Department of Cell Biology, Blavatnik Institute at Harvard Medical School, Boston, MA 02115, USA.
Boston Biochem, a Bio-Techne Brand, Cambridge, MA 02139, USA.
Cell Chem Biol. 2021 Apr 15;28(4):487-502.e5. doi: 10.1016/j.chembiol.2020.12.007. Epub 2021 Jan 7.
Deubiquitylating enzymes (DUBs) counteract ubiquitylation to control stability or activity of substrates. Identification of DUB substrates is challenging because multiple DUBs can act on the same substrate, thwarting genetic approaches. Here, we circumvent redundancy by chemically inhibiting multiple DUBs simultaneously in Xenopus egg extract. We used quantitative mass spectrometry to identify proteins whose ubiquitylation or stability is altered by broad DUB inhibition, and confirmed their DUB-dependent regulation with human orthologs, demonstrating evolutionary conservation. We next extended this method to profile DUB specificity. By adding recombinant DUBs to extract where DUB activity was broadly inhibited, but ubiquitylation and degradation were active at physiological rates, we profiled the ability of DUBs to rescue degradation of these substrates. We found that USP7 has a unique ability to broadly antagonize degradation. Together, we present an approach to identify DUB substrates and characterize DUB specificity that overcomes challenges posed by DUB redundancy.
去泛素化酶(DUBs)可拮抗泛素化作用,以控制底物的稳定性或活性。鉴定 DUB 底物具有挑战性,因为多个 DUB 可以作用于同一底物,从而阻碍了遗传方法的应用。在这里,我们通过在非洲爪蟾卵提取物中同时化学抑制多种 DUB 来避免冗余。我们使用定量质谱法来鉴定那些其泛素化或稳定性因广泛 DUB 抑制而改变的蛋白质,并用人源同源物来确认其 DUB 依赖性调控,证明了进化保守性。接下来,我们将该方法扩展到 DUB 特异性分析。通过向提取液中添加重组 DUB,该提取液中的 DUB 活性被广泛抑制,但泛素化和降解仍以生理速率进行,我们分析了 DUB 恢复这些底物降解的能力。我们发现 USP7 具有广泛拮抗降解的独特能力。总之,我们提出了一种识别 DUB 底物和表征 DUB 特异性的方法,该方法克服了 DUB 冗余带来的挑战。