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Cross-antigenicity of horse serum albumin with dog and cat albumins: study of three short peptides with significant inhibitory activity towards specific human IgE and IgG antibodies.

机译:马血清白蛋白与狗和猫白蛋白的交叉抗原性:研究三种对特定人IgE和IgG抗体具有明显抑制活性的短肽。

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摘要

Horse serum albumin is present in the near vicinity of the animal, while dog and cat serum albumins are very common allergens present in house dust. Human patients clinically defined as allergic to horse could react with horse serum albumin by means of IgE or IgG antibodies. Studies regarding the specificities of these antibodies by inhibition enzyme-linked immunosorbent assay (ELISA) and depletion experiments have demonstrated that they are directed against dog serum albumin and cross-react not only with horse serum albumin but with other serum albumins from different origins. To investigate these observations further, we isolated and characterized three tryptic peptides (P1, P2 and P3) from horse serum albumin. The peptide P1 contains loops 1 and 2 of the first domain, P2 is derived from loop 4 of the second domain, and P3 contains the disulphide loop 9 of the third domain. These were able to inhibit the binding of the patients' IgE and IgG antibodies to horse albumin as well as to dog and cat serum albumins. This indicates that these peptides are involved in the observed cross-reactions. They also shared common epitopes, as revealed by human IgE antibodies. After reduction and alkylation, they totally lost their inhibitory capacity, suggesting that the intra-chain disulphide bridges, essential for the preservation of the loop structure, probably maintain their allergenic/antigenic reactivity.
机译:马血清白蛋白存在于动物的附近,而狗和猫血清白蛋白是室内灰尘中非常常见的过敏原。临床上被定义为对马过敏的人类患者可以通过IgE或IgG抗体与马血清白蛋白反应。通过抑制酶联免疫吸附测定(ELISA)和耗竭实验对这些抗体的特异性进行的研究表明,它们针对狗血清白蛋白,不仅与马血清白蛋白发生交叉反应,而且还与来自不同来源的其他血清白蛋白发生交叉反应。为了进一步研究这些发现,我们从马血清白蛋白中分离并表征了三种胰蛋白酶肽(P1,P2和P3)。肽P1包含第一结构域的环1和2,P2衍生自第二结构域的环4,而P3包含第三结构域的二硫环9。这些能够抑制患者的IgE和IgG抗体与马白蛋白以及狗和猫血清白蛋白的结合。这表明这些肽参与了观察到的交叉反应。它们还共享共同的表位,如人IgE抗体所揭示。还原和烷基化后,它们完全失去了抑制能力,这表明对于保持环结构至关重要的链内二硫桥可能保持了其变应原/抗原反应性。

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