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用于鉴定ADP-核糖基化位点的LTQ-轨道阱质谱仪参数优化

Optimization of LTQ-Orbitrap Mass Spectrometer Parameters for the Identification of ADP-Ribosylation Sites.

作者信息

Rosenthal Florian, Nanni Paolo, Barkow-Oesterreicher Simon, Hottiger Michael O

机构信息

Institute of Veterinary Biochemistry and Molecular Biology, ‡Functional Genomics Center Zurich, University of Zurich/ETH Zurich, §Life Science Zurich Graduate School, University of Zurich , CH-8057 Zurich, Switzerland.

出版信息

J Proteome Res. 2015 Sep 4;14(9):4072-9. doi: 10.1021/acs.jproteome.5b00432. Epub 2015 Aug 10.

Abstract

ADP-ribosylation of proteins alters their function or provides a scaffold for the recruitment of other proteins, thereby regulating several important cellular processes. Mono- or poly-ADP-ribosylation is catalyzed by different ADP-ribosyltransferases (ARTs) that have different subcellular localizations and modify different amino acid acceptor sites. However, our knowledge of ADP-ribosylated proteins and their acceptor amino acids is still limited due to the lack of suitable mass spectrometry (MS) tools. Here, we describe an MS approach for the detection of ADP-ribosylated peptides and identification of the ADP-ribose acceptor sites, combining higher-energy collisional dissociation (HCD) and electron-transfer dissociation (ETD) on an LTQ-Orbitrap mass spectrometer. The presence of diagnostic ions of ADP-ribose in the HCD spectra allowed us to detect putative ADP-ribosylated peptides to target in a second LC-MS/MS analysis. The combination of HCD with ETD fragmentation gave a more comprehensive coverage of ADP-ribosylation sites than that with HCD alone. We successfully identified different ADP-ribose acceptor sites on several in vitro modified proteins. The combination of optimized HCD and ETD methods may be applied to complex samples, allowing comprehensive identification of ADP-ribosylation acceptor sites.

摘要

蛋白质的ADP核糖基化会改变其功能,或为其他蛋白质的募集提供支架,从而调节多个重要的细胞过程。单ADP核糖基化或多ADP核糖基化由不同的ADP核糖基转移酶(ART)催化,这些酶具有不同的亚细胞定位,并修饰不同的氨基酸接受位点。然而,由于缺乏合适的质谱(MS)工具,我们对ADP核糖基化蛋白及其接受氨基酸的了解仍然有限。在此,我们描述了一种质谱方法,用于检测ADP核糖基化肽并鉴定ADP核糖接受位点,该方法在LTQ-Orbitrap质谱仪上结合了高能碰撞解离(HCD)和电子转移解离(ETD)。HCD谱图中ADP核糖诊断离子的存在使我们能够检测出可能的ADP核糖基化肽,以便在第二次液相色谱-串联质谱(LC-MS/MS)分析中进行靶向分析。与单独使用HCD相比,HCD与ETD碎裂的结合能更全面地覆盖ADP核糖基化位点。我们成功鉴定了几种体外修饰蛋白上不同的ADP核糖接受位点。优化后的HCD和ETD方法的结合可应用于复杂样品,从而全面鉴定ADP核糖基化接受位点。

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