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Atrogin-1 promotes muscle homeostasis by regulating levels of endoplasmic reticulum chaperone BiP

JCI Insight. 2024-03; 
Avnika A Ruparelia, Margo Montandon, Jo Merriner, Cheng Huang, Siew Fen Lisa Wong, Carmen Sonntag, Justin P Hardee, Gordon S Lynch, Lee B Miles, Ashley Siegel, Thomas E Hall, Ralf B Schittenhelm, Peter D Currie
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Molecular Biology Reagents … Consistent with the mammalian models, we observed a significant increase in BiP expression … Plasmids for transfection were synthesized by Genscript. Myc-atrogin-1 was generated by … Get A Quote

摘要

Skeletal muscle wasting results from numerous pathological conditions affecting both the musculoskeletal and nervous systems. A unifying feature of these pathologies is the upregulation of members of the E3 ubiquitin ligase family, resulting in increased proteolytic degradation of target proteins. Despite the critical role of E3 ubiquitin ligases in regulating muscle mass, the specific proteins they target for degradation and the mechanisms by which they regulate skeletal muscle homeostasis remain ill-defined. Here, using zebrafish loss-of-function models combined with in vivo cell biology and proteomic approaches, we reveal a role of atrogin-1 in regulating the levels of the endoplasmic reticulum chaperone BiP... More

关键词

Genetic diseases, Muscle, Muscle biology, Ubiquitin-proteosome system