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典型和变异拟南芥U-box E3泛素蛋白连接酶的生化功能。

Biochemical function of typical and variant Arabidopsis thaliana U-box E3 ubiquitin-protein ligases.

作者信息

Wiborg Jakob, O'Shea Charlotte, Skriver Karen

机构信息

Department of Molecular Biology, University of Copenhagen, Universitetsparken 13, DK-2100 Copenhagen Ø, Denmark.

出版信息

Biochem J. 2008 Aug 1;413(3):447-57. doi: 10.1042/BJ20071568.

Abstract

The variance of the U-box domain in 64 Arabidopsis thaliana (thale cress) E3s (ubiquitin-protein ligases) was used to examine the interactions between E3s and E2s (ubiquitin-conjugating enzymes). E2s and E3s are components of the ubiquitin protein degradation pathway. Seven U-box proteins were analysed for their ability to ubiquitinate proteins in vitro in co-operation with different E2s. All U-box domains exhibited ubiquitination activity and interacted productively with UBC4/5-type E2s. Three and four of the U-box domains mediated ubiquitin addition in the presence of UBC13 and UBC7 E2s respectively, but no productive interaction was observed with the UBC15 E2 tested. The activity of AtPUB54 [Arabidopsis thaliana (thale cress) plant U-box 54 protein] was dependent on Trp(266) in the E2-binding cleft, and the E2 selectivity was changed by substitution of this position. The function of the distant U-box protein, AtPUB49, representing a large family of eukaryotic proteins containing a U-box linked to a cyclophilin-like peptidyl-prolyl cis-trans isomerase domain, was characterized biochemically. AtPUB49 functioned both as a prolyl isomerase and a chaperone by catalysing cis-trans isomerization of peptidyl-prolyl bonds and dissolving protein aggregates. In conclusion, both typical and atypical Arabidopsis U-box proteins were active E3s. The overlap in the E3/E2 selectivity suggests that in vivo specificity is not determined only by the E3-E2 interactions, but also by other parameters, e.g. co-existence or interactions with additional domains. The biochemical functions of AtPUB49 suggest that the protein can be involved in folding or degradation of protein substrates. Similar functions can also be retained within a protein complex with separate chaperone and U-box proteins.

摘要

利用64种拟南芥E3(泛素蛋白连接酶)中U-box结构域的差异来检测E3与E2(泛素结合酶)之间的相互作用。E2和E3是泛素蛋白降解途径的组成部分。分析了7种U-box蛋白与不同E2协同在体外泛素化蛋白的能力。所有U-box结构域均表现出泛素化活性,并与UBC4/5型E2发生有效相互作用。分别有3个和4个U-box结构域在UBC13和UBC7 E2存在的情况下介导泛素添加,但与所测试的UBC15 E2未观察到有效相互作用。AtPUB54(拟南芥植物U-box 54蛋白)的活性依赖于E2结合裂隙中的Trp(266),该位置的取代改变了E2选择性。对远源U-box蛋白AtPUB49的功能进行了生化特征分析,AtPUB49代表了一大类真核蛋白,其含有与亲环蛋白样肽基脯氨酰顺反异构酶结构域相连的U-box。AtPUB49通过催化肽基脯氨酰键的顺反异构化和溶解蛋白聚集体,兼具脯氨酰异构酶和伴侣蛋白的功能。总之,典型和非典型的拟南芥U-box蛋白均为有活性的E3。E3/E2选择性的重叠表明,体内特异性不仅由E3-E2相互作用决定,还由其他参数决定,例如与其他结构域的共存或相互作用。AtPUB49的生化功能表明该蛋白可能参与蛋白底物的折叠或降解。在含有单独伴侣蛋白和U-box蛋白的蛋白复合物中也可能保留类似功能。

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