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

IF 8.2 2区 生物学 Q1 CELL BIOLOGY Cell Communication and Signaling Pub Date : 2024-12-18 DOI:10.1186/s12964-024-01972-5
Jue-Rui Wang, Javier Jurado-Aguilar, Emma Barroso, Ricardo Rodríguez-Calvo, Antoni Camins, Walter Wahli, Xavier Palomer, Manuel Vázquez-Carrera
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Abstract

Background: 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.

Methods: Wild-type (WT) and Ppard-/- 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.

Results: Ppard-/- 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-/- mice, with GW501516 reducing its levels in the skeletal muscle of WT mice.

Conclusions: Overall, these findings reveal that PPARβ/δ activation increases InsRβ levels by alleviating ER stress and lysosomal degradation.

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PPARβ/δ通过降低溶酶体活性和EphB4水平上调骨骼肌中的胰岛素受体β亚基。
背景:溶酶体中胰岛素受体β亚基(InsRβ)的降解增加有助于胰岛素抵抗和2型糖尿病的发展。内质网(ER)应激通过多种机制促进胰岛素抵抗,包括InsRβ水平的降低。在这里,我们研究了暴露于内质网应激源tunicamycin的小鼠骨骼肌和C2C12肌管中过氧化物酶体增殖物激活受体(PPAR)β/δ如何调节InsRβ水平。方法:采用野生型(WT)和ppar -/-小鼠,野生型(WT)小鼠用载药或PPARβ/δ激动剂GW501516处理,C2C12肌管用内质网应激源tunicamycin或不同激活剂或抑制剂处理。结果:与野生型(WT)小鼠相比,Ppard-/-小鼠骨骼肌中InsRβ蛋白水平降低,而PPARβ/δ激动剂GW501516增加了其在WT小鼠中的水平。tunicamycin暴露的C2C12肌管与GW501516共孵育部分逆转了InsRβ蛋白水平的下降,减轻了内质网应激和溶酶体活性的增加。此外,酪氨酸激酶ephrin受体B4 (EphB4)的蛋白水平在Ppard-/-小鼠骨骼肌中升高,GW501516降低了其在WT小鼠骨骼肌中的水平。EphB4与InsRβ结合,促进其在溶酶体中的内吞和降解。结论:总的来说,这些发现表明PPARβ/δ激活通过减轻内质网应激和溶酶体降解来增加InsRβ水平。
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来源期刊
CiteScore
11.00
自引率
0.00%
发文量
180
期刊介绍: Cell Communication and Signaling (CCS) is a peer-reviewed, open-access scientific journal that focuses on cellular signaling pathways in both normal and pathological conditions. It publishes original research, reviews, and commentaries, welcoming studies that utilize molecular, morphological, biochemical, structural, and cell biology approaches. CCS also encourages interdisciplinary work and innovative models, including in silico, in vitro, and in vivo approaches, to facilitate investigations of cell signaling pathways, networks, and behavior. Starting from January 2019, CCS is proud to announce its affiliation with the International Cell Death Society. The journal now encourages submissions covering all aspects of cell death, including apoptotic and non-apoptotic mechanisms, cell death in model systems, autophagy, clearance of dying cells, and the immunological and pathological consequences of dying cells in the tissue microenvironment.
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