Lu Ying, Wu Jiayi, Dong Yuanchen, Chen Shuobing, Sun Shuangwu, Ma Yong-Bei, Ouyang Qi, Finley Daniel, Kirschner Marc W, Mao Youdong
Department of Systems Biology, Harvard Medical School, Boston, MA 02115, USA.
State Key Laboratory for Artificial Microstructures and Mesoscopic Physics, Institute of Condensed Matter Physics, School of Physics, Center for Quantitative Biology, Peking University, Beijing 100871, China.
Mol Cell. 2017 Jul 20;67(2):322-333.e6. doi: 10.1016/j.molcel.2017.06.007. Epub 2017 Jul 6.
The proteasome holoenzyme is activated by its regulatory particle (RP) consisting of two subcomplexes, the lid and the base. A key event in base assembly is the formation of a heterohexameric ring of AAA-ATPases, which is guided by at least four RP assembly chaperones in mammals: PAAF1, p28/gankyrin, p27/PSMD9, and S5b. Using cryogenic electron microscopy, we analyzed the non-AAA structure of the p28-bound human RP at 4.5 Å resolution and determined seven distinct conformations of the Rpn1-p28-AAA subcomplex within the p28-bound RP at subnanometer resolutions. Remarkably, the p28-bound AAA ring does not form a channel in the free RP and spontaneously samples multiple "open" and "closed" topologies at the Rpt2-Rpt6 and Rpt3-Rpt4 interfaces. Our analysis suggests that p28 assists the proteolytic core particle to select a specific conformation of the ATPase ring for RP engagement and is released in a shoehorn-like fashion in the last step of the chaperone-mediated proteasome assembly.
蛋白酶体全酶由其调节颗粒(RP)激活,该调节颗粒由两个亚复合物组成,即盖子和底座。底座组装中的一个关键事件是形成六聚体的AAA-ATP酶环,在哺乳动物中,这至少由四种RP组装伴侣引导:PAAF1、p28/ankyrin、p27/PSMD9和S5b。我们使用低温电子显微镜,以4.5埃的分辨率分析了与p28结合的人RP的非AAA结构,并在亚纳米分辨率下确定了与p28结合的RP内Rpn1-p28-AAA亚复合物的七种不同构象。值得注意的是,与p28结合的AAA环在游离RP中不形成通道,而是在Rpt2-Rpt6和Rpt3-Rpt4界面自发呈现多种“开放”和“封闭”拓扑结构。我们的分析表明,p28协助蛋白酶解核心颗粒选择ATP酶环的特定构象以进行RP结合,并在伴侣介导的蛋白酶体组装的最后一步以类似鞋拔的方式释放。