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Improved Quantitative Mass Spectrometry Methods for Characterizing Complex Ubiquitin Signals

机译:表征复杂泛素信号的改进的定量质谱方法

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摘要

Ubiquitinated substrates can be recruited to macromolecular complexes through interactions between their covalently bound ubiquitin (Ub) signals and Ub receptor proteins. To develop a functional understanding of the Ub system in vivo, methods are needed to determine the composition of Ub signals on individual substrates and in protein mixtures. Mass spectrometry has emerged as an important tool for characterizing the various forms of Ub. In the Ubiquitin-AQUA approach, synthetic isotopically labeled internal standard peptides are used to quantify unbranched peptides and the branched -GG signature peptides generated by trypsin digestion of Ub signals. Here we have built upon existing methods and established a comprehensive platform for the characterization of Ub signals. Digested peptides and isotopically labeled standards are analyzed either by selected reaction monitoring on a QTRAP mass spectrometer or by narrow window extracted ion chromatograms on a high resolution LTQ-Orbitrap. Additional peptides are now monitored to account for the N terminus of ubiquitin, linear polyUb chains, the peptides surrounding K33 and K48, and incomplete digestion products. Using this expanded battery of peptides, the total amount of Ub in a sample can be determined from multiple loci within the protein, minimizing possible confounding effects of complex Ub signals, digestion abnormalities, or use of mutant Ub in experiments. These methods have been useful for the characterization of in vitro, multistage ubiquitination and have now been extended to reactions catalyzed by multiple E2 enzymes. One question arising from in vitro studies is whether individual protein substrates in cells may be modified by multiple forms of polyUb. Here we have taken advantage of recently developed polyubiquitin linkage-specific antibodies recognizing K48- and K63-linked polyUb chains, coupled with these mass spectrometry methods, to further evaluate the abundance of mixed linkage Ub substrates in cultured mammalian cells. By combining these two powerful tools, we show that polyubiquitinated substrates purified from cells can be modified by mixtures of K48, K63, and K11 linkages.
机译:泛素化的底物可通过其共价结合的泛素(Ub)信号和Ub受体蛋白之间的相互作用募集到大分子复合物中。为了发展对体内Ub系统的功能性了解,需要一些方法来确定单个底物和蛋白质混合物中Ub信号的组成。质谱法已成为表征各种形式的铀的重要工具。在泛素-AQUA方法中,合成同位素标记的内标肽用于定量Ub信号的胰蛋白酶消化产生的直链肽和支链-GG标记肽。在这里,我们以现有方法为基础,并建立了用于表征Ub信号的综合平台。可以通过在QTRAP质谱仪上进行的选定反应监测或通过高分辨率LTQ-Orbitrap上的窄窗口提取离子色谱图来分析消化的肽和同位素标记的标准品。现在监测其他肽以说明泛素的N末端,线性polyUb链,K33和K48周围的肽以及不完全的消化产物。使用这种扩展的肽组,可以从蛋白质中的多个基因座确定样品中的Ub总量,从而将复杂的Ub信号,消化异常或在实验中使用突变Ub的可能的混杂影响降至最低。这些方法已用于表征体外多阶段泛素化,现在已扩展到多种E2酶催化的反应。体外研究引起的一个问题是,细胞中单个蛋白质底物是否可以被多种形式的polyUb修饰。在这里,我们利用了最近开发的识别K48和K63连接的polyUb链的多聚泛素连接特异性抗体,并结合这些质谱方法,来进一步评估培养的哺乳动物细胞中混合连接的Ub底物的丰度。通过结合这两个强大的工具,我们表明,从细胞中纯化的多泛素化底物可以通过K48,K63和K11键的混合物进行修饰。

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