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分析 HECT 连接酶 E6AP 对泛素的识别,深入了解其连接特异性。

Analysis of ubiquitin recognition by the HECT ligase E6AP provides insight into its linkage specificity.

机构信息

From the Rudolf Virchow Center for Experimental Biomedicine, University of Würzburg, 97080 Würzburg, Germany.

Department of Chemistry, University of Massachusetts at Amherst, Amherst, Massachusetts 01003.

出版信息

J Biol Chem. 2019 Apr 12;294(15):6113-6129. doi: 10.1074/jbc.RA118.007014. Epub 2019 Feb 8.

Abstract

Deregulation of the HECT-type ubiquitin ligase E6AP (UBE3A) is implicated in human papilloma virus-induced cervical tumorigenesis and several neurodevelopmental disorders. Yet the structural underpinnings of activity and specificity in this crucial ligase are incompletely understood. Here, we unravel the determinants of ubiquitin recognition by the catalytic domain of E6AP and assign them to particular steps in the catalytic cycle. We identify a functionally critical interface that is specifically required during the initial formation of a thioester-linked intermediate between the C terminus of ubiquitin and the ligase-active site. This interface resembles the one utilized by NEDD4-type enzymes, indicating that it is widely conserved across HECT ligases, independent of their linkage specificities. Moreover, we uncover surface regions in ubiquitin and E6AP, both in the N- and C-terminal portions of the catalytic domain, that are important for the subsequent reaction step of isopeptide bond formation between two ubiquitin molecules. We decipher key elements of linkage specificity, including the C-terminal tail of E6AP and a hydrophilic surface region of ubiquitin in proximity to the acceptor site Lys-48. Intriguingly, mutation of Glu-51, a single residue within this region, permits formation of alternative chain types, thus pointing to a key role of ubiquitin in conferring linkage specificity to E6AP. We speculate that substrate-assisted catalysis, as described previously for certain RING-associated ubiquitin-conjugating enzymes, constitutes a common principle during linkage-specific ubiquitin chain assembly by diverse classes of ubiquitination enzymes, including HECT ligases.

摘要

HECT 型泛素连接酶 E6AP(UBE3A)的去调控与人类乳头瘤病毒诱导的宫颈癌肿瘤发生和几种神经发育障碍有关。然而,这种关键连接酶的活性和特异性的结构基础还不完全清楚。在这里,我们揭示了 E6AP 催化结构域识别泛素的决定因素,并将它们分配到催化循环的特定步骤中。我们确定了一个功能关键的界面,该界面在泛素 C 末端与连接酶活性位点之间形成硫酯键连接的中间物的初始形成过程中是特异性需要的。该界面类似于 NEDD4 型酶所利用的界面,表明它在 HECT 连接酶中广泛保守,独立于它们的连接特异性。此外,我们在泛素和 E6AP 中发现了表面区域,包括催化结构域的 N 端和 C 端部分,这些区域对于两个泛素分子之间形成异肽键的后续反应步骤很重要。我们破译了连接特异性的关键要素,包括 E6AP 的 C 末端尾巴和靠近受体位点 Lys-48 的泛素亲水表面区域。有趣的是,该区域中单个残基谷氨酸 51 的突变允许形成替代的链类型,因此表明泛素在赋予 E6AP 连接特异性方面起着关键作用。我们推测,正如先前某些 RING 相关泛素连接酶所描述的那样,底物辅助催化构成了不同类别的泛素化酶(包括 HECT 连接酶)在组装具有特定连接的泛素链时的一个共同原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2c6/6463701/f4977a7e1fde/zbc0141903510001.jpg

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