Cargando…

The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure

Chronic glucocorticoid exposure causes insulin resistance and muscle atrophy in skeletal muscle. We previously identified phosphoinositide-3-kinase regulatory subunit 1 (Pik3r1) as a primary target gene of skeletal muscle glucocorticoid receptors involved in the glucocorticoid-mediated suppression o...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Tzu-Chieh, Kuo, Taiyi, Dandan, Mohamad, Lee, Rebecca A., Chang, Maggie, Villivalam, Sneha D., Liao, Szu-Chi, Costello, Damian, Shankaran, Mahalakshmi, Mohammed, Hussein, Kang, Sona, Hellerstein, Marc K., Wang, Jen-Chywan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8010618/
https://www.ncbi.nlm.nih.gov/pubmed/33567340
http://dx.doi.org/10.1016/j.jbc.2021.100395
_version_ 1783673093415239680
author Chen, Tzu-Chieh
Kuo, Taiyi
Dandan, Mohamad
Lee, Rebecca A.
Chang, Maggie
Villivalam, Sneha D.
Liao, Szu-Chi
Costello, Damian
Shankaran, Mahalakshmi
Mohammed, Hussein
Kang, Sona
Hellerstein, Marc K.
Wang, Jen-Chywan
author_facet Chen, Tzu-Chieh
Kuo, Taiyi
Dandan, Mohamad
Lee, Rebecca A.
Chang, Maggie
Villivalam, Sneha D.
Liao, Szu-Chi
Costello, Damian
Shankaran, Mahalakshmi
Mohammed, Hussein
Kang, Sona
Hellerstein, Marc K.
Wang, Jen-Chywan
author_sort Chen, Tzu-Chieh
collection PubMed
description Chronic glucocorticoid exposure causes insulin resistance and muscle atrophy in skeletal muscle. We previously identified phosphoinositide-3-kinase regulatory subunit 1 (Pik3r1) as a primary target gene of skeletal muscle glucocorticoid receptors involved in the glucocorticoid-mediated suppression of insulin action. However, the in vivo functions of Pik3r1 remain unclear. Here, we generated striated muscle-specific Pik3r1 knockout (MKO) mice and treated them with a dexamethasone (DEX), a synthetic glucocorticoid. Treating wildtype (WT) mice with DEX attenuated insulin activated Akt activity in liver, epididymal white adipose tissue, and gastrocnemius (GA) muscle. This DEX effect was diminished in GA muscle of MKO mice, therefore, resulting in improved glucose and insulin tolerance in DEX-treated MKO mice. Stable isotope labeling techniques revealed that in WT mice, DEX treatment decreased protein fractional synthesis rates in GA muscle. Furthermore, histology showed that in WT mice, DEX treatment reduced GA myotube diameters. In MKO mice, myotube diameters were smaller than in WT mice, and there were more fast oxidative fibers. Importantly, DEX failed to further reduce myotube diameters. Pik3r1 knockout also decreased basal protein synthesis rate (likely caused by lower 4E-BP1 phosphorylation at Thr37/Thr46) and curbed the ability of DEX to attenuate protein synthesis rate. Finally, the ability of DEX to inhibit eIF2α phosphorylation and insulin-induced 4E-BP1 phosphorylation was reduced in MKO mice. Taken together, these results demonstrate the role of Pik3r1 in glucocorticoid-mediated effects on glucose and protein metabolism in skeletal muscle.
format Online
Article
Text
id pubmed-8010618
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-80106182021-04-02 The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure Chen, Tzu-Chieh Kuo, Taiyi Dandan, Mohamad Lee, Rebecca A. Chang, Maggie Villivalam, Sneha D. Liao, Szu-Chi Costello, Damian Shankaran, Mahalakshmi Mohammed, Hussein Kang, Sona Hellerstein, Marc K. Wang, Jen-Chywan J Biol Chem Research Article Chronic glucocorticoid exposure causes insulin resistance and muscle atrophy in skeletal muscle. We previously identified phosphoinositide-3-kinase regulatory subunit 1 (Pik3r1) as a primary target gene of skeletal muscle glucocorticoid receptors involved in the glucocorticoid-mediated suppression of insulin action. However, the in vivo functions of Pik3r1 remain unclear. Here, we generated striated muscle-specific Pik3r1 knockout (MKO) mice and treated them with a dexamethasone (DEX), a synthetic glucocorticoid. Treating wildtype (WT) mice with DEX attenuated insulin activated Akt activity in liver, epididymal white adipose tissue, and gastrocnemius (GA) muscle. This DEX effect was diminished in GA muscle of MKO mice, therefore, resulting in improved glucose and insulin tolerance in DEX-treated MKO mice. Stable isotope labeling techniques revealed that in WT mice, DEX treatment decreased protein fractional synthesis rates in GA muscle. Furthermore, histology showed that in WT mice, DEX treatment reduced GA myotube diameters. In MKO mice, myotube diameters were smaller than in WT mice, and there were more fast oxidative fibers. Importantly, DEX failed to further reduce myotube diameters. Pik3r1 knockout also decreased basal protein synthesis rate (likely caused by lower 4E-BP1 phosphorylation at Thr37/Thr46) and curbed the ability of DEX to attenuate protein synthesis rate. Finally, the ability of DEX to inhibit eIF2α phosphorylation and insulin-induced 4E-BP1 phosphorylation was reduced in MKO mice. Taken together, these results demonstrate the role of Pik3r1 in glucocorticoid-mediated effects on glucose and protein metabolism in skeletal muscle. American Society for Biochemistry and Molecular Biology 2021-02-07 /pmc/articles/PMC8010618/ /pubmed/33567340 http://dx.doi.org/10.1016/j.jbc.2021.100395 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Chen, Tzu-Chieh
Kuo, Taiyi
Dandan, Mohamad
Lee, Rebecca A.
Chang, Maggie
Villivalam, Sneha D.
Liao, Szu-Chi
Costello, Damian
Shankaran, Mahalakshmi
Mohammed, Hussein
Kang, Sona
Hellerstein, Marc K.
Wang, Jen-Chywan
The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
title The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
title_full The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
title_fullStr The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
title_full_unstemmed The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
title_short The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
title_sort role of striated muscle pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8010618/
https://www.ncbi.nlm.nih.gov/pubmed/33567340
http://dx.doi.org/10.1016/j.jbc.2021.100395
work_keys_str_mv AT chentzuchieh theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT kuotaiyi theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT dandanmohamad theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT leerebeccaa theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT changmaggie theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT villivalamsnehad theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT liaoszuchi theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT costellodamian theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT shankaranmahalakshmi theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT mohammedhussein theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT kangsona theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT hellersteinmarck theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT wangjenchywan theroleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT chentzuchieh roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT kuotaiyi roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT dandanmohamad roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT leerebeccaa roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT changmaggie roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT villivalamsnehad roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT liaoszuchi roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT costellodamian roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT shankaranmahalakshmi roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT mohammedhussein roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT kangsona roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT hellersteinmarck roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure
AT wangjenchywan roleofstriatedmusclepik3r1inglucoseandproteinmetabolismfollowingchronicglucocorticoidexposure