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Analyses of Histone Proteoforms Using Front-end Electron Transfer Dissociation-enabled Orbitrap Instruments

机译:使用前端电子转移解离的Orbitrap仪器分析组蛋白蛋白形式

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摘要

Histones represent a class of proteins ideally suited to analyses by top-down mass spectrometry due to their relatively small size, the high electron transfer dissociation-compatible charge states they exhibit, and the potential to gain valuable information concerning combinatorial post-translational modifications and variants. We recently described new methods in mass spectrometry for the acquisition of high-quality MS/MS spectra of intact proteins (Anderson, L. C., English, A. M., Wang, W., Bai, D. L., Shabanowitz, J., and Hunt, D. F. (2015) Int. J. Mass Spectrom. 377, 617–624). Here, we report an extension of these techniques. Sequential ion/ion reactions carried out in a modified Orbitrap Velos Pro/EliteTM capable of multiple fragment ion fills of the C-trap, in combination with data-dependent and targeted HPLC-MS experiments, were used to obtain high resolution MS/MS spectra of histones from butyrate-treated HeLa cells. These spectra were used to identify several unique intact histone proteoforms with up to 81% sequence coverage. We also demonstrate that parallel ion parking during ion/ion proton transfer reactions can be used to separate species of overlapping m/z that are not separated chromatographically, revealing previously indiscernible signals. Finally, we characterized several truncated forms of H2A and H2B found within the histone fractions analyzed, achieving up to 93% sequence coverage by electron transfer dissociation MS/MS. Results of follow-up in vitro experiments suggest that some of the truncated histone H2A proteoforms we observed can be generated by cathepsin L, an enzyme known to also catalyze clipping of histone H3.
机译:组蛋白代表一类蛋白质,由于其相对较小的尺寸,它们表现出的高电子传递解离相容性电荷态以及获得有关组合后翻译后修饰和变体的有价值信息的潜力,因此非常适合通过自顶向下质谱分析。我们最近在质谱中描述了用于获取完整蛋白质的高质量MS / MS光谱的新方法(Anderson,LC,English,AM,Wang,W.,Bai,DL,Shabanowitz,J.和Hunt,DF( 2015)Int。J.Mass Spectrom.377,617–624)。在这里,我们报告了这些技术的扩展。使用在改良的Orbitrap Velos Pro / Elite TM 中进行的顺序离子/离子反应,该反应器可以对C-trap进行多个碎片离子填充,并结合了数据依赖型和靶向HPLC-MS实验从丁酸盐处理的HeLa细胞中获得组蛋白的高分辨率MS / MS光谱。这些光谱用于鉴定几种独特的完整组蛋白蛋白形式,序列覆盖率高达81%。我们还证明,在离子/离子质子转移反应过程中,平行离子停放可用于分离色谱图中未分离的重叠m / z物种,从而揭示了以前难以区分的信号。最后,我们对在分析的组蛋白级分中发现的H2A和H2B的几种截短形式进行了表征,通过电子转移解离MS / MS实现了高达93%的序列覆盖率。后续体外实验的结果表明,我们观察到的一些截短的组蛋白H2A蛋白形式可以由组织蛋白酶L生成,该酶已知也催化组蛋白H3的剪切。

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