Department of Biochemistry and Molecular Biology, Seoul National University College of Medicine, Seoul 03080, Korea.
Department of Biochemistry and Molecular Biology, Seoul National University College of Medicine, Seoul 03080, Korea; Department of Biomedical Sciences, Seoul National University Graduate School, Seoul 03080, Korea.
Cell Rep. 2023 Jul 25;42(7):112701. doi: 10.1016/j.celrep.2023.112701. Epub 2023 Jun 27.
The 26S proteasome comprises 20S catalytic and 19S regulatory complexes. Approximately half of the proteasomes in cells exist as free 20S complexes; however, our mechanistic understanding of what determines the ratio of 26S to 20S species remains incomplete. Here, we show that glucose starvation uncouples 26S holoenzymes into 20S and 19S subcomplexes. Subcomplex affinity purification and quantitative mass spectrometry reveal that Ecm29 proteasome adaptor and scaffold (ECPAS) mediates this structural remodeling. The loss of ECPAS abrogates 26S dissociation, reducing degradation of 20S proteasome substrates, including puromycylated polypeptides. In silico modeling suggests that ECPAS conformational changes commence the disassembly process. ECPAS is also essential for endoplasmic reticulum stress response and cell survival during glucose starvation. In vivo xenograft model analysis reveals elevated 20S proteasome levels in glucose-deprived tumors. Our results demonstrate that the 20S-19S disassembly is a mechanism adapting global proteolysis to physiological needs and countering proteotoxic stress.
26S 蛋白酶体由 20S 催化和 19S 调节复合物组成。细胞中大约有一半的蛋白酶体以游离的 20S 复合物形式存在;然而,我们对决定 26S 与 20S 物种比例的机制的理解仍然不完整。在这里,我们表明葡萄糖饥饿将 26S 全酶解聚成 20S 和 19S 亚基。亚基亲和纯化和定量质谱分析表明,Ecm29 蛋白酶体衔接子和支架 (ECPAS) 介导了这种结构重塑。ECPAS 的缺失阻止了 26S 的解离,减少了 20S 蛋白酶体底物的降解,包括被 puromycin 修饰的多肽。计算机建模表明 ECPAS 的构象变化启动了组装过程。ECPAS 对于葡萄糖饥饿期间内质网应激反应和细胞存活也是必不可少的。体内异种移植模型分析显示,葡萄糖剥夺的肿瘤中 20S 蛋白酶体水平升高。我们的结果表明,20S-19S 的解聚是一种适应生理需求和对抗蛋白毒性应激的机制,可调节全局蛋白水解。