首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Antigen Binding to Secretory Immunoglobulin A Results in Decreased Sensitivity to Intestinal Proteases and Increased Binding to Cellular Fc Receptors
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Antigen Binding to Secretory Immunoglobulin A Results in Decreased Sensitivity to Intestinal Proteases and Increased Binding to Cellular Fc Receptors

机译:抗原与分泌型免疫球蛋白A的结合导致对肠蛋白酶的敏感性降低和与细胞Fc受体的结合增加

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摘要

In intestinal secretions, secretory IgA (SIgA) plays an important sentinel and protective role in the recognition and clearance of enteric pathogens. In addition to serving as a first line of defense, SIgA and SIgA·antigen immune complexes are selectively transported across Peyer's patches to underlying dendritic cells in the mucosa-associated lymphoid tissue, contributing to immune surveillance and immunomodulation. To explain the unexpected transport of immune complexes in face of the large excess of free SIgA in secretions, we postulated that SIgA experiences structural modifications upon antigen binding. To address this issue, we associated specific polymeric IgA and SIgA with antigens of various sizes and complexity (protein toxin, virus, bacterium). Compared with free antibody, we found modified sensitivity of the three antigens assayed after exposure to proteases from intestinal washes. Antigen binding further impacted on the immunoreactivity toward polyclonal antisera specific for the heavy and light chains of the antibody, as a function of the antigen size. These conformational changes promoted binding of the SIgA-based immune complex compared with the free antibody to cellular receptors (FcαRI and polymeric immunoglobulin receptor) expressed on the surface of premyelocytic and epithelial cell lines. These data reveal that antigen recognition by SIgA triggers structural changes that confer to the antibody enhanced receptor binding properties. This identifies immune complexes as particular structural entities integrating the presence of bound antigens and adds to the known function of immune exclusion and mucus anchoring by SIgA.
机译:在肠道分泌物中,分泌型IgA(SIgA)在识别和清除肠道病原体中起着重要的前哨作用和保护作用。除了作为第一道防线之外,SIgA和SIgA·抗原免疫复合物还可以通过Peyer斑块选择性地转运到与黏膜相关的淋巴组织中的潜在树突状细胞,从而有助于免疫监视和免疫调节。为了解释面对分泌物中大量过量的游离SIgA,免疫复合物的意外转运,我们假设SIgA在抗原结合后会经历结构修饰。为了解决这个问题,我们将特定的聚合IgA和SIgA与各种大小和复杂性的抗原(蛋白质毒素,病毒,细菌)相关联。与游离抗体相比,我们发现暴露于来自肠道洗涤的蛋白酶后测定的三种抗原的敏感性提高。抗原结合进一步影响针对针对抗体的重链和轻链的多克隆抗血清的免疫反应性,这是抗原大小的函数。与游离抗体相比,这些构象变化促进了基于SIgA的免疫复合物与表达在前粒细胞和上皮细胞系表面的细胞受体(FcαRI和聚合免疫球蛋白受体)的结合。这些数据表明,SIgA对抗原的识别触发了结构改变,从而赋予了抗体增强的受体结合特性。这将免疫复合物鉴定为整合结合抗原存在的特定结构实体,并增加了免疫排斥和SIgA黏附锚定的已知功能。

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