A Novel Spectral Annotation Strategy Streamlines Reporting of Mono-ADP-ribosylated Peptides Derived from Mouse Liver and Spleen in Response to IFN-γ.

Molecular & cellular proteomics : MCP Pub Date : 2022-04-01 Epub Date: 2021-09-28 DOI:10.1016/j.mcpro.2021.100153
Shiori Kuraoka, Hideyuki Higashi, Yoshihiro Yanagihara, Abhijeet R Sonawane, Shin Mukai, Andrew K Mlynarchik, Mary C Whelan, Michael O Hottiger, Waqas Nasir, Bernard Delanghe, Masanori Aikawa, Sasha A Singh
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引用次数: 5

Abstract

Mass-spectrometry-enabled ADP-ribosylation workflows are developing rapidly, providing researchers a variety of ADP-ribosylome enrichment strategies and mass spectrometric acquisition options. Despite the growth spurt in upstream technologies, systematic ADP-ribosyl (ADPr) peptide mass spectral annotation methods are lacking. HCD-dependent ADP-ribosylome studies are common, but the resulting MS2 spectra are complex, owing to a mixture of b/y-ions and the m/p-ion peaks representing one or more dissociation events of the ADPr moiety (m-ion) and peptide (p-ion). In particular, p-ions that dissociate further into one or more fragment ions can dominate HCD spectra but are not recognized by standard spectral annotation workflows. As a result, annotation strategies that are solely reliant upon the b/y-ions result in lower spectral scores that in turn reduce the number of reportable ADPr peptides. To improve the confidence of spectral assignments, we implemented an ADPr peptide annotation and scoring strategy. All MS2 spectra are scored for the ADPr m-ions, but once spectra are assigned as an ADPr peptide, they are further annotated and scored for the p-ions. We implemented this novel workflow to ADPr peptides enriched from the liver and spleen isolated from mice post 4 h exposure to systemic IFN-γ. HCD collision energy experiments were first performed on the Orbitrap Fusion Lumos and the Q Exactive, with notable ADPr peptide dissociation properties verified with CID (Lumos). The m-ion and p-ion series score distributions revealed that ADPr peptide dissociation properties vary markedly between instruments and within instrument collision energy settings, with consequences on ADPr peptide reporting and amino acid localization. Consequentially, we increased the number of reportable ADPr peptides by 25% (liver) and 17% (spleen) by validation and the inclusion of lower confidence ADPr peptide spectra. This systematic annotation strategy will streamline future reporting of ADPr peptides that have been sequenced using any HCD/CID-based method.

Abstract Image

Abstract Image

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一种新的光谱注释策略简化了来自小鼠肝脏和脾脏对IFN-γ反应的单adp核糖基化肽的报道。
支持质谱的adp -核糖体基化工作流程正在迅速发展,为研究人员提供了各种adp -核糖体富集策略和质谱获取选项。尽管上游技术发展迅速,但缺乏系统的adp -核糖基(ADPr)肽质谱注释方法。依赖hcd的adp -核糖体研究是常见的,但由于b/y-离子和m/p-离子峰的混合物代表ADPr片段(m-离子)和肽(p-离子)的一个或多个解离事件,因此产生的MS2光谱是复杂的。特别是,进一步解离成一个或多个碎片离子的p离子可以主导HCD光谱,但不能被标准光谱注释工作流程识别。因此,仅依赖于b/y离子的注释策略会导致较低的光谱得分,从而减少可报告的ADPr肽的数量。为了提高光谱分配的置信度,我们实现了一种ADPr肽注释和评分策略。所有MS2光谱都为ADPr的m-离子打分,但一旦光谱被分配为ADPr肽,它们将进一步为p-离子进行注释和打分。我们对暴露于全身IFN-γ 4小时后从小鼠分离的肝脏和脾脏中富集的ADPr肽实施了这种新的工作流程。首先在Orbitrap Fusion Lumos和Q Exactive上进行了HCD碰撞能量实验,用CID (Lumos)验证了显著的ADPr肽解离特性。m-离子和p-离子系列得分分布表明,ADPr肽解离特性在仪器之间和仪器碰撞能量设置内存在显著差异,这对ADPr肽报告和氨基酸定位产生了影响。因此,通过验证和纳入低置信度的ADPr肽谱,我们将可报告的ADPr肽的数量增加了25%(肝脏)和17%(脾脏)。这种系统的注释策略将简化使用任何基于HCD/ cid的方法测序的ADPr肽的未来报告。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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