Yoshida Yukiko, Saeki Yasushi, Murakami Arisa, Kawawaki Junko, Tsuchiya Hikaru, Yoshihara Hidehito, Shindo Mayumi, Tanaka Keiji
Protein Metabolism Project,
Laboratory of Protein Metabolism, and.
Proc Natl Acad Sci U S A. 2015 Apr 14;112(15):4630-5. doi: 10.1073/pnas.1422313112. Epub 2015 Mar 31.
The identification of substrates for ubiquitin ligases has remained challenging, because most substrates are either immediately degraded by the proteasome or processed by deubiquitinating enzymes (DUBs) to remove polyubiquitin. Although a methodology that enables detection of ubiquitinated proteins using ubiquitin Lys-ε-Gly-Gly (diGly) remnant antibodies and MS has been developed, it is still insufficient for identification and characterization of the ubiquitin-modified proteome in cells overexpressing a particular ubiquitin ligase. Here, we show that exogenously expressed trypsin-resistant tandem ubiquitin-binding entity(ies) (TR-TUBE) protect polyubiquitin chains on substrates from DUBs and circumvent proteasome-mediated degradation in cells. TR-TUBE effectively associated with substrates ubiquitinated by an exogenously overexpressed ubiquitin ligase, allowing detection of the specific activity of the ubiquitin ligase and isolation of its substrates. Although the diGly antibody enabled effective identification of ubiquitinated proteins in cells, overexpression of an ubiquitin ligase and treatment with a proteasome inhibitor did not increase the level of diGly peptides specific for the ligase relative to the background level of diGly peptides, probably due to deubiquitination. By contrast, in TR-TUBE-expressing cells, the level of substrate-derived diGly peptides produced by the overexpressed ubiquitin ligase was significantly elevated. We developed a method for identifying the substrates of specific ubiquitin ligases using two enrichment strategies, TR-TUBE and diGly remnant antibodies, coupled with MS. Using this method, we identified target substrates of FBXO21, an uncharacterized F-box protein.
泛素连接酶底物的鉴定一直具有挑战性,因为大多数底物要么立即被蛋白酶体降解,要么被去泛素化酶(DUBs)处理以去除多聚泛素。尽管已经开发出一种使用泛素赖氨酸-ε-甘氨酰-甘氨酸(二甘氨酸)残留抗体和质谱检测泛素化蛋白质的方法,但对于鉴定和表征过表达特定泛素连接酶的细胞中的泛素修饰蛋白质组来说,该方法仍然不够。在这里,我们表明,外源表达的抗胰蛋白酶串联泛素结合实体(TR-TUBE)可保护底物上的多聚泛素链免受DUBs的作用,并规避细胞中蛋白酶体介导的降解。TR-TUBE有效地与外源过表达的泛素连接酶泛素化的底物结合,从而能够检测泛素连接酶的特定活性并分离其底物。尽管二甘氨酸抗体能够有效鉴定细胞中的泛素化蛋白质,但泛素连接酶的过表达和蛋白酶体抑制剂的处理相对于二甘氨酸肽的背景水平并没有增加连接酶特异性二甘氨酸肽的水平,这可能是由于去泛素化所致。相比之下,在表达TR-TUBE的细胞中,过表达的泛素连接酶产生的底物衍生二甘氨酸肽的水平显著升高。我们开发了一种使用TR-TUBE和二甘氨酸残留抗体这两种富集策略结合质谱来鉴定特定泛素连接酶底物的方法。使用这种方法,我们鉴定出了一种未表征的F-box蛋白FBXO21的靶底物。