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人类后期促进复合体中泛素连接到无序底物的RING E3机制可视化

RING E3 mechanism for ubiquitin ligation to a disordered substrate visualized for human anaphase-promoting complex.

作者信息

Brown Nicholas G, VanderLinden Ryan, Watson Edmond R, Qiao Renping, Grace Christy R R, Yamaguchi Masaya, Weissmann Florian, Frye Jeremiah J, Dube Prakash, Ei Cho Shein, Actis Marcelo L, Rodrigues Patrick, Fujii Naoaki, Peters Jan-Michael, Stark Holger, Schulman Brenda A

机构信息

Department of Structural Biology.

Department of Structural Biology, Howard Hughes Medical Institute.

出版信息

Proc Natl Acad Sci U S A. 2015 Apr 28;112(17):5272-9. doi: 10.1073/pnas.1504161112. Epub 2015 Mar 30.

Abstract

For many E3 ligases, a mobile RING (Really Interesting New Gene) domain stimulates ubiquitin (Ub) transfer from a thioester-linked E2∼Ub intermediate to a lysine on a remotely bound disordered substrate. One such E3 is the gigantic, multisubunit 1.2-MDa anaphase-promoting complex/cyclosome (APC), which controls cell division by ubiquitinating cell cycle regulators to drive their timely degradation. Intrinsically disordered substrates are typically recruited via their KEN-box, D-box, and/or other motifs binding to APC and a coactivator such as CDH1. On the opposite side of the APC, the dynamic catalytic core contains the cullin-like subunit APC2 and its RING partner APC11, which collaborates with the E2 UBCH10 (UBE2C) to ubiquitinate substrates. However, how dynamic RING-E2∼Ub catalytic modules such as APC11-UBCH10∼Ub collide with distally tethered disordered substrates remains poorly understood. We report structural mechanisms of UBCH10 recruitment to APC(CDH1) and substrate ubiquitination. Unexpectedly, in addition to binding APC11's RING, UBCH10 is corecruited via interactions with APC2, which we visualized in a trapped complex representing an APC(CDH1)-UBCH10∼Ub-substrate intermediate by cryo-electron microscopy, and in isolation by X-ray crystallography. To our knowledge, this is the first structural view of APC, or any cullin-RING E3, with E2 and substrate juxtaposed, and it reveals how tripartite cullin-RING-E2 interactions establish APC's specificity for UBCH10 and harness a flexible catalytic module to drive ubiquitination of lysines within an accessible zone. We propose that multisite interactions reduce the degrees of freedom available to dynamic RING E3-E2∼Ub catalytic modules, condense the search radius for target lysines, increase the chance of active-site collision with conformationally fluctuating substrates, and enable regulation.

摘要

对于许多E3连接酶而言,一个可移动的RING(真有趣新基因)结构域会促进泛素(Ub)从硫酯连接的E2∼Ub中间体转移至远距离结合的无序底物上的赖氨酸。其中一种这样的E3是巨大的、多亚基的1.2兆道尔顿后期促进复合物/细胞周期体(APC),它通过泛素化细胞周期调节因子来驱动其及时降解,从而控制细胞分裂。内在无序的底物通常通过其KEN框、D框和/或其他与APC及诸如CDH1等共激活因子结合的基序被招募。在APC的另一侧,动态催化核心包含类cullin亚基APC2及其RING伴侣APC11,它们与E2 UBCH10(UBE2C)协作以泛素化底物。然而,诸如APC11 - UBCH10∼Ub这样的动态RING - E2∼Ub催化模块如何与远距离拴系的无序底物碰撞,仍知之甚少我们报道了UBCH10被招募至APC(CDH1)以及底物泛素化的结构机制。出乎意料的是,除了结合APC11的RING外,UBCH10还通过与APC2的相互作用被共同招募,我们通过冷冻电子显微镜在一个代表APC(CDH1) - UBCH10∼Ub - 底物中间体的捕获复合物中以及通过X射线晶体学单独观察到了这种相互作用。据我们所知,这是APC或任何cullin - RING E3与E2和底物并列的首个结构视图,它揭示了三方cullin - RING - E2相互作用如何确立APC对UBCH10的特异性,并利用一个灵活的催化模块来驱动可及区域内赖氨酸的泛素化。我们提出多位点相互作用会减少动态RING E3 - E2∼Ub催化模块可用的自由度,压缩靶赖氨酸的搜索半径,增加活性位点与构象波动底物碰撞的机会,并实现调控。

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