Wildner Sabrina, Elsässer Brigitta, Stemeseder Teresa, Briza Peter, Soh Wai Tuck, Villalba Mayte, Lidholm Jonas, Brandstetter Hans, Gadermaier Gabriele
Department of Molecular Biology, University of Salzburg, Salzburg 5020, Austria.
Christian Doppler Laboratory for Biosimilar Characterization, University of Salzburg, Salzburg 5020, Austria.
Int J Mol Sci. 2017 Aug 16;18(8):1780. doi: 10.3390/ijms18081780.
Knowledge of the susceptibility of proteins to endolysosomal proteases provides valuable information on immunogenicity. Though Ole e 1-like proteins are considered relevant allergens, little is known about their immunogenic properties and T cell epitopes. Thus, six representative molecules, i.e., Ole e 1, Fra e 1, Sal k 5, Che a 1, Phl p 11 and Pla l 1, were investigated. Endolysosomal degradation and peptide generation were simulated using microsomal fractions of JAWS II dendritic cells. Kinetics and peptide patterns were evaluated by gel electrophoresis and mass spectrometry. In silico MHC (major histocompatibility complex) class II binding prediction was performed with ProPred. Cleavage sites were assigned to the primary and secondary structure, and in silico docking experiments between the protease cathepsin S and Ole e 1 were performed. Different kinetics during endolysosomal degradation were observed while similar peptide profiles especially at the C-termini were detected. Typically, the identified peptide clusters comprised the previously-reported T cell epitopes of Ole e 1, consistent with an in silico analysis of the T cell epitopes. The results emphasize the importance of the fold on allergen processing, as also reflected by conserved cleavage sites located within the large flexible loop. In silico docking and mass spectrometry results suggest that one of the first Ole e 1 cleavages might occur at positions 107-108. Our results provided kinetic and structural information on endolysosomal processing of Ole e 1-like proteins.
了解蛋白质对内溶酶体蛋白酶的敏感性可为免疫原性提供有价值的信息。尽管类Ole e 1蛋白被认为是相关过敏原,但其免疫原性特性和T细胞表位却鲜为人知。因此,对六个代表性分子,即Ole e 1、Fra e 1、Sal k 5、Che a 1、Phl p 11和Pla l 1进行了研究。使用JAWS II树突状细胞的微粒体部分模拟内溶酶体降解和肽生成。通过凝胶电泳和质谱评估动力学和肽谱。使用ProPred进行了II类主要组织相容性复合体(MHC)结合的计算机模拟预测。将切割位点与一级和二级结构相关联,并进行了蛋白酶组织蛋白酶S与Ole e 1之间的计算机对接实验。在内溶酶体降解过程中观察到了不同的动力学,同时检测到了相似的肽谱,尤其是在C末端。通常,鉴定出的肽簇包含先前报道的Ole e 1的T细胞表位,这与T细胞表位的计算机分析结果一致。结果强调了折叠在过敏原加工中的重要性,这也反映在位于大的柔性环内的保守切割位点上。计算机对接和质谱结果表明,Ole e 1的首次切割之一可能发生在107 - 108位。我们的结果提供了关于类Ole e 1蛋白内溶酶体加工的动力学和结构信息。