Sharon Michal, Witt Susanne, Glasmacher Elke, Baumeister Wolfgang, Robinson Carol V
Departments of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, United Kingdom.
Department of Molecular Structural Biology, Max-Planck-Institute of Biochemistry, Am Klopferspitz 18, D-82152 Martinsried Germany.
J Biol Chem. 2007 Jun 22;282(25):18448-18457. doi: 10.1074/jbc.M701534200. Epub 2007 Apr 12.
The 20 S proteasome is an essential proteolytic particle, responsible for degrading short-lived and abnormal intracellular proteins. The 700-kDa assembly is comprised of 14 alpha-type and 14 beta-type subunits, which form a cylindrical architecture composed of four stacked heptameric rings (alpha7beta7beta7alpha7). The formation of the 20 S proteasome is a complex process that involves a cascade of folding, assembly, and processing events. To date, the understanding of the assembly pathway is incomplete due to the experimental challenges of capturing short-lived intermediates. In this study, we have applied a real-time mass spectrometry approach to capture transient species along the assembly pathway of the 20 S proteasome from Rhodococcus erythropolis. In the course of assembly, we observed formation of an early alpha/beta-heterodimer as well as an unprocessed half-proteasome particle. Formation of mature holoproteasomes occurred in concert with the disappearance of half-proteasomes. We also analyzed the beta-subunits before and during assembly and reveal that those with longer propeptides are incorporated into half- and full proteasomes more rapidly than those that are heavily truncated. To characterize the preholoproteasome, formed by docking of two unprocessed half-proteasomes and not observed during assembly of wild type subunits, we trapped this intermediate using a beta-subunit mutational variant. In summary, this study provides evidence for transient intermediates in the assembly pathway and reveals detailed insight into the cleavage sites of the propeptide.
20S蛋白酶体是一种重要的蛋白水解颗粒,负责降解细胞内的短命和异常蛋白质。这个700 kDa的组装体由14个α型和14个β型亚基组成,形成一个由四个堆叠的七聚体环(α7β7β7α7)构成的圆柱形结构。20S蛋白酶体的形成是一个复杂的过程,涉及一系列折叠、组装和加工事件。迄今为止,由于捕获短命中间体存在实验挑战,对组装途径的理解尚不完整。在本研究中,我们应用实时质谱方法来捕获红平红球菌20S蛋白酶体组装途径中的瞬态物种。在组装过程中,我们观察到早期α/β异二聚体以及未加工的半蛋白酶体颗粒的形成。成熟全蛋白酶体的形成与半蛋白酶体的消失同时发生。我们还分析了组装前和组装过程中的β亚基,发现具有较长前肽的β亚基比严重截短的β亚基更快地整合到半蛋白酶体和全蛋白酶体中。为了表征由两个未加工的半蛋白酶体对接形成、在野生型亚基组装过程中未观察到的前全蛋白酶体,我们使用β亚基突变变体捕获了这个中间体。总之,本研究为组装途径中的瞬态中间体提供了证据,并揭示了对前肽切割位点的详细见解。