Sudakin V, Ganoth D, Dahan A, Heller H, Hershko J, Luca F C, Ruderman J V, Hershko A
Unit of Biochemistry, B. Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa.
Mol Biol Cell. 1995 Feb;6(2):185-97. doi: 10.1091/mbc.6.2.185.
The ubiquitin-mediated degradation of mitotic cyclins is required for cells to exit from mitosis. Previous work with cell-free systems has revealed four components required for cyclin-ubiquitin ligation and proteolysis: a nonspecific ubiquitin-activating enzyme E1, a soluble fraction containing a ubiquitin carrier protein activity called E2-C, a crude particulate fraction containing a ubiquitin ligase (E3) activity that is activated during M-phase, and a constitutively active 26S proteasome that degrades ubiquitinated proteins. Here, we identify a novel approximately 1500-kDa complex, termed the cyclosome, which contains a cyclin-selective ubiquitin ligase activity, E3-C. E3-C is present but inactive during interphase; it can be activated in vitro by the addition of cdc2, enabling the transfer of ubiquitin from E2-C to cyclin. The kinetics of E3-C activation suggest the existence of one or more intermediates between cdc2 and E3-C. Cyclosome-associated E3-C acts on both cyclin A and B, and requires the presence of wild-type N-terminal destruction box motifs in each cyclin. Ubiquitinated cyclins are then rapidly recognized and degraded by the proteasome. These results identify the cyclosome-associated E3-C as the component of the cyclin destruction machinery whose activity is ultimately regulated by cdc2 and, as such, the element directly responsible for setting mitotic cyclin levels during early embryonic cell cycles.
细胞退出有丝分裂需要泛素介导的有丝分裂周期蛋白降解。先前对无细胞系统的研究揭示了周期蛋白 - 泛素连接和蛋白水解所需的四个组分:一种非特异性泛素激活酶E1、一种含有称为E2 - C的泛素载体蛋白活性的可溶性组分、一种含有在M期被激活的泛素连接酶(E3)活性的粗颗粒组分以及一种组成型活性的26S蛋白酶体,其可降解泛素化蛋白。在这里,我们鉴定出一种新的约1500 kDa的复合物,称为细胞周期体,其含有周期蛋白选择性泛素连接酶活性,即E3 - C。E3 - C在间期存在但无活性;在体外添加cdc2可将其激活,从而使泛素从E2 - C转移至周期蛋白。E3 - C激活的动力学表明在cdc2和E3 - C之间存在一种或多种中间体。与细胞周期体相关的E3 - C作用于周期蛋白A和B两者,并且每种周期蛋白都需要存在野生型N端破坏框基序。泛素化的周期蛋白随后被蛋白酶体迅速识别并降解。这些结果确定与细胞周期体相关的E3 - C为周期蛋白破坏机制的组分,其活性最终受cdc2调节,因此是在早期胚胎细胞周期中直接负责设定有丝分裂周期蛋白水平的元件。