Nony Emmanuel, Le Mignon Maxime, Brier Sébastien, Martelet Armelle, Moingeon Philippe
Stallergenes Greer, Research Department, 6 rue Alexis de Tocqueville, 92183, Antony cedex, France.
Curr Allergy Asthma Rep. 2016 Sep;16(9):64. doi: 10.1007/s11882-016-0642-5.
Proteomics encompasses a variety of approaches unraveling both the structural features, post-translational modifications, and abundance of proteins. As of today, proteomic studies have shed light on the primary structure of about 850 allergens, enabling the design of microarrays for improved molecular diagnosis. Proteomic methods including mass spectrometry allow as well to investigate protein-protein interactions, thus yielding precise information on critical epitopes on the surface of allergens. Mass spectrometry is now being applied to the unambiguous identification, characterization, and comprehensive quantification of allergens in a variety of matrices, as diverse as food samples and allergen immunotherapy drug products. As such, it represents a method of choice for quality testing of allergen immunotherapy products.
蛋白质组学涵盖了多种方法,用于揭示蛋白质的结构特征、翻译后修饰以及丰度。截至目前,蛋白质组学研究已阐明了约850种过敏原的一级结构,从而能够设计微阵列以改进分子诊断。包括质谱分析在内的蛋白质组学方法还可用于研究蛋白质-蛋白质相互作用,从而获得有关过敏原表面关键表位的精确信息。质谱分析目前正应用于多种基质中过敏原的明确鉴定、表征和全面定量,这些基质包括食品样品和过敏原免疫治疗药物产品等。因此,它是过敏原免疫治疗产品质量检测的首选方法。