Oseroff Carla, Christensen Lars H, Westernberg Luise, Pham John, Lane Jerome, Paul Sinu, Greenbaum Jason, Stranzl Thomas, Lund Gitte, Hoof Ilka, Holm Jens, Würtzen Peter A, Meno Kåre H, Frazier April, Schulten Veronique, Andersen Peter S, Peters Bjoern, Sette Alessandro
La Jolla Institute for Allergy and Immunology, La Jolla, CA 92037, USA.
ALK-Abelló A/S, Global Research, Hørsholm, Denmark.
Clin Exp Allergy. 2017 Apr;47(4):577-592. doi: 10.1111/cea.12829. Epub 2016 Nov 7.
House dust mite (HDM) allergens are a common cause of allergy and allergic asthma. A comprehensive analysis of proteins targeted by T cells, which are implicated in the development and regulation of allergic disease independent of their antibody reactivity, is still lacking.
To comprehensively analyse the HDM-derived protein targets of T cell responses in HDM-allergic individuals, and investigate their correlation with IgE/IgG responses and protein function.
Proteomic analysis (liquid chromatography-tandem mass spectrometry) of HDM extracts identified 90 distinct protein clusters, corresponding to 29 known allergens and 61 novel proteins. Peripheral blood mononuclear cells (PBMC) from 20 HDM-allergic individuals were stimulated with HDM extracts and assayed with a set of ~2500 peptides derived from these 90 protein clusters and predicted to bind the most common HLA class II types. 2D immunoblots were made in parallel to elucidate IgE and IgG reactivity, and putative function analyses were performed in silico according to Gene Ontology annotations.
Analysis of T cell reactivity revealed a large number of T cell epitopes. Overall response magnitude and frequency was comparable for known and novel proteins, with 15 antigens (nine of which were novel) dominating the total T cell response. Most of the known allergens that were dominant at the T cell level were also IgE reactive, as expected, while few novel dominant T cell antigens were IgE reactive. Among known allergens, hydrolase activity and detectable IgE/IgG reactivity are strongly correlated, while no protein function correlates with immunogenicity of novel proteins. A total of 106 epitopes accounted for half of the total T cell response, underlining the heterogeneity of T cell responses to HDM allergens.
Herein, we define the T cell targets for both known allergens and novel proteins, which may inform future diagnostics and immunotherapeutics for allergy to HDM.
屋尘螨(HDM)过敏原是过敏和过敏性哮喘的常见病因。目前仍缺乏对T细胞靶向蛋白的全面分析,这些蛋白在过敏性疾病的发生和调节中起作用,且与它们的抗体反应性无关。
全面分析HDM过敏个体中T细胞反应的HDM衍生蛋白靶点,并研究它们与IgE/IgG反应及蛋白功能的相关性。
对HDM提取物进行蛋白质组分析(液相色谱-串联质谱),鉴定出90个不同的蛋白簇,对应29种已知过敏原和61种新蛋白。用HDM提取物刺激20名HDM过敏个体的外周血单个核细胞(PBMC),并用一组约2500种源自这90个蛋白簇且预测能结合最常见II类HLA类型的肽进行检测。同时进行二维免疫印迹以阐明IgE和IgG反应性,并根据基因本体注释在计算机上进行推定功能分析。
T细胞反应性分析揭示了大量T细胞表位。已知和新蛋白的总体反应强度和频率相当,15种抗原(其中9种是新抗原)主导了总的T细胞反应。正如预期的那样,在T细胞水平占主导的大多数已知过敏原也是IgE反应性的,而很少有新的主导T细胞抗原是IgE反应性的。在已知过敏原中,水解酶活性与可检测到的IgE/IgG反应性密切相关,而没有蛋白功能与新蛋白的免疫原性相关。共有106个表位占总T细胞反应的一半,突出了T细胞对HDM过敏原反应的异质性。
在此,我们确定了已知过敏原和新蛋白的T细胞靶点,这可能为未来HDM过敏的诊断和免疫治疗提供信息。