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HECT E3介导的泛素连接及赖氨酸优先化机制

Mechanism of ubiquitin ligation and lysine prioritization by a HECT E3.

作者信息

Kamadurai Hari B, Qiu Yu, Deng Alan, Harrison Joseph S, Macdonald Chris, Actis Marcelo, Rodrigues Patrick, Miller Darcie J, Souphron Judith, Lewis Steven M, Kurinov Igor, Fujii Naoaki, Hammel Michal, Piper Robert, Kuhlman Brian, Schulman Brenda A

机构信息

Department of Structural Biology , St Jude Children's Research Hospital , Memphis , United States.

出版信息

Elife. 2013 Aug 8;2:e00828. doi: 10.7554/eLife.00828.

Abstract

Ubiquitination by HECT E3 enzymes regulates myriad processes, including tumor suppression, transcription, protein trafficking, and degradation. HECT E3s use a two-step mechanism to ligate ubiquitin to target proteins. The first step is guided by interactions between the catalytic HECT domain and the E2∼ubiquitin intermediate, which promote formation of a transient, thioester-bonded HECT∼ubiquitin intermediate. Here we report that the second step of ligation is mediated by a distinct catalytic architecture established by both the HECT E3 and its covalently linked ubiquitin. The structure of a chemically trapped proxy for an E3∼ubiquitin-substrate intermediate reveals three-way interactions between ubiquitin and the bilobal HECT domain orienting the E3∼ubiquitin thioester bond for ligation, and restricting the location of the substrate-binding domain to prioritize target lysines for ubiquitination. The data allow visualization of an E2-to-E3-to-substrate ubiquitin transfer cascade, and show how HECT-specific ubiquitin interactions driving multiple reactions are repurposed by a major E3 conformational change to promote ligation. DOI:http://dx.doi.org/10.7554/eLife.00828.001.

摘要

HECT E3 酶介导的泛素化作用调控着众多过程,包括肿瘤抑制、转录、蛋白质运输及降解。HECT E3 酶采用两步机制将泛素连接至靶蛋白。第一步由催化性 HECT 结构域与 E2泛素中间体之间的相互作用引导,促进形成一个短暂的、硫酯键连接的 HECT泛素中间体。在此,我们报道连接的第二步由 HECT E3 及其共价连接的泛素共同建立的独特催化结构介导。一种化学捕获的 E3泛素 - 底物中间体替代物的结构揭示了泛素与双叶 HECT 结构域之间的三向相互作用,该相互作用使 E3泛素硫酯键定向用于连接,并限制底物结合结构域的位置,以便优先选择靶赖氨酸进行泛素化。这些数据使我们能够可视化 E2 到 E3 再到底物的泛素转移级联反应,并展示了驱动多个反应的 HECT 特异性泛素相互作用是如何通过 E3 的主要构象变化而被重新利用以促进连接的。DOI:http://dx.doi.org/10.7554/eLife.0.828.001

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b149/3738095/ab3fe85f598e/elife00828f001.jpg

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