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Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner

Neuronal agrin, a heparan sulphate proteoglycan secreted by the α-motor neurons, promotes the formation and maintenance of the neuromuscular junction by binding to Lrp4 and activating muscle-specific kinase (MuSK). Neuronal agrin also promotes myogenesis by enhancing differentiation and maturation o...

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Autores principales: Gros, Katarina, Matkovič, Urška, Parato, Giulia, Miš, Katarina, Luin, Elisa, Bernareggi, Annalisa, Sciancalepore, Marina, Marš, Tomaž, Lorenzon, Paola, Pirkmajer, Sergej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570459/
https://www.ncbi.nlm.nih.gov/pubmed/36233091
http://dx.doi.org/10.3390/ijms231911784
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author Gros, Katarina
Matkovič, Urška
Parato, Giulia
Miš, Katarina
Luin, Elisa
Bernareggi, Annalisa
Sciancalepore, Marina
Marš, Tomaž
Lorenzon, Paola
Pirkmajer, Sergej
author_facet Gros, Katarina
Matkovič, Urška
Parato, Giulia
Miš, Katarina
Luin, Elisa
Bernareggi, Annalisa
Sciancalepore, Marina
Marš, Tomaž
Lorenzon, Paola
Pirkmajer, Sergej
author_sort Gros, Katarina
collection PubMed
description Neuronal agrin, a heparan sulphate proteoglycan secreted by the α-motor neurons, promotes the formation and maintenance of the neuromuscular junction by binding to Lrp4 and activating muscle-specific kinase (MuSK). Neuronal agrin also promotes myogenesis by enhancing differentiation and maturation of myotubes, but its effect on proliferating human myoblasts, which are often considered to be unresponsive to agrin, remains unclear. Using primary human myoblasts, we determined that neuronal agrin induced transient dephosphorylation of ERK1/2, while c-Abl, STAT3, and focal adhesion kinase were unresponsive. Gene silencing of Lrp4 and MuSK markedly reduced the BrdU incorporation, suggesting the functional importance of the Lrp4/MuSK complex for myoblast proliferation. Acute and chronic treatments with neuronal agrin increased the proliferation of human myoblasts in old donors, but they did not affect the proliferation of myoblasts in young donors. The C-terminal fragment of agrin which lacks the Lrp4-binding site and cannot activate MuSK had a similar age-dependent effect, indicating that the age-dependent signalling pathways activated by neuronal agrin involve the Lrp4/MuSK receptor complex as well as an Lrp4/MuSK-independent pathway which remained unknown. Collectively, our results highlight an age-dependent role for neuronal agrin in promoting the proliferation of human myoblasts.
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spelling pubmed-95704592022-10-17 Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner Gros, Katarina Matkovič, Urška Parato, Giulia Miš, Katarina Luin, Elisa Bernareggi, Annalisa Sciancalepore, Marina Marš, Tomaž Lorenzon, Paola Pirkmajer, Sergej Int J Mol Sci Article Neuronal agrin, a heparan sulphate proteoglycan secreted by the α-motor neurons, promotes the formation and maintenance of the neuromuscular junction by binding to Lrp4 and activating muscle-specific kinase (MuSK). Neuronal agrin also promotes myogenesis by enhancing differentiation and maturation of myotubes, but its effect on proliferating human myoblasts, which are often considered to be unresponsive to agrin, remains unclear. Using primary human myoblasts, we determined that neuronal agrin induced transient dephosphorylation of ERK1/2, while c-Abl, STAT3, and focal adhesion kinase were unresponsive. Gene silencing of Lrp4 and MuSK markedly reduced the BrdU incorporation, suggesting the functional importance of the Lrp4/MuSK complex for myoblast proliferation. Acute and chronic treatments with neuronal agrin increased the proliferation of human myoblasts in old donors, but they did not affect the proliferation of myoblasts in young donors. The C-terminal fragment of agrin which lacks the Lrp4-binding site and cannot activate MuSK had a similar age-dependent effect, indicating that the age-dependent signalling pathways activated by neuronal agrin involve the Lrp4/MuSK receptor complex as well as an Lrp4/MuSK-independent pathway which remained unknown. Collectively, our results highlight an age-dependent role for neuronal agrin in promoting the proliferation of human myoblasts. MDPI 2022-10-04 /pmc/articles/PMC9570459/ /pubmed/36233091 http://dx.doi.org/10.3390/ijms231911784 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gros, Katarina
Matkovič, Urška
Parato, Giulia
Miš, Katarina
Luin, Elisa
Bernareggi, Annalisa
Sciancalepore, Marina
Marš, Tomaž
Lorenzon, Paola
Pirkmajer, Sergej
Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner
title Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner
title_full Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner
title_fullStr Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner
title_full_unstemmed Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner
title_short Neuronal Agrin Promotes Proliferation of Primary Human Myoblasts in an Age-Dependent Manner
title_sort neuronal agrin promotes proliferation of primary human myoblasts in an age-dependent manner
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570459/
https://www.ncbi.nlm.nih.gov/pubmed/36233091
http://dx.doi.org/10.3390/ijms231911784
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