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无需ATP、E1和E2酶的蛋白质泛素化及多聚泛素链的形成。

Protein ubiquitination and formation of polyubiquitin chains without ATP, E1 and E2 enzymes.

作者信息

Park Sungjin, Krist David T, Statsyuk Alexander V

机构信息

Department of Chemistry , Center for Molecular Innovation and Drug Discovery , Chemistry of Life Processes Institute , Northwestern University , Silverman Hall, 2145 Sheridan Road , Evanston , Illinois 60208 , USA . Email:

出版信息

Chem Sci. 2015 Mar 1;6(3):1770-1779. doi: 10.1039/c4sc02340d. Epub 2014 Nov 26.

Abstract

Studying protein ubiquitination is difficult due to the complexity of the E1-E2-E3 ubiquitination cascade. Here we report the discovery that C-terminal ubiquitin thioesters can undergo direct transthiolation with the catalytic cysteine of the model HECT E3 ubiquitin ligase Rsp5 to form a catalytically active Rsp5∼ubiquitin thioester (Rsp5∼Ub). The resulting Rsp5∼Ub undergoes efficient autoubiquitination, ubiquitinates protein substrates, and synthesizes polyubiquitin chains with native Ub isopeptide linkage specificity. Since the developed chemical system bypasses the need for ATP, E1 and E2 enzymes while maintaining the native HECT E3 mechanism, we named it "Bypassing System" (ByS). Importantly, ByS provides direct evidence that E2 enzymes are dispensable for K63 specific isopeptide bond formation between ubiquitin molecules by Rsp5 . Additionally, six other E3 enzymes including Nedd4-1, Nedd4-2, Itch, and Wwp1 HECT ligases, along with Parkin and HHARI RBR ligases processed Ub thioesters under ByS reaction conditions. These findings provide general mechanistic insights on protein ubiquitination, and offer new strategies for assay development to discover pharmacological modulators of E3 enzymes.

摘要

由于E1-E2-E3泛素化级联反应的复杂性,研究蛋白质泛素化具有一定难度。在此,我们报告一项发现,即C末端泛素硫酯可与模型HECT E3泛素连接酶Rsp5的催化半胱氨酸直接进行转硫醇化反应,形成具有催化活性的Rsp5泛素硫酯(Rsp5Ub)。生成的Rsp5~Ub可高效进行自身泛素化、使蛋白质底物泛素化,并以天然泛素异肽键连接特异性合成多聚泛素链。由于所开发的化学系统在维持天然HECT E3机制的同时,绕过了对ATP、E1和E2酶的需求,我们将其命名为“绕过系统”(ByS)。重要的是,ByS提供了直接证据,表明E2酶对于Rsp5在泛素分子之间形成K63特异性异肽键并非必需。此外,包括Nedd4-1、Nedd4-2、Itch和Wwp1 HECT连接酶在内的其他六种E3酶,以及Parkin和HHARI RBR连接酶,在ByS反应条件下均可处理泛素硫酯。这些发现为蛋白质泛素化提供了一般性的机制见解,并为检测方法的开发提供了新策略,以发现E3酶的药理学调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40b2/5485889/a3721d6b08ff/c4sc02340d-f1.jpg

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