Passmore Lori A, McCormack Elizabeth A, Au Shannon W N, Paul Angela, Willison Keith R, Harper J Wade, Barford David
Section of Structural Biology and Cancer Research UK Centre for Cell and Molecular Biology, Institute of Cancer Research, 237 Fulham Road, London SW3 6JB, UK.
EMBO J. 2003 Feb 17;22(4):786-96. doi: 10.1093/emboj/cdg084.
The anaphase-promoting complex (APC) is a multisubunit E3 ubiquitin ligase that targets specific cell cycle-related proteins for degradation, regulating progression from metaphase to anaphase and exit from mitosis. The APC is regulated by binding of the coactivator proteins Cdc20p and Cdh1p, and by phosphorylation. We have developed a purification strategy that allowed us to purify the budding yeast APC to near homogeneity and identify two novel APC-associated proteins, Swm1p and Mnd2p. Using an in vitro ubiquitylation system and a native gel binding assay, we have characterized the properties of wild-type and mutant APC. We show that both the D and KEN boxes contribute to substrate recognition and that coactivator is required for substrate binding. APC lacking Apc9p or Doc1p/Apc10 have impaired E3 ligase activities. However, whereas Apc9p is required for structural stability and the incorporation of Cdc27p into the APC complex, Doc1p/Apc10 plays a specific role in substrate recognition by APC-coactivator complexes. These results imply that Doc1p/Apc10 may play a role to regulate the binding of specific substrates, similar to that of the coactivators.
后期促进复合物(APC)是一种多亚基E3泛素连接酶,它靶向特定的细胞周期相关蛋白进行降解,从而调节从中期到后期的进程以及有丝分裂的退出。APC受共激活蛋白Cdc20p和Cdh1p的结合以及磷酸化作用的调节。我们开发了一种纯化策略,使我们能够将芽殖酵母APC纯化至近乎均一,并鉴定出两种新的与APC相关的蛋白,即Swm1p和Mnd2p。利用体外泛素化系统和天然凝胶结合试验,我们对野生型和突变型APC的特性进行了表征。我们表明,D盒和KEN盒都有助于底物识别,并且共激活因子是底物结合所必需的。缺乏Apc9p或Doc1p/Apc10的APC的E3连接酶活性受损。然而,虽然Apc9p对于结构稳定性以及将Cdc27p整合到APC复合物中是必需的,但Doc1p/Apc10在APC-共激活因子复合物识别底物方面发挥着特定作用。这些结果表明,Doc1p/Apc10可能类似于共激活因子,在调节特定底物的结合方面发挥作用。