Hershko A, Ganoth D, Sudakin V, Dahan A, Cohen L H, Luca F C, Ruderman J V, Eytan E
Unit of Biochemistry, B. Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa.
J Biol Chem. 1994 Feb 18;269(7):4940-6.
Cyclin B, a positive regulatory subunit of the cdc2 protein kinase complex, is synthesized across the cell cycle and then rapidly degraded at the end of mitosis. Degradation of cyclin B is triggered by increased levels of active cdc2 and is required for exit from mitosis. It was shown previously that cyclin degradation is carried out by the ubiquitin system, but the components responsible for the specificity and regulation of cyclin-ubiquitin ligation have not been identified. The formation of ubiquitin-protein conjugates usually requires the sequential action of three enzymes: a ubiquitin-activating enzyme (E1), a ubiquitin-carrier protein (E2), and a ubiquitin-protein ligase (E3). In this work we employed a fractionation approach to identify the components of a clam oocyte system responsible for specific ubiquitination of cyclin and to determine which components are regulated by cdc2. Experimental conditions were established under which a fusion protein containing an amino-terminal fragment of cyclin B is ligated to ubiquitin only in extracts from M-phase but not from interphase cells. Fractionation of M-phase extracts by DEAE-cellulose and high speed centrifugation yielded three fractions that were all required for cell cycle stage-specific cyclin-ubiquitin ligation. Only one of these fractions could be replaced by a previously known enzyme of the ubiquitin system, E1. A second fraction contained a novel species of E2, termed E2-C, which acts in the ligation of ubiquitin to cyclin but not to other endogenous proteins. A third component is associated with particulate material. Whereas E2-C from either M-phase or interphase extracts is active, the particulate component is active only in M-phase. Incubation of the particulate fraction from interphase cells with the protein kinase cdc2 activates it for cyclin-ubiquitin ligation, after a lag of about 30 min. These findings suggest that the particulate fraction may contain an E3 enzyme that acts on cyclin, as well as additional factors activated by cdc2.
细胞周期蛋白B是细胞分裂周期蛋白2(cdc2)蛋白激酶复合物的一个正调控亚基,在整个细胞周期中合成,然后在有丝分裂末期迅速降解。细胞周期蛋白B的降解由活性cdc2水平的升高触发,是退出有丝分裂所必需的。先前已表明细胞周期蛋白的降解是由泛素系统进行的,但负责细胞周期蛋白-泛素连接特异性和调控的成分尚未确定。泛素-蛋白质缀合物的形成通常需要三种酶的顺序作用:泛素激活酶(E1)、泛素载体蛋白(E2)和泛素-蛋白质连接酶(E3)。在这项工作中,我们采用分级分离方法来鉴定负责细胞周期蛋白特异性泛素化的蛤卵母细胞系统的成分,并确定哪些成分受cdc2调控。建立了实验条件,在此条件下,仅在M期提取物中而非间期细胞提取物中,含有细胞周期蛋白B氨基末端片段的融合蛋白与泛素连接。通过DEAE-纤维素和高速离心对M期提取物进行分级分离,得到三个组分,它们都是细胞周期阶段特异性细胞周期蛋白-泛素连接所必需的。这些组分中只有一个可以被泛素系统中先前已知的酶E1替代。第二个组分包含一种新的E2种类,称为E2-C,它在泛素与细胞周期蛋白的连接中起作用,但不与其他内源性蛋白质连接。第三个成分与颗粒物质相关。来自M期或间期提取物的E2-C都有活性,而颗粒成分仅在M期有活性。将间期细胞的颗粒组分与蛋白激酶cdc2一起孵育,约30分钟的延迟后,它就被激活用于细胞周期蛋白-泛素连接。这些发现表明颗粒组分可能含有作用于细胞周期蛋白的E3酶,以及由cdc2激活的其他因子。