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一种用于泛素化级联发现的细菌遗传选择系统。

A bacterial genetic selection system for ubiquitylation cascade discovery.

机构信息

Departments of Biochemistry and Molecular Biology, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

出版信息

Nat Methods. 2016 Nov;13(11):945-952. doi: 10.1038/nmeth.4003. Epub 2016 Oct 3.

Abstract

About one-third of the eukaryotic proteome undergoes ubiquitylation, but the enzymatic cascades leading to substrate modification are largely unknown. We present a genetic selection tool that utilizes Escherichia coli, which lack deubiquitylases, to identify interactions along ubiquitylation cascades. Coexpression of split antibiotic resistance protein tethered to ubiquitin and ubiquitylation target together with a functional ubiquitylation apparatus results in a covalent assembly of the resistance protein, giving rise to bacterial growth on selective media. We applied the selection system to uncover an E3 ligase from the pathogenic bacteria EHEC and to identify the epsin ENTH domain as an ultraweak ubiquitin-binding domain. The latter was complemented with a structure-function analysis of the ENTH-ubiquitin interface. We also constructed and screened a yeast fusion library, discovering Sem1 as a novel ubiquitylation substrate of Rsp5 E3 ligase. Collectively, our selection system provides a robust high-throughput approach for genetic studies of ubiquitylation cascades and for small-molecule modulator screening.

摘要

大约三分之一的真核生物蛋白质组经历泛素化,但导致底物修饰的酶级联反应在很大程度上是未知的。我们提出了一种遗传选择工具,利用缺乏去泛素化酶的大肠杆菌来识别泛素化级联反应中的相互作用。与功能泛素化装置一起共表达与泛素连接的分裂抗生素抗性蛋白和泛素化靶标导致抗性蛋白的共价组装,从而在选择性培养基上产生细菌生长。我们将该选择系统应用于从致病性细菌 EHEC 中发现一种 E3 连接酶,并鉴定出 epsin ENTH 结构域作为一种超弱的泛素结合结构域。后者通过对 ENTH-泛素界面的结构功能分析进行了补充。我们还构建并筛选了酵母融合文库,发现 Sem1 是 Rsp5 E3 连接酶的一种新型泛素化底物。总的来说,我们的选择系统为泛素化级联反应的遗传研究和小分子调节剂筛选提供了一种强大的高通量方法。

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