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肠道分泌型 IgA 的平行性塑造了功能性微生物的适应性。

Parallelism of intestinal secretory IgA shapes functional microbial fitness.

机构信息

Department of Biomedical Research, University Clinic of Visceral Surgery and Medicine, Inselspital, University of Bern, Bern, Switzerland.

Institute of Pharmacology, University of Bern, Bern, Switzerland.

出版信息

Nature. 2021 Oct;598(7882):657-661. doi: 10.1038/s41586-021-03973-7. Epub 2021 Oct 13.

Abstract

Dimeric IgA secreted across mucous membranes in response to nonpathogenic taxa of the microbiota accounts for most antibody production in mammals. Diverse binding specificities can be detected within the polyclonal mucosal IgA antibody response, but limited monoclonal hybridomas have been studied to relate antigen specificity or polyreactive binding to functional effects on microbial physiology in vivo. Here we use recombinant dimeric monoclonal IgAs (mIgAs) to finely map the intestinal plasma cell response to microbial colonization with a single microorganism in mice. We identify a range of antigen-specific mIgA molecules targeting defined surface and nonsurface membrane antigens. Secretion of individual dimeric mIgAs targeting different antigens in vivo showed distinct alterations in the function and metabolism of intestinal bacteria, largely through specific binding. Even in cases in which the same microbial antigen is targeted, microbial metabolic alterations differed depending on IgA epitope specificity. By contrast, bacterial surface coating generally reduced motility and limited bile acid toxicity. The overall intestinal IgA response to a single microbe therefore contains parallel components with distinct effects on microbial carbon-source uptake, bacteriophage susceptibility, motility and membrane integrity.

摘要

黏膜分泌的二聚体 IgA 可响应微生物群中非病原性分类群,这占哺乳动物体内大多数抗体的产生。黏膜多克隆 IgA 抗体反应中可检测到不同的结合特异性,但针对抗原特异性或多反应性结合与体内微生物生理学功能的关系,仅有限的单克隆杂交瘤进行了研究。在这里,我们使用重组二聚体单克隆 IgA(mIgA)来精细绘制肠道浆细胞对单个微生物定植的反应图谱。我们鉴定了一系列针对特定表面和非表面膜抗原的抗原特异性 mIgA 分子。在体内针对不同抗原分泌的单个二聚体 mIgA 显示出肠道细菌功能和代谢的明显改变,这主要是通过特异性结合实现的。即使针对相同的微生物抗原,IgA 表位特异性也会导致微生物代谢改变不同。相比之下,细菌表面涂层通常会降低运动性并限制胆汁酸毒性。因此,单个微生物的整体肠道 IgA 反应包含具有不同作用的平行成分,包括对微生物碳源摄取、噬菌体敏感性、运动性和膜完整性的影响。

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