PPARβ/δ upregulates the insulin receptor β subunit in skeletal muscle by reducing lysosomal activity and EphB4 levels.

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Version: Final published version
License: CC BY-NC-ND 4.0
Serval ID
serval:BIB_24B5A081A64A
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
PPARβ/δ upregulates the insulin receptor β subunit in skeletal muscle by reducing lysosomal activity and EphB4 levels.
Journal
Cell communication and signaling
Author(s)
Wang J.R., Jurado-Aguilar J., Barroso E., Rodríguez-Calvo R., Camins A., Wahli W., Palomer X., Vázquez-Carrera M.
ISSN
1478-811X (Electronic)
ISSN-L
1478-811X
Publication state
Published
Issued date
18/12/2024
Peer-reviewed
Oui
Volume
22
Number
1
Pages
595
Language
english
Notes
Publication types: Journal Article
Publication Status: epublish
Abstract
The increased degradation of the insulin receptor β subunit (InsRβ) in lysosomes contributes to the development of insulin resistance and type 2 diabetes mellitus. Endoplasmic reticulum (ER) stress contributes to insulin resistance through several mechanisms, including the reduction of InsRβ levels. Here, we examined how peroxisome proliferator-activated receptor (PPAR)β/δ regulates InsRβ levels in mouse skeletal muscle and C2C12 myotubes exposed to the ER stressor tunicamycin.
Wild-type (WT) and Ppard <sup>-/-</sup> mice, WT mice treated with vehicle or the PPARβ/δ agonist GW501516, and C2C12 myotubes treated with the ER stressor tunicamycin or different activators or inhibitors were used.
Ppard <sup>-/-</sup> mice displayed reduced InsRβ protein levels in their skeletal muscle compared to wild-type (WT) mice, while the PPARβ/δ agonist GW501516 increased its levels in WT mice. Co-incubation of tunicamycin-exposed C2C12 myotubes with GW501516 partially reversed the decrease in InsRβ protein levels, attenuating both ER stress and the increase in lysosomal activity. In addition, the protein levels of the tyrosine kinase ephrin receptor B4 (EphB4), which binds to the InsRβ and facilitates its endocytosis and degradation in lysosomes, were increased in the skeletal muscle of Ppard <sup>-/-</sup> mice, with GW501516 reducing its levels in the skeletal muscle of WT mice.
Overall, these findings reveal that PPARβ/δ activation increases InsRβ levels by alleviating ER stress and lysosomal degradation.
Keywords
Animals, Lysosomes/metabolism, Receptor, Insulin/metabolism, Receptor, Insulin/genetics, Muscle, Skeletal/metabolism, Muscle, Skeletal/drug effects, PPAR-beta/metabolism, PPAR-beta/genetics, PPAR-beta/agonists, Mice, PPAR delta/metabolism, PPAR delta/genetics, Endoplasmic Reticulum Stress/drug effects, Up-Regulation/drug effects, Muscle Fibers, Skeletal/metabolism, Muscle Fibers, Skeletal/drug effects, Tunicamycin/pharmacology, Cell Line, Thiazoles/pharmacology, Mice, Inbred C57BL, Mice, Knockout, ER stress, EphB4, GW5101516, InsRβ, PPARβ/δ
Pubmed
Web of science
Open Access
Yes
Create date
08/01/2025 16:19
Last modification date
25/02/2025 8:10
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