| Literature DB >> 36252341 |
Mengyue You1, Fan Wu1, Meilin Gao1, Mengyue Chen1, Shu Zeng1, Yang Zhang1, Wei Zhao1, Danyang Li1, Li Wei1, Xiong Z Ruan2, Yaxi Chen3.
Abstract
SelenoproteinK (SelK), an endoplasmic reticulum (ER) - resident protein, possesses the property of mediate oxidation resistance and ER - associated protein degradation (ERAD) in several tissues. Here, we found that increased SelK markedly promotes fatty acid translocase (CD36) subcellular trafficking and aggravates lipid accumulation in hepatocytes. We demonstrated that SelK is required for the assembly of COPII vesicles and accelerates transport of palmitoylated-CD36 from the ER to Golgi, thus facilitating CD36 plasma membrane distribution both in vivo and in vitro. The mechanism is that SelK increases the stability of Sar1B and triggers CD36-containing nascent COPII vesicle formation, consequently, promotes CD36 subcellular trafficking. Furthermore, we verified that the intervention of SelK SH3 binding domain can inhibit the vesicle formation and CD36 subcellular trafficking, significantly ameliorates NAFLD in mice. Collectively, our findings disclose an unexpected role of SelK in regulating NAFLD development, suggesting that targeting the SelK of hepatocytes may be a new therapeutic strategy for the treatment of NAFLD.Entities:
Keywords: CD36; COPII vesicles; NAFLD; Selenoprotein K; Subcellular trafficking
Year: 2022 PMID: 36252341 PMCID: PMC9579716 DOI: 10.1016/j.redox.2022.102500
Source DB: PubMed Journal: Redox Biol ISSN: 2213-2317 Impact factor: 10.787