首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Profiling the Extended Cleavage Specificity of the House Dust Mite Protease Allergens Der p 1, Der p 3 and Der p 6 for the Prediction of New Cell Surface Protein Substrates
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Profiling the Extended Cleavage Specificity of the House Dust Mite Protease Allergens Der p 1, Der p 3 and Der p 6 for the Prediction of New Cell Surface Protein Substrates

机译:分析屋尘螨蛋白酶过敏原Der p 1,Der p 3和Der p 6的扩展裂解特异性,以预测新的细胞表面蛋白底物

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摘要

House dust mite (HDM) protease allergens, through cleavages of critical surface proteins, drastically influence the initiation of the Th2 type immune responses. However, few human protein substrates for HDM proteases have been identified so far, mainly by applying time-consuming target-specific individual studies. Therefore, the identification of substrate repertoires for HDM proteases would represent an unprecedented key step toward a better understanding of the mechanism of HDM allergic response. In this study, phage display screenings using totally or partially randomized nonameric peptide substrate libraries were performed to characterize the extended substrate specificities (P5–P4′) of the HDM proteases Der p 1, Der p 3 and Der p 6. The bioinformatics interface PoPS (Prediction of Protease Specificity) was then applied to define the proteolytic specificity profile of each protease and to predict new protein substrates within the human cell surface proteome, with a special focus on immune receptors. Specificity profiling showed that the nature of residues in P1 but also downstream the cleavage sites (P′ positions) are important for effective cleavages by all three HDM proteases. Strikingly, Der p 1 and Der p 3 display partially overlapping specificities. Analysis with PoPS interface predicted 50 new targets for the HDM proteases, including 21 cell surface receptors whose extracellular domains are potentially cleaved by Der p 1, Der p 3 and/or Der p 6. Twelve protein substrate candidates were confirmed by phage ELISA (enzyme linked immunosorbent assay). This extensive study of the natural protein substrate specificities of the HDM protease allergens unveils new cell surface target receptors for a better understanding on the role of these proteases in the HDM allergic response and paves the way for the design of specific protease inhibitors for future anti-allergic treatments.
机译:屋尘螨(HDM)蛋白酶过敏原通过关键表面蛋白的裂解,极大地影响了Th2型免疫应答的启动。然而,到目前为止,主要通过应用耗时的靶标特异性个体研究,几乎没有发现用于HDM蛋白酶的人类蛋白质底物。因此,HDM蛋白酶底物库的鉴定将代表迈向更好地了解HDM过敏反应机制的前所未有的关键步骤。在这项研究中,使用全部或部分随机的非异构肽底物库进行噬菌体展示筛选,以表征HDM蛋白酶Der p 1,Der p 3和Der p 6的扩展底物特异性(P5-P4')。生物信息学接口PoPS然后应用(蛋白酶特异性的预测)来定义每种蛋白酶的蛋白水解特异性谱,并预测人细胞表面蛋白质组中的新蛋白质底物,重点是免疫受体。特异性分析表明,P1中的残基以及裂解位点下游(P'位置)的性质对于所有三种HDM蛋白酶的有效裂解都很重要。令人惊讶的是,Der p 1和Der p 3显示出部分重叠的特异性。使用PoPS界面进行分析可预测HDM蛋白酶的50个新靶标,包括21种细胞表面受体,其胞外域可能被Der p 1,Der p 3和/或Der p 6裂解。通过噬菌体ELISA(酶)确认了12种蛋白质底物候选物连锁免疫吸附测定)。这项对HDM蛋白酶过敏原天然蛋白质底物特异性的广泛研究揭示了新的细胞表面靶受体,可以更好地了解这些蛋白酶在HDM过敏反应中的作用,并为设计特定的蛋白酶抑制剂铺平了道路,为将来的抗过敏治疗。

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