评估食物致敏性机制的蛋白质组学方法:放射性过敏吸收试验阳性和阴性患者的比较2D-DIGE分析

International journal of proteomics Pub Date : 2011-01-01 Epub Date: 2011-09-19 DOI:10.1155/2011/673618
Bindukumar Nair, John C Wheeler, Donald E Sykes, Paula Brown, Jessica L Reynolds, Ravikumar Aalinkeel, Supriya D Mahajan, Stanley A Schwartz
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引用次数: 3

摘要

使用2D-DIGE分析比较严重食物过敏的RAST(+)受试者和RAST(-)受试者的蛋白质组学特征,以获得特定于食物过敏的候选生物标志物。我们的分析突出了52个在RAST(+)和RAST(-)组之间差异表达的蛋白,其中37个被成功鉴定,包括硫酸软骨素、锌指蛋白、c型凝集素、视黄酸结合蛋白、热休克蛋白、肌球蛋白、细胞因子、肥大细胞表达蛋白和MAP激酶。生物网络分析工具Metacore显示,这些受调节的蛋白大多数在免疫耐受、超敏反应和调节细胞因子模式中发挥作用,诱导Th2反应,通常导致ige介导的过敏反应,与食物过敏有直接或间接的生物学联系。通过生物信息学分析确定与某些过敏表型和潜在交叉反应蛋白相关的独特生物标志物,将为食物过敏患者过敏反应的机制提供巨大的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Proteomic Approach to Evaluate Mechanisms That Contribute to Food Allergenicity: Comparative 2D-DIGE Analysis of Radioallergosorbent Test Positive and Negative Patients.

Proteomic Approach to Evaluate Mechanisms That Contribute to Food Allergenicity: Comparative 2D-DIGE Analysis of Radioallergosorbent Test Positive and Negative Patients.

Proteomic Approach to Evaluate Mechanisms That Contribute to Food Allergenicity: Comparative 2D-DIGE Analysis of Radioallergosorbent Test Positive and Negative Patients.

Proteomic Approach to Evaluate Mechanisms That Contribute to Food Allergenicity: Comparative 2D-DIGE Analysis of Radioallergosorbent Test Positive and Negative Patients.

Proteomic profiles of RAST(+) subjects with severe food allergies and RAST(-) subjects were compared using 2D-DIGE analysis to obtain candidate biomarkers specific to food allergies. Our analysis highlighted 52 proteins that were differentially expressed between the RAST(+) and RAST(-) groups of which 37 were successfully identified that include chondroitin sulfates, zinc finger proteins, C-type lectins, retinoic acid binding proteins, heat shock proteins, myosin, cytokines, mast cell expressed proteins, and MAP kinases. Biological network analysis tool Metacore revealed that most of these regulated proteins play a role in immune tolerance, hypersensitivity and modulate cytokine patterns inducing a Th2 response that typically results in IgE-mediated allergic response which has a direct or indirect biological link to food allergy. Identifying unique biomarkers associated with certain allergic phenotypes and potentially cross-reactive proteins through bioinformatics analyses will provide enormous insight into the mechanisms that underlie allergic response in patients with food allergies.

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