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Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice

Glucose homeostasis is closely regulated to maintain energy requirements of vital organs and skeletal muscle plays a crucial role in this process. Mustn1 is expressed during embryonic and postnatal skeletal muscle development and its function has been implicated in myogenic differentiation and myofu...

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Autores principales: Kim, Charles J., Singh, Chanpreet, Lee, Christine, DiMagno, Kevin, O'Donnell, Madison, Kaczmarek, Marina, Ahmed, Arhum, Salvo‐Schaich, Jessica, Perez, Alexis, Letsou, William, Sepulveda, Maria‐Alicia Carrillo, Ramos, Raddy L., Hadjiargyrou, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175242/
https://www.ncbi.nlm.nih.gov/pubmed/37170065
http://dx.doi.org/10.14814/phy2.15674
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author Kim, Charles J.
Singh, Chanpreet
Lee, Christine
DiMagno, Kevin
O'Donnell, Madison
Kaczmarek, Marina
Ahmed, Arhum
Salvo‐Schaich, Jessica
Perez, Alexis
Letsou, William
Sepulveda, Maria‐Alicia Carrillo
Ramos, Raddy L.
Hadjiargyrou, Michael
author_facet Kim, Charles J.
Singh, Chanpreet
Lee, Christine
DiMagno, Kevin
O'Donnell, Madison
Kaczmarek, Marina
Ahmed, Arhum
Salvo‐Schaich, Jessica
Perez, Alexis
Letsou, William
Sepulveda, Maria‐Alicia Carrillo
Ramos, Raddy L.
Hadjiargyrou, Michael
author_sort Kim, Charles J.
collection PubMed
description Glucose homeostasis is closely regulated to maintain energy requirements of vital organs and skeletal muscle plays a crucial role in this process. Mustn1 is expressed during embryonic and postnatal skeletal muscle development and its function has been implicated in myogenic differentiation and myofusion. Whether Mustn1 plays a role in glucose homeostasis in anyway remains largely unknown. As such, we deleted Mustn1 in skeletal muscle using a conditional knockout (KO) mouse approach. KO mice did not reveal any specific gross phenotypic alterations in skeletal muscle. However, intraperitoneal glucose tolerance testing (IPGTT) revealed that 2‐month‐old male KO mice had significantly lower glycemia than their littermate wild type (WT) controls. These findings coincided with mRNA changes in genes known to be involved in glucose metabolism, tolerance, and insulin sensitivity; 2‐month‐old male KO mice had significantly higher expression of GLUT1 and GLUT10 transporters, MUP‐1 while OSTN expression was lower. These differences in glycemia and gene expression were statistically insignificant after 4 months. Identical experiments in female KO and WT control mice did not indicate any differences at any age. Our results suggest a link between Mustn1 expression and glucose homeostasis during a restricted period of skeletal muscle development/maturation. While this is an observational study, Mustn1's relationship to glucose homeostasis appears to be more complex with a possible connection to other key proteins such as GLUTs, MUP‐1, and OSTN. Additionally, our data indicate temporal and sex differences. Lastly, our findings strengthen the notion that Mustn1 plays a role in the metabolic capacity of skeletal muscle.
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spelling pubmed-101752422023-05-13 Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice Kim, Charles J. Singh, Chanpreet Lee, Christine DiMagno, Kevin O'Donnell, Madison Kaczmarek, Marina Ahmed, Arhum Salvo‐Schaich, Jessica Perez, Alexis Letsou, William Sepulveda, Maria‐Alicia Carrillo Ramos, Raddy L. Hadjiargyrou, Michael Physiol Rep Original Articles Glucose homeostasis is closely regulated to maintain energy requirements of vital organs and skeletal muscle plays a crucial role in this process. Mustn1 is expressed during embryonic and postnatal skeletal muscle development and its function has been implicated in myogenic differentiation and myofusion. Whether Mustn1 plays a role in glucose homeostasis in anyway remains largely unknown. As such, we deleted Mustn1 in skeletal muscle using a conditional knockout (KO) mouse approach. KO mice did not reveal any specific gross phenotypic alterations in skeletal muscle. However, intraperitoneal glucose tolerance testing (IPGTT) revealed that 2‐month‐old male KO mice had significantly lower glycemia than their littermate wild type (WT) controls. These findings coincided with mRNA changes in genes known to be involved in glucose metabolism, tolerance, and insulin sensitivity; 2‐month‐old male KO mice had significantly higher expression of GLUT1 and GLUT10 transporters, MUP‐1 while OSTN expression was lower. These differences in glycemia and gene expression were statistically insignificant after 4 months. Identical experiments in female KO and WT control mice did not indicate any differences at any age. Our results suggest a link between Mustn1 expression and glucose homeostasis during a restricted period of skeletal muscle development/maturation. While this is an observational study, Mustn1's relationship to glucose homeostasis appears to be more complex with a possible connection to other key proteins such as GLUTs, MUP‐1, and OSTN. Additionally, our data indicate temporal and sex differences. Lastly, our findings strengthen the notion that Mustn1 plays a role in the metabolic capacity of skeletal muscle. John Wiley and Sons Inc. 2023-05-11 /pmc/articles/PMC10175242/ /pubmed/37170065 http://dx.doi.org/10.14814/phy2.15674 Text en © 2023 The Authors. Physiological Reports published by Wiley Periodicals LLC on behalf of The Physiological Society and the American Physiological Society. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Kim, Charles J.
Singh, Chanpreet
Lee, Christine
DiMagno, Kevin
O'Donnell, Madison
Kaczmarek, Marina
Ahmed, Arhum
Salvo‐Schaich, Jessica
Perez, Alexis
Letsou, William
Sepulveda, Maria‐Alicia Carrillo
Ramos, Raddy L.
Hadjiargyrou, Michael
Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice
title Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice
title_full Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice
title_fullStr Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice
title_full_unstemmed Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice
title_short Mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated GLUT expression in male mice
title_sort mustn1 ablation in skeletal muscle results in increased glucose tolerance concomitant with upregulated glut expression in male mice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175242/
https://www.ncbi.nlm.nih.gov/pubmed/37170065
http://dx.doi.org/10.14814/phy2.15674
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