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TRIP12结构揭示了HECT E3形成K29连接和分支泛素链的过程。

TRIP12 structures reveal HECT E3 formation of K29 linkages and branched ubiquitin chains.

作者信息

Maiwald Samuel A, Schneider Laura A, Vollrath Ronnald, Liwocha Joanna, Maletic Matthew D, Swatek Kirby N, Mulder Monique P C, Schulman Brenda A

机构信息

Department of Chemistry, School of Natural Sciences, Technical University of Munich, Garching, Germany.

Department of Molecular Machines and Signaling, Max Planck Institute of Biochemistry, Martinsried, Germany.

出版信息

Nat Struct Mol Biol. 2025 May 26. doi: 10.1038/s41594-025-01561-1.

Abstract

Regulation by ubiquitin depends on E3 ligases forging chains of specific topologies, yet the mechanisms underlying the generation of atypical linkages remain largely elusive. Here we utilize biochemistry, chemistry, and cryo-EM to define the catalytic architecture producing K29 linkages and K29/K48 branches for the human HECT E3 TRIP12. TRIP12 resembles a pincer. One pincer side comprises tandem ubiquitin-binding domains, engaging the proximal ubiquitin to direct its K29 towards the ubiquitylation active site, and selectively capturing a distal ubiquitin from a K48-linked chain. The opposite pincer side-the HECT domain-precisely juxtaposes the ubiquitins to be joined, further ensuring K29 linkage specificity. Comparison to the prior structure visualizing K48-linked chain formation by UBR5 reveals a similar mechanism shared by two human HECT enzymes: parallel features of the E3s, donor and acceptor ubiquitins configure the active site around the targeted lysine, with E3-specific domains buttressing the acceptor for linkage-specific polyubiquitylation.

摘要

泛素介导的调控作用依赖于E3连接酶形成特定拓扑结构的链,然而非典型连接的产生机制在很大程度上仍不清楚。在这里,我们利用生物化学、化学和冷冻电镜技术来确定人类HECT E3 TRIP12产生K29连接和K29/K48分支的催化结构。TRIP12类似于一个钳子。钳子的一侧包含串联的泛素结合结构域,与近端泛素结合,将其K29引导至泛素化活性位点,并从K48连接的链中选择性捕获远端泛素。钳子的另一侧——HECT结构域——精确地将待连接的泛素并列放置,进一步确保K29连接的特异性。与之前可视化UBR5形成K48连接链的结构相比,揭示了两种人类HECT酶共有的类似机制:E3、供体和受体泛素的平行特征围绕目标赖氨酸构建活性位点,E3特异性结构域支撑受体以进行连接特异性多泛素化。

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