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肽结合瓜氨酸残基的特异性修饰。

Specific modification of peptide-bound citrulline residues.

作者信息

Holm Anders, Rise Frode, Sessler Nicole, Sollid Ludvig M, Undheim Kjell, Fleckenstein Burkhard

机构信息

Institute of Immunology, University of Oslo, NO-0027 Oslo, Norway.

出版信息

Anal Biochem. 2006 May 1;352(1):68-76. doi: 10.1016/j.ab.2006.02.007. Epub 2006 Feb 24.

Abstract

Immune reactions to citrulline-containing proteins appear to be central in the immunopathogenesis of rheumatoid arthritis. Citrulline residues are introduced into proteins by deimination of arginine residues, likely by an enzymatic process. There is a need to characterize which proteins in the inflamed joints of rheumatoid patients contain citrulline in situ. The characterization of deiminated proteins will be greatly facilitated by specific modification of peptide-bound citrulline residues that will enable specific enrichment and detection of citrulline-containing peptides. This study presents the details of such a modification method. The chemistry behind the reaction of the ureido group of citrulline with 2,3-butanedione in the presence of antipyrine is unraveled. Parameters for optimization of the reaction with respect to specificity and completeness, including the testing of different acids, reactant concentrations, and reaction time, are presented. This modification reaction is specific for citrulline residues. The modified product shows a characteristic mass shift of +238Da, as demonstrated by mass spectrometry. The product absorbs UV-Vis radiation at 464nm, and it is demonstrated that this can be used to selectively monitor citrulline-containing peptides during the separation of protein digests. Finally, the structure of the product of modified citrulline is solved by nuclear magnetic resonance spectroscopy using N-butylurea as a model substance. The results presented should facilitate the development of tags that can be used for the enrichment and subsequent detection of citrulline-containing protein fragments by mass spectrometry.

摘要

对含瓜氨酸蛋白的免疫反应似乎在类风湿关节炎的免疫发病机制中起核心作用。瓜氨酸残基是通过精氨酸残基的脱氨作用引入蛋白质中的,这一过程可能由酶催化。有必要确定类风湿患者发炎关节中哪些蛋白质原位含有瓜氨酸。通过对肽结合的瓜氨酸残基进行特异性修饰,能够对含瓜氨酸的肽段进行特异性富集和检测,这将极大地促进对脱氨蛋白的表征。本研究详细介绍了这样一种修饰方法。揭示了在安替比林存在下瓜氨酸的脲基与2,3 -丁二酮反应背后的化学原理。给出了关于反应特异性和完整性优化的参数,包括对不同酸、反应物浓度和反应时间的测试。这种修饰反应对瓜氨酸残基具有特异性。经质谱分析表明,修饰产物显示出+238Da的特征质量位移。该产物在464nm处吸收紫外 - 可见辐射,并且证明这可用于在蛋白质消化物分离过程中选择性监测含瓜氨酸的肽段。最后,以N -丁基脲为模型物质,通过核磁共振光谱法解析了修饰瓜氨酸产物的结构。所呈现的结果应有助于开发可用于通过质谱法富集并随后检测含瓜氨酸蛋白片段的标签。

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