RIKEN Systems and Structural Biology Center, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan ; Division of Structural and Synthetic Biology, RIKEN Center for Life Science Technologies, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan.
RIKEN Systems and Structural Biology Center, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan ; Division of Structural and Synthetic Biology, RIKEN Center for Life Science Technologies, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan ; Department of Pharmaceutical Sciences, Faculty of Pharmacy, Musashino University, 1-1-20 Shinmachi, Nishitokyo-shi, Tokyo 202-8585, Japan.
FEBS Open Bio. 2014 Jul 5;4:689-703. doi: 10.1016/j.fob.2014.06.010. eCollection 2014.
Anaphase-promoting complex or cyclosome (APC/C) is a multisubunit ubiquitin ligase E3 that targets cell-cycle regulators. Cdc20 is required for full activation of APC/C in M phase, and mediates substrate recognition. In vertebrates, Emi2/Erp1/FBXO43 inhibits APC/C-Cdc20, and functions as a cytostatic factor that causes long-term M phase arrest of mature oocytes. In this study, we found that a fragment corresponding to the zinc-binding region (ZBR) domain of Emi2 inhibits cell-cycle progression, and impairs the association of Cdc20 with the APC/C core complex in HEK293T cells. Furthermore, we revealed that the ZBR fragment of Emi2 inhibits in vitro ubiquitin chain elongation catalyzed by the APC/C cullin-RING ligase module, the ANAPC2-ANAPC11 subcomplex, in combination with the ubiquitin chain-initiating E2, E2C/UBE2C/UbcH10. Structural analyses revealed that the Emi2 ZBR domain uses different faces for the two mechanisms. Thus, the double-faced ZBR domain of Emi2 antagonizes the APC/C function by inhibiting both the binding with the coactivator Cdc20 and ubiquitylation mediated by the cullin-RING ligase module and E2C. In addition, the tail region between the ZBR domain and the C-terminal RL residues [the post-ZBR (PZ) region] interacts with the cullin subunit, ANAPC2. In the case of the ZBR fragment of the somatic paralogue of Emi2, Emi1/FBXO5, these inhibitory activities against cell division and ubiquitylation were not observed. Finally, we identified two sets of key residues in the Emi2 ZBR domain that selectively exert each of the dual Emi2-specific modes of APC/C inhibition, by their mutation in the Emi2 ZBR domain and their transplantation into the Emi1 ZBR domain.
后期促进复合物或细胞周期蛋白体(APC/C)是一种多亚基泛素连接酶 E3,可靶向细胞周期调节剂。Cdc20 是 APC/C 在 M 期完全激活所必需的,并且介导底物识别。在脊椎动物中,Emi2/Erp1/FBXO43 抑制 APC/C-Cdc20,并作为细胞静止因子发挥作用,导致成熟卵母细胞的长期 M 期停滞。在这项研究中,我们发现 Emi2 的锌结合区(ZBR)结构域的一个片段抑制细胞周期进程,并损害 Cdc20 与 APC/C 核心复合物在 HEK293T 细胞中的结合。此外,我们揭示 Emi2 的 ZBR 片段抑制 APC/C 半胱氨酸丰富环家族连接酶模块、ANAPC2-ANAPC11 亚基复合物以及与泛素链起始 E2、E2C/UBE2C/UbcH10 组合的体外泛素链延伸催化。结构分析表明,Emi2 的 ZBR 结构域通过两种机制使用不同的表面。因此,Emi2 的双面 ZBR 结构域通过抑制与共激活因子 Cdc20 的结合以及通过半胱氨酸丰富环家族连接酶模块和 E2C 介导的泛素化来拮抗 APC/C 的功能。此外,ZBR 结构域和 C 末端 RL 残基之间的尾部区域[ZBR 后区(PZ)区]与半胱氨酸丰富环家族连接酶亚基 ANAPC2 相互作用。在 Emi2 的体细胞同源物 Emi1/FBXO5 的 ZBR 片段的情况下,没有观察到这些对细胞分裂和泛素化的抑制活性。最后,我们确定了 Emi2 ZBR 结构域中的两组关键残基,通过在 Emi2 ZBR 结构域中突变这些残基并将其移植到 Emi1 ZBR 结构域中,选择性地发挥 Emi2 特异性 APC/C 抑制的两种模式。