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Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation

Resident myogenic stem cells (satellite cells) are attracting attention for their novel roles in myofiber type regulation. In the myogenic differentiation phase, satellite cells from soleus muscle (slow fiber-abundant) synthesize and secrete higher levels of semaphorin 3A (Sema3A, a multifunctional...

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Autores principales: Suzuki, Takahiro, Mori, Aika, Maeno, Takahiro, Arimatsu, Rio, Ichimura, Emi, Nishi, Yuriko, Hisaeda, Kouga, Yamaya, Yuki, Kobayashi, Ken, Nakamura, Mako, Tatsumi, Ryuichi, Ojima, Koichi, Nishimura, Takanori
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123454/
https://www.ncbi.nlm.nih.gov/pubmed/33925862
http://dx.doi.org/10.3390/ijms22094499
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author Suzuki, Takahiro
Mori, Aika
Maeno, Takahiro
Arimatsu, Rio
Ichimura, Emi
Nishi, Yuriko
Hisaeda, Kouga
Yamaya, Yuki
Kobayashi, Ken
Nakamura, Mako
Tatsumi, Ryuichi
Ojima, Koichi
Nishimura, Takanori
author_facet Suzuki, Takahiro
Mori, Aika
Maeno, Takahiro
Arimatsu, Rio
Ichimura, Emi
Nishi, Yuriko
Hisaeda, Kouga
Yamaya, Yuki
Kobayashi, Ken
Nakamura, Mako
Tatsumi, Ryuichi
Ojima, Koichi
Nishimura, Takanori
author_sort Suzuki, Takahiro
collection PubMed
description Resident myogenic stem cells (satellite cells) are attracting attention for their novel roles in myofiber type regulation. In the myogenic differentiation phase, satellite cells from soleus muscle (slow fiber-abundant) synthesize and secrete higher levels of semaphorin 3A (Sema3A, a multifunctional modulator) than those derived from extensor digitorum longus (EDL; fast fiber-abundant), suggesting the role of Sema3A in forming slow-twitch myofibers. However, the regulatory mechanisms underlying fast-twitch myotube commitment remain unclear. Herein, we focused on netrin family members (netrin-1, -3, and -4) that compete with Sema3A in neurogenesis and osteogenesis. We examined whether netrins affect fast-twitch myotube generation by evaluating their expression in primary satellite cell cultures. Initially, netrins are upregulated during myogenic differentiation. Next, we compared the expression levels of netrins and their cell membrane receptors between soleus- and EDL-derived satellite cells; only netrin-1 showed higher expression in EDL-derived satellite cells than in soleus-derived satellite cells. We also performed netrin-1 knockdown experiments and additional experiments with recombinant netrin-1 in differentiated satellite cell-derived myoblasts. Netrin-1 knockdown in myoblasts substantially reduced fast-type myosin heavy chain (MyHC) expression; exogenous netrin-1 upregulated fast-type MyHC in satellite cells. Thus, netrin-1 synthesized in EDL-derived satellite cells may promote myofiber type commitment of fast muscles.
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spelling pubmed-81234542021-05-16 Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation Suzuki, Takahiro Mori, Aika Maeno, Takahiro Arimatsu, Rio Ichimura, Emi Nishi, Yuriko Hisaeda, Kouga Yamaya, Yuki Kobayashi, Ken Nakamura, Mako Tatsumi, Ryuichi Ojima, Koichi Nishimura, Takanori Int J Mol Sci Article Resident myogenic stem cells (satellite cells) are attracting attention for their novel roles in myofiber type regulation. In the myogenic differentiation phase, satellite cells from soleus muscle (slow fiber-abundant) synthesize and secrete higher levels of semaphorin 3A (Sema3A, a multifunctional modulator) than those derived from extensor digitorum longus (EDL; fast fiber-abundant), suggesting the role of Sema3A in forming slow-twitch myofibers. However, the regulatory mechanisms underlying fast-twitch myotube commitment remain unclear. Herein, we focused on netrin family members (netrin-1, -3, and -4) that compete with Sema3A in neurogenesis and osteogenesis. We examined whether netrins affect fast-twitch myotube generation by evaluating their expression in primary satellite cell cultures. Initially, netrins are upregulated during myogenic differentiation. Next, we compared the expression levels of netrins and their cell membrane receptors between soleus- and EDL-derived satellite cells; only netrin-1 showed higher expression in EDL-derived satellite cells than in soleus-derived satellite cells. We also performed netrin-1 knockdown experiments and additional experiments with recombinant netrin-1 in differentiated satellite cell-derived myoblasts. Netrin-1 knockdown in myoblasts substantially reduced fast-type myosin heavy chain (MyHC) expression; exogenous netrin-1 upregulated fast-type MyHC in satellite cells. Thus, netrin-1 synthesized in EDL-derived satellite cells may promote myofiber type commitment of fast muscles. MDPI 2021-04-26 /pmc/articles/PMC8123454/ /pubmed/33925862 http://dx.doi.org/10.3390/ijms22094499 Text en © 2021 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
Suzuki, Takahiro
Mori, Aika
Maeno, Takahiro
Arimatsu, Rio
Ichimura, Emi
Nishi, Yuriko
Hisaeda, Kouga
Yamaya, Yuki
Kobayashi, Ken
Nakamura, Mako
Tatsumi, Ryuichi
Ojima, Koichi
Nishimura, Takanori
Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation
title Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation
title_full Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation
title_fullStr Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation
title_full_unstemmed Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation
title_short Abundant Synthesis of Netrin-1 in Satellite Cell-Derived Myoblasts Isolated from EDL Rather Than Soleus Muscle Regulates Fast-Type Myotube Formation
title_sort abundant synthesis of netrin-1 in satellite cell-derived myoblasts isolated from edl rather than soleus muscle regulates fast-type myotube formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123454/
https://www.ncbi.nlm.nih.gov/pubmed/33925862
http://dx.doi.org/10.3390/ijms22094499
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