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Ubiquitin-Based Probes Prepared by Total Synthesis To Profile the Activity of Deubiquitinating Enzymes

机译:通过全合成制备的基于泛素的探针来分析去泛素化酶的活性

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摘要

Epitope-tagged active-site-directed probes are widely used to visualize the activity of deubiquitinases (DUBs) in cell extracts, to investigate the specificity and potency of small-molecule DUB inhibitors, and to isolate and identify DUBs by mass spectrometry. With DUBs arising as novel potential drug targets, probes are required that can be produced in sufficient amounts and to meet the specific needs of a given experiment. The established method for the generation of DUB probes makes use of labor-intensive intein-based methods that have inherent limitations concerning the incorporation of unnatural amino acids and the amount of material that can be obtained. Here, we describe the total chemical synthesis of active-site-directed probes and their application to activity-based profiling and identification of functional DUBs. This synthetic methodology allowed the easy incorporation of desired tags for specific applications, for example, fluorescent reporters, handles for immunoprecipitation or affinity pull-down, and cleavable linkers. Additionally, the synthetic method can be scaled up to provide significant amounts of probe. Fluorescent ubiquitin probes allowed faster, in-gel detection of active DUBs, as compared to (immuno)blotting procedures. A biotinylated probe holding a photocleavable linker enabled the affinity pull-down and subsequent mild, photorelease of DUBs. Also, DUB activity levels were monitored in response to overexpression or knockdown, and to inhibition by small molecules. Furthermore, fluorescent probes revealed differential DUB activity profiles in a panel of lung and prostate cancer cells.
机译:带表位标记的活性位点定向探针广泛用于可视化细胞提取物中的去泛素酶(DUBs)活性,以研究小分子DUB抑制剂的特异性和效力,并通过质谱法分离和鉴定DUB。随着DUBs作为新型潜在药物靶标的出现,需要能够产生足够数量并满足给定实验特定需求的探针。产生DUB探针的既定方法利用了劳动密集型基于蛋白质的方法,该方法在掺入非天然氨基酸和可获得的材料量方面存在固有的局限性。在这里,我们描述了主动定点探针的总化学合成及其在基于活性的概况分析和功能性DUB鉴定中的应用。这种合成方法可轻松掺入特定应用的所需标签,例如荧光报告基因,免疫沉淀或亲和力降低的手柄以及可裂解的接头。另外,合成方法可以按比例放大以提供大量的探针。与(免疫)印迹方法相比,荧光泛素探针可以更快地在凝胶中检测活性DUB。持有光可裂解接头的生物素化探针可实现亲和力下降以及随后DUB的轻度光释放。同样,监测DUB活性水平以响应过度表达或敲低以及对小分子的抑制。此外,荧光探针揭示了一组肺癌和前列腺癌细胞中DUB活性的差异。

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