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泛素C末端亲电试剂是用于泛素共轭机制鉴定和机理研究的基于活性的探针。

Ubiquitin C-terminal electrophiles are activity-based probes for identification and mechanistic study of ubiquitin conjugating machinery.

作者信息

Love Kerry Routenberg, Pandya Renuka K, Spooner Eric, Ploegh Hidde L

机构信息

Whitehead Institute for Biomedical Research, 9 Cambridge Center, Cambridge, MA 02143, USA.

出版信息

ACS Chem Biol. 2009 Apr 17;4(4):275-87. doi: 10.1021/cb9000348.

Abstract

Protein modification by ubiquitin (Ub) and ubiquitin-like modifiers (Ubl) requires the action of activating (E1), conjugating (E2), and ligating (E3) enzymes and is a key step in the specific destruction of proteins. Deubiquitinating enzymes (DUBs) deconjugate substrates modified with Ub/Ubl's and recycle Ub inside the cell. Genome mining based on sequence homology to proteins with known function has assigned many enzymes to this pathway without confirmation of either conjugating or DUB activity. Function-dependent methodologies are still the most useful for rapid identification or assessment of biological activity of expressed proteins from cells. Activity-based protein profiling uses chemical probes that are active-site-directed for the classification of protein activities in complex mixtures. Here we show that the design and use of an expanded set of Ub-based electrophilic probes allowed us to recover and identify members of each enzyme class in the ubiquitin-proteasome system, including E3 ligases and DUBs with previously unverified activity. We show that epitope-tagged Ub-electrophilic probes can be used as activity-based probes for E3 ligase identification by in vitro labeling and activity studies of purified enzymes identified from complex mixtures in cell lysate. Furthermore, the reactivity of our probe with the HECT domain of the E3 Ub ligase ARF-BP1 suggests that multiple cysteines may be in the vicinity of the E2-binding site and are capable of the transfer of Ub to self or to a substrate protein.

摘要

泛素(Ub)和类泛素修饰因子(Ubl)介导的蛋白质修饰需要激活酶(E1)、缀合酶(E2)和连接酶(E3)的作用,是蛋白质特异性降解的关键步骤。去泛素化酶(DUBs)使经Ub/Ubl修饰的底物去缀合,并在细胞内使Ub循环利用。基于与已知功能蛋白质的序列同源性进行基因组挖掘,已将许多酶归入该途径,但未对其缀合或DUB活性进行确认。功能依赖性方法对于快速鉴定或评估细胞中表达蛋白质的生物学活性仍然最为有用。基于活性的蛋白质谱分析使用针对复杂混合物中蛋白质活性分类的活性位点导向化学探针。在此,我们表明,设计和使用一组扩展的基于Ub的亲电探针,使我们能够回收和鉴定泛素-蛋白酶体系统中每个酶类的成员,包括具有先前未经验证活性的E3连接酶和DUBs。我们表明,表位标记的Ub亲电探针可作为基于活性的探针,通过对从细胞裂解物的复杂混合物中鉴定出的纯化酶进行体外标记和活性研究来鉴定E3连接酶。此外,我们的探针与E3泛素连接酶ARF-BP1的HECT结构域的反应性表明,多个半胱氨酸可能在E2结合位点附近,并且能够将Ub转移至自身或底物蛋白。

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