首页> 外文期刊>International archives of allergy and immunology >Identification of Immunoglobulin E-Binding Proteins of the Xerophilic Fungus Aspergillus penicillioides Crude Mycelial Mat Extract and Serological Reactivity Assessment in Subjects with Different Allergen Reactivity Profiles
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Identification of Immunoglobulin E-Binding Proteins of the Xerophilic Fungus Aspergillus penicillioides Crude Mycelial Mat Extract and Serological Reactivity Assessment in Subjects with Different Allergen Reactivity Profiles

机译:鉴定异丙胺蛋白含有不同过敏原反应性谱的受试者菌丝菌霉菌的免疫球蛋白e结合蛋白质

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Background: Aspergillus penicillioides is a very common indoor xerophilic fungus and potential causative agent of respiratory conditions. Although people are constantly exposed to A. penicillioides , no proteins with allergenic potential have been described. Therefore, we aim to confirm allergic sensitization to A. penicillioides through reactivity in serological assays and detect immunoglobulin E (IgE)-binding proteins. Methods: In an indirect ELISA, we compared the serological reactivity to A. penicillioides between subjects with specific IgE (sIgE) (group 1, n = 54) and no sIgE reactivity (group 2, n = 15) against commercial allergens. Correlations and principal component analysis were performed to identify associations between reactivity to commercial allergens and A. penicillioides . IgE-binding proteins in A. penicillioides were visualized using Western blotting (WB) in group 1. The IgE-binding proteins with the highest reactivity were analyzed by mass spectrometry and confirmed by transcript matching. Results: There was no statistical significance ( p = 0.1656) between the study groups in serological reactivity. Correlations between reactivity to A. penicillioides , dog epithelia, Aspergillus fumigatus, and Penicillium chrysogenum were observed. WB experiments showed 6 IgE-binding proteins with molecular weights ranging from 45 to 145 kDa. Proteins of 108, 83, and 56 kDa showed higher reactivity. Mass spectrometry analysis of these 3 proteins led to the putative identification of NADP-specific glutamate dehydrogenase and catalase B. This was confirmed with transcriptome analysis. Conclusions: These results provide evidence of the presence of potential allergenic components in A. penicillioides . Further analysis of the putatively identified proteins should reveal their allergenic potential.
机译:背景:曲霉菌素是一种非常常见的室内Xerophilic真菌和呼吸状况的潜在造成剂。虽然人们不断暴露于A. penicillioides,但已经描述了没有过敏潜力的蛋白质。因此,我们的目标是通过血清学测定中的反应性证实对A的过敏敏化。方法:在间接ELISA中,我们将血清学反应与特异性IgE(SiGe)(1,N = 54)的受试者之间的血清酰亚胺反应进行比较,并且对商业过敏原没有SiGe反应性(第2组,N = 15)。进行相关性和主成分分析,以鉴定对商业过敏原和A.缺氧的反应性之间的缔合。 AIGE结合蛋白在A组中使用蛋白质印迹(WB)可视化。通过质谱法分析具有最高反应性的IgE结合蛋白质,并通过转录物匹配证实。结果:在血清学反应性之间的研究组之间没有统计学意义(p = 0.1656)。观察到对A.青分苷脂,狗上皮细胞,灰霉病和青霉甲霉属植物之间的反应性之间的相关性。 WB实验显示6个IgE结合蛋白,分子量范围为45至145kDa。 108,83和56kDa的蛋白质显示出更高的反应性。对这些3种蛋白质的质谱分析导致NADP特异性谷氨酸脱氢酶和过氧化氢酶B的推定鉴定。通过转录组分析证实了这一点。结论:这些结果提供了A. Penicillioides中潜在的过敏组分存在的证据。对推定鉴定的蛋白质的进一步分析应该揭示它们的过敏性潜力。

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