Biology Direct· 2026Q1
Plin5, beyaz yağ dokusu yeniden yapılanmasını teşvik etmek için endoplazmik retikulum stresini hafifletir
Plin5 alleviates endoplasmic reticulum stress to promote white adipose tissue remodeling
- 0atıf
- Q1SCImago
- 2026yıl
Kısa özet
Farelerde ve adipositlerde Plin5 aşırı ifadesi vücut ağırlığını, adiposit boyutunu ve lipid birikimini azaltırken ER stresini hafifletti, bu da Plin5'in WFS1'i stabilize ederek ve ER stresini hafifleterek WAT yeniden yapılanmasını desteklediğini düşündürmektedir.
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Ana noktalar
- Adipozspesifik Plin5 aşırı ifadesi db/db farelerde vücut ağırlığını, adiposit hipertrofisini ve lipid birikimini azalttı.
- Plin5 aşırı ifadesi ER stresini hafifletirken, Plin5 düşürülmesi ER stresini ve lipid birikimini şiddetlendirdi.
- Plin5, WFS1 proteinini ubikitinasyonunu azaltarak stabilize eder, bu da önemli bir etkileşim olduğunu gösterir.
- 4-PBA ile ER stresinin farmakolojik inhibisyonu, Plin5'in lipit düşürücü etkilerini taklit etti.
- Plin5 düşürülmesi, Tirzepatide'nin adiposit metabolizması ve ER stresi üzerindeki faydalı etkilerini zayıflattı.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Özet (abstract)
Obesity is characterized by impaired white adipose tissue (WAT) remodeling, dysregulated lipid metabolism, and chronic endoplasmic reticulum (ER) stress. Perilipin 5 (Plin5), a lipid droplet-associated protein, has been implicated in lipid metabolism and ER homeostasis, but its role in WAT remodeling remains poorly understood. This study investigated whether Plin5 regulates adipose tissue remodeling through modulation of ER stress and whether Plin5 contributes to the metabolic effects of Tirzepatide. Adipose-specific Plin5 overexpression was achieved in db/db mice using adeno-associated virus (AAV), and metabolic phenotypes, lipid metabolism, and ER stress were evaluated. Gain- and loss-of-function studies were performed in cultured adipocytes. Candidate Plin5-interacting proteins were identified by co-immunoprecipitation coupled with mass spectrometry (Co-IP/MS) and validated by co-immunoprecipitation. ER stress was pharmacologically inhibited using 4-phenylbutyric acid (4-PBA). The effects of Tirzepatide on Plin5 expression and adipocyte metabolism were further investigated in vivo and in vitro. Adipose-specific Plin5 overexpression reduced body weight, adipocyte hypertrophy, lipid accumulation, and lipogenic protein expression while promoting lipolysis in db/db mice, and similar effects were observed in cultured adipocytes. Plin5 overexpression attenuated ER stress, whereas Plin5 knockdown aggravated ER stress and lipid accumulation. Mechanistically, WFS1 was identified as a Plin5-interacting protein, and Plin5 enhanced WFS1 protein stability by reducing its ubiquitination. Pharmacological inhibition of ER stress with 4-PBA largely recapitulated the lipid-lowering effects of Plin5. In addition, Tirzepatide restored Plin5 expression in WAT, and Plin5 knockdown attenuated the beneficial effects of Tirzepatide on lipid metabolism and ER stress in adipocytes. Plin5 contributes to white adipose tissue remodeling by alleviating ER stress and regulating lipid homeostasis, potentially through stabilization of WFS1. In addition, Plin5 contributes to the metabolic effects of Tirzepatide in adipose tissue. These findings provide mechanistic insight into the role of Plin5 in adipose tissue remodeling and suggest that the Plin5-WFS1 pathway may represent a potential therapeutic target for obesity and related metabolic disorders.
Yazarların özeti; kaynağından alınmıştır. Biology Direct, 2026 · DOI ↗
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