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一种基于荧光的优化二维免疫蛋白质组学方法用于自身抗体的准确筛选。

An Optimized Fluorescence-Based Bidimensional Immunoproteomic Approach for Accurate Screening of Autoantibodies.

作者信息

Dutoit-Lefèvre Virginie, Dubucquoi Sylvain, Launay David, Sobanski Vincent, Dussart Patricia, Chafey Philippe, Broussard Cédric, Duban-Deweer Sophie, Vermersch Patrick, Prin Lionel, Lefranc Didier

机构信息

Institut d'Immunologie, Centre de Biologie Pathologie et Génétique, Centre Hospitalier Régional Universitaire, Lille, France; UMR 995, LIRIC, INSERM, Lille, France; EA 2686, Univ Lille Nord de France, Lille, France.

UMR 995, LIRIC, INSERM, Lille, France; EA 2686, Univ Lille Nord de France, Lille, France; Service de Médecine Interne et d'Immunologie clinique, Centre National de Référence Maladies rares, Centre Hospitalier Régional Universitaire, Lille, France.

出版信息

PLoS One. 2015 Jul 1;10(7):e0132142. doi: 10.1371/journal.pone.0132142. eCollection 2015.

Abstract

Serological proteome analysis (SERPA) combines classical proteomic technology with effective separation of cellular protein extracts on two-dimensional gel electrophoresis, western blotting, and identification of the antigenic spot of interest by mass spectrometry. A critical point is related to the antigenic target characterization by mass spectrometry, which depends on the accuracy of the matching of antigenic reactivities on the protein spots during the 2D immunoproteomic procedures. The superimposition, based essentially on visual criteria of antigenic and protein spots, remains the major limitation of SERPA. The introduction of fluorescent dyes in proteomic strategies, commonly known as 2D-DIGE (differential in-gel electrophoresis), has boosted the qualitative capabilities of 2D electrophoresis. Based on this 2D-DIGE strategy, we have improved the conventional SERPA by developing a new and entirely fluorescence-based bi-dimensional immunoproteomic (FBIP) analysis, performed with three fluorescent dyes. To optimize the alignment of the different antigenic maps, we introduced a landmark map composed of a combination of specific antibodies. This methodological development allows simultaneous revelation of the antigenic, landmark and proteomic maps on each immunoblot. A computer-assisted process using commercially available software automatically leads to the superimposition of the different maps, ensuring accurate localization of antigenic spots of interest.

摘要

血清蛋白质组分析(SERPA)将经典蛋白质组学技术与二维凝胶电泳有效分离细胞蛋白质提取物、蛋白质印迹以及通过质谱鉴定感兴趣的抗原斑点相结合。一个关键点与通过质谱对抗抗原靶标的表征有关,这取决于二维免疫蛋白质组学过程中蛋白质斑点上抗原反应性匹配的准确性。基本上基于抗原斑点和蛋白质斑点的视觉标准进行的叠加,仍然是SERPA的主要局限性。蛋白质组学策略中荧光染料的引入,通常称为二维差异凝胶电泳(2D-DIGE),提高了二维电泳的定性能力。基于这种二维差异凝胶电泳策略,我们通过开发一种全新的、完全基于荧光的二维免疫蛋白质组学(FBIP)分析方法改进了传统的SERPA,该方法使用三种荧光染料进行。为了优化不同抗原图谱的比对,我们引入了由特定抗体组合组成的地标图谱。这种方法学的发展使得在每个免疫印迹上能够同时显示抗原图谱、地标图谱和蛋白质组图谱。使用市售软件的计算机辅助过程会自动实现不同图谱的叠加,确保感兴趣的抗原斑点的准确定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a7b/4489013/900699a655be/pone.0132142.g001.jpg

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