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使用化学修饰和串联质谱法对蛋白质瓜氨酸化进行靶向分析。

Targeted analysis of protein citrullination using chemical modification and tandem mass spectrometry.

作者信息

Stensland Maria, Holm Anders, Kiehne Andrea, Fleckenstein Burkhard

机构信息

Centre for Immune Regulation, Institute of Immunology, University of Oslo, Rikshospitalet University Hospital, 0027 Oslo, Norway.

出版信息

Rapid Commun Mass Spectrom. 2009 Sep;23(17):2754-62. doi: 10.1002/rcm.4185.

Abstract

Protein citrullination originates from enzymatic deimination of polypeptide-bound arginine and is involved in various biological processes during health and disease. However, tools required for a detailed and targeted proteomic analysis of citrullinated proteins in situ, including their citrullination sites, are limited. A widely used technique for detection of citrullinated proteins relies on antibody staining after specific derivatization of citrulline residues by 2,3-butanedione and antipyrine. We have recently reported on the details of this reaction. Here, we show that this chemical modification can be utilized to specifically detect and identify citrullinated peptides and their citrullination sites by liquid chromatography/tandem mass spectrometry (LC/MS/MS) analysis. Using model compounds, we demonstrate that in collision-induced dissociation (CID) a specific, modification-derived fragment ion appears as the dominating signal at m/z 201.1 in the MS/MS spectra. When applying electron transfer dissociation (ETD), however, the chemical modification of citrulline remained intact and extensive sequence coverage allowed identification of peptides and their citrullination sites. Therefore, LC/MS/MS analysis with alternating CID and ETD has been performed, using CID for specific, signature ion-based detection of derivatized citrullinated peptides and ETD for sequence determination. The usefulness of this targeted analysis was demonstrated by identifying citrullination sites in myelin basic protein deiminated in vitro. Combining antibody-based enrichment of chemically modified citrulline-containing peptides with specific mass spectrometric detection will increase the potential of such a targeted analysis of protein citrullination in the future.

摘要

蛋白质瓜氨酸化源于多肽结合的精氨酸的酶促脱氨作用,并且在健康和疾病过程中参与各种生物学过程。然而,用于原位详细且有针对性地蛋白质组学分析瓜氨酸化蛋白质(包括其瓜氨酸化位点)所需的工具有限。一种广泛使用的检测瓜氨酸化蛋白质的技术依赖于在瓜氨酸残基通过2,3-丁二酮和安替比林进行特异性衍生化后进行抗体染色。我们最近报道了该反应的详细情况。在此,我们表明这种化学修饰可用于通过液相色谱/串联质谱(LC/MS/MS)分析特异性检测和鉴定瓜氨酸化肽及其瓜氨酸化位点。使用模型化合物,我们证明在碰撞诱导解离(CID)中,一种特定的、由修饰产生的碎片离子在MS/MS谱图中以m/z 201.1处的主导信号出现。然而,当应用电子转移解离(ETD)时,瓜氨酸的化学修饰保持完整,并且广泛的序列覆盖允许鉴定肽及其瓜氨酸化位点。因此,已交替使用CID和ETD进行LC/MS/MS分析,使用CID基于特定的特征离子检测衍生化的瓜氨酸化肽,使用ETD进行序列测定。通过鉴定体外脱氨的髓鞘碱性蛋白中的瓜氨酸化位点,证明了这种靶向分析的实用性。将基于抗体的化学修饰的含瓜氨酸肽的富集与特定的质谱检测相结合,将在未来增加这种蛋白质瓜氨酸化靶向分析的潜力。

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