细胞生物学
蛋白酶体
内质网
内质网相关蛋白降解
内膜系统
生物
蛋白质稳态
胞浆
肉豆蔻酰化
化学
生物化学
未折叠蛋白反应
高尔基体
磷酸化
酶
作者
Ruizhu Zhang,S Pan,Suya Zheng,Qing‐Qing Liao,Zhaodi Jiang,Di-Xian Wang,Xuemei Li,Ao Hu,Xinran Li,Yezhang Zhu,Xiaoqi Shen,Jing Lei,Siming Zhong,Xiaomei Zhang,Lingyun Huang,Xiaorong Wang,Lan Huang,Li Shen,Bao‐Liang Song,Jingwei Zhao,Zhiping Wang,Bing Yang,Xing Guo
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-11-29
卷期号:9 (48)
被引量:3
标识
DOI:10.1126/sciadv.adj4605
摘要
Protein degradation in eukaryotic cells is mainly carried out by the 26S proteasome, a macromolecular complex not only present in the cytosol and nucleus but also associated with various membranes. How proteasomes are anchored to the membrane and the biological meaning thereof have been largely unknown in higher organisms. Here, we show that N-myristoylation of the Rpt2 subunit is a general mechanism for proteasome-membrane interaction. Loss of this modification in the Rpt2-G2A mutant cells leads to profound changes in the membrane-associated proteome, perturbs the endomembrane system, and undermines critical cellular processes such as cell adhesion, endoplasmic reticulum-associated degradation and membrane protein trafficking. Rpt2G2A/G2A homozygous mutation is embryonic lethal in mice and is sufficient to abolish tumor growth in a nude mice xenograft model. These findings have defined an evolutionarily conserved mechanism for maintaining membrane protein homeostasis and underscored the significance of compartmentalized protein degradation by myristoyl-anchored proteasomes in health and disease.
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