Ji Chang Hoon, Kim Su Bin, Lee Min Ju, Kwon Yong Tae
Cellular Degradation Biology Center and Department of Biomedical Sciences, College of Medicine, Seoul National University, Jongno-gu, Seoul, Republic of Korea.
AUTOTAC Bio Inc., Jongno-gu, Seoul, Republic of Korea.
Methods Mol Biol. 2023;2620:243-252. doi: 10.1007/978-1-0716-2942-0_26.
In addition to generating N-degron-carrying substrates destined for proteolysis, N-terminal arginylation can globally upregulate selective macroautophagy via activation of the autophagic N-recognin and archetypal autophagy cargo receptor p62/SQSTM1/sequestosome-1. To evaluate the macroautophagic turnover of cellular substrates, including protein aggregates (aggrephagy) and subcellular organelles (organellophagy) mediated by N-terminal arginylation in vivo, we report here a protocol for assaying the activation of the autophagic Arg/N-degron pathway and degradation of cellular cargoes via N-terminal arginylation. These methods, reagents, and conditions are applicable across a wide spectrum of different cell lines, primary cultures, and/or animal tissues, thereby providing a general means for identification and validation of putative cellular cargoes degraded by Nt-arginylation-activated selective autophagy.
除了生成注定要进行蛋白水解的携带N-端降解决定子的底物外,N-末端精氨酰化还可通过激活自噬N-识别蛋白和典型的自噬货物受体p62/SQSTM1/聚集体结合蛋白1来全面上调选择性巨自噬。为了评估体内由N-末端精氨酰化介导的细胞底物的巨自噬周转,包括蛋白聚集体(聚集体自噬)和亚细胞器(细胞器自噬),我们在此报告一种用于检测自噬Arg/N-端降解决定子途径的激活以及通过N-末端精氨酰化对细胞货物进行降解的方案。这些方法、试剂和条件适用于广泛的不同细胞系、原代培养物和/或动物组织,从而为鉴定和验证由Nt-精氨酰化激活的选择性自噬降解的假定细胞货物提供了一种通用方法。