primary Topic
Muscle Physiology and Disorders
Type
article
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article

β2 Adrenoceptor Signaling Modulates Myoblast Differentiation via miR‐374b‐5p/GSK3β and miR‐326‐3p/Tnfrsf11a Axes

Thomas A. Rando, Edna Teruko Kimura, Fernanda Vieira Botelho Delpupo, Tábata L. Nascimento et al.
Cell Biology International
Muscle Physiology and Disorders
article

β2 Adrenoceptor Signaling Modulates Myoblast Differentiation via miR‐374b‐5p/GSK3β and miR‐326‐3p/Tnfrsf11a Axes

Thomas A. Rando, Edna Teruko Kimura, Fernanda Vieira Botelho Delpupo, Tábata L. Nascimento, César Seigi Fuziwara, Andrei Rozanski, Elen Haruka Miyabara, Patrı́cia C. Brum, Tatiana Emy Koike, Audrei R. Santos, Marcelo G. Pereira
article en

Abstract

ABSTRACT Myoblast differentiation is a crucial step of skeletal muscle regeneration and is impaired in the absence of the β2 adrenoceptor (ADRβ2). Since miR‐374b and miR‐326 regulate cell differentiation, this study investigated if ADRβ2 regulates myoblast differentiation via miR‐374b‐5p and miR‐326‐3p. Primary myoblasts from ADRβ2 knockout (β2KO) mice were cultured in proliferation and differentiation media. In silico, cellular and molecular analyses were performed to evaluate NF‐κB signaling activation and validate mRNAs as miR‐374b‐5p and miR‐326‐3p targets in β2KO differentiating myoblasts. Differentiating myoblasts from β2KO mice had decreased mRNA levels of Nr4a1, Myog, Myh3, Cdkn1c, and Tnni2 and expression of miR‐374b‐5p and miR‐326‐3p. Overexpression of these miRs increased fusion index and gene expression of myogenic markers of these cells. In silico analyses indicated that GSK‐3β and receptor activator of NF‐kB (Tnfrsf11a) had potential binding sites for miR‐374b‐5p and miR‐326‐3p, respectively. The dual‐luciferase reporter assay showed that GSK‐3β and Tnfrsf11a were targets of miR‐374b‐5p and miR‐326‐3p, respectively. Regarding miR‐326‐3p, there was a reduction of NF‐κB signaling and NF‐κB mRNA levels in differentiating myoblasts from β2KO mice, and an upregulation of Tnfrsf11a and a downregulation of Tnfrsf11 . In summary, ADRβ2 modulates myoblast differentiation via miR‐374b‐5p/ GSK‐3β and miR‐326‐3p/ Tnfrsf11a axes.

Cell Biology InternationalVol. 50(10)
Universidade de São Paulo (BR), Broad Center (US), Universidade Federal de São Paulo (BR)
Openalex Percentile: Top 19%
Muscle Physiology and Disorders
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