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蛋白质组学策略鉴定 PDZ 结构域包含 E3 泛素连接酶 LNX 的底物。

Proteomics strategy to identify substrates of LNX, a PDZ domain-containing E3 ubiquitin ligase.

机构信息

National Key Laboratory of Medical Molecular Biology, Department of Physiology and Pathophysiology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences/School of Basic Medicine, Peking Union Medical College, Beijing 100005, China.

出版信息

J Proteome Res. 2012 Oct 5;11(10):4847-62. doi: 10.1021/pr300674c. Epub 2012 Aug 29.

Abstract

Ubiquitin ligases (E3s) confer specificity to ubiquitination by recognizing target substrates. However, the substrates of most E3s have not been extensively discovered, and new methods are needed to efficiently and comprehensively identify these substrates. Mostly, E3s specifically recognize substrates via their protein interaction domains. We developed a novel integrated strategy to identify substrates of E3s containing protein interaction domains on a proteomic scale. The binding properties of the protein interaction domains were characterized by screening a random peptide library using a yeast two-hybrid system. Artificial degrons, consisting of a preferential ubiquitination sequence and particular interaction domain-binding motifs, were tested as potential substrates by in vitro ubiquitination assays. Using this strategy, not only substrates but also nonsubstrate regulators can be discovered. The detailed substrate recognition mechanisms, which are useful for drug discovery, can also be characterized. We used the Ligand of Numb protein X (LNX) family of E3s, a group of PDZ domain-containing RING-type E3 ubiquitin ligases, to demonstrate the feasibility of this strategy. Many potential substrates of LNX E3s were identified. Eight of the nine selected candidates were ubiquitinated in vitro, and two novel endogenous substrates, PDZ-binding kinase (PBK) and breakpoint cluster region protein (BCR), were confirmed in vivo. We further revealed that the LNX1-mediated ubiquitination and degradation of PBK inhibited cell proliferation and enhanced sensitivity to doxorubicin-induced apoptosis. The substrate recognition mechanism of LNX E3s was also characterized; this process involves the recognition of substrates via their specific PDZ domains by binding to the C-termini of the target proteins. This strategy can potentially be extended to a variety of E3s that contain protein interaction domain(s), thereby serving as a powerful tool for the comprehensive identification of their substrates on a proteomic scale.

摘要

泛素连接酶(E3s)通过识别靶底物赋予泛素化特异性。然而,大多数 E3s 的底物尚未被广泛发现,因此需要新的方法来有效地和全面地识别这些底物。大多数情况下,E3s 通过其蛋白质相互作用结构域特异性识别底物。我们开发了一种新的综合策略,用于在蛋白质组学水平上鉴定含有蛋白质相互作用结构域的 E3s 的底物。通过使用酵母双杂交系统筛选随机肽文库,对蛋白质相互作用结构域的结合特性进行了表征。人工降解结构域由一个优先泛素化序列和特定的相互作用结构域结合基序组成,通过体外泛素化实验测试其作为潜在底物的能力。使用这种策略,不仅可以发现底物,还可以发现非底物调节剂。还可以对有助于药物发现的详细底物识别机制进行表征。我们使用了含有 PDZ 结构域的 RING 型 E3 泛素连接酶家族的 NUMB 蛋白 X(LNX)家族的 E3s 来证明这种策略的可行性。鉴定了许多 LNX E3s 的潜在底物。在体外,选择的 9 个候选物中的 8 个被泛素化,并且在体内证实了 2 个新的内源性底物 PDZ 结合激酶(PBK)和断点簇区域蛋白(BCR)。我们进一步揭示了 LNX1 介导的 PBK 泛素化和降解抑制了细胞增殖并增强了对阿霉素诱导的细胞凋亡的敏感性。还表征了 LNX E3s 的底物识别机制;这个过程涉及通过结合靶蛋白的 C 末端来特异性识别底物的 PDZ 结构域。该策略可以潜在地扩展到含有蛋白质相互作用结构域的多种 E3s,从而成为在蛋白质组学水平上全面鉴定其底物的有力工具。

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