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全系统筛选鉴定出SCFβTrCP泛素连接酶的底物。

A systems-wide screen identifies substrates of the SCFβTrCP ubiquitin ligase.

作者信息

Low Teck Yew, Peng Mao, Magliozzi Roberto, Mohammed Shabaz, Guardavaccaro Daniele, Heck Albert J R

机构信息

Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Padualaan 8, 3584 CH Utrecht, Netherlands. Netherlands Proteomics Center, Padualaan 8, 3584 CH Utrecht, Netherlands.

Hubrecht Institute-KNAW (Royal Netherlands Academy of Arts and Sciences) and University Medical Center Utrecht, Uppsalalaan 8, 3584 CT Utrecht, Netherlands.

出版信息

Sci Signal. 2014 Dec 16;7(356):rs8. doi: 10.1126/scisignal.2005882.

Abstract

Cellular proteins are degraded by the ubiquitin-proteasome system (UPS) in a precise and timely fashion. Such precision is conferred by the high substrate specificity of ubiquitin ligases. Identification of substrates of ubiquitin ligases is crucial not only to unravel the molecular mechanisms by which the UPS controls protein degradation but also for drug discovery purposes because many established UPS substrates are implicated in disease. We developed a combined bioinformatics and affinity purification-mass spectrometry (AP-MS) workflow for the system-wide identification of substrates of SCF(βTrCP), a member of the SCF family of ubiquitin ligases. These ubiquitin ligases are characterized by a multisubunit architecture typically consisting of the invariable subunits Rbx1, Cul1, and Skp1 and one of 69 F-box proteins. The F-box protein of this member of the family is βTrCP. SCF(βTrCP) binds, through the WD40 repeats of βTrCP, to the DpSGXX(X)pS diphosphorylated motif in its substrates. We recovered 27 previously reported SCF(βTrCP) substrates, of which 22 were verified by two independent statistical protocols, thereby confirming the reliability of this approach. In addition to known substrates, we identified 221 proteins that contained the DpSGXX(X)pS motif and also interacted specifically with the WD40 repeats of βTrCP. Thus, with SCF(βTrCP), as the example, we showed that integration of structural information, AP-MS, and degron motif mining constitutes an effective method to screen for substrates of ubiquitin ligases.

摘要

细胞蛋白通过泛素-蛋白酶体系统(UPS)以精确且及时的方式被降解。这种精确性由泛素连接酶的高底物特异性赋予。鉴定泛素连接酶的底物不仅对于阐明UPS控制蛋白质降解的分子机制至关重要,而且对于药物发现目的也很关键,因为许多已确定的UPS底物都与疾病有关。我们开发了一种结合生物信息学和亲和纯化-质谱(AP-MS)的工作流程,用于全系统鉴定泛素连接酶SCF(βTrCP)家族成员的底物,该家族属于SCF泛素连接酶家族。这些泛素连接酶的特征是多亚基结构,通常由不变的亚基Rbx1、Cul1和Skp1以及69种F-box蛋白之一组成。该家族成员的F-box蛋白是βTrCP。SCF(βTrCP)通过βTrCP的WD40重复序列与底物中的DpSGXX(X)pS双磷酸化基序结合。我们回收了27种先前报道的SCF(βTrCP)底物,其中22种通过两种独立的统计方法得到验证,从而证实了该方法的可靠性。除了已知底物外,我们还鉴定出221种含有DpSGXX(X)pS基序且还与βTrCP的WD40重复序列特异性相互作用的蛋白质。因此,以SCF(βTrCP)为例,我们表明整合结构信息、AP-MS和降解子基序挖掘构成了一种筛选泛素连接酶底物的有效方法。

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