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Mucosal or systemic microbiota exposures shape the B cell repertoire

机译:粘膜或全身微生物群暴露形状为B Cell TeptoIre

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摘要

Colonization by the microbiota causes a marked stimulation of B cells and induction of immunoglobulin, but mammals colonized with many taxa have highly complex and individualized immunoglobulin repertoires(1,2). Here we use a simplified model of defined transient exposures to different microbial taxa in germ-free mice(3)to deconstruct how the microbiota shapes the B cell pool and its functional responsiveness. We followed the development of the immunoglobulin repertoire in B cell populations, as well as single cells by deep sequencing. Microbial exposures at the intestinal mucosa generated oligoclonal responses that differed from those of germ-free mice, and from the diverse repertoire that was generated after intravenous systemic exposure to microbiota. The IgA repertoire-predominantly to cell-surface antigens-did not expand after dose escalation, whereas increased systemic exposure broadened the IgG repertoire to both microbial cytoplasmic and cell-surface antigens. These microbial exposures induced characteristic immunoglobulin heavy-chain repertoires in B cells, mainly at memory and plasma cell stages. Whereas sequential systemic exposure to different microbial taxa diversified the IgG repertoire and facilitated alternative specific responses, sequential mucosal exposure produced limited overlapping repertoires and the attrition of initial IgA binding specificities. This shows a contrast between a flexible response to systemic exposure with the need to avoid fatal sepsis, and a restricted response to mucosal exposure that reflects the generic nature of host-microbial mutualism in the mucosa.A mouse model of systemic versus mucosal exposure to microbial taxa reveals that the former provokes a flexible B cell response with a diverse immunoglobulin repertoire, whereas the latter generates a more-restricted response.
机译:微生物群的定植导致B细胞的显着刺激和免疫球蛋白的诱导,但哺乳动物与许多分类群进行殖民,具有高度复杂和个体化的免疫球蛋白曲目(1,2)。在这里,我们使用无菌小鼠(3)中的不同微生物曝光的简化模型(3),以解构微生物群如何形状的B细胞库及其功能响应性。我们按照B细胞群中的免疫球蛋白曲目的发展,并通过深度测序和单细胞进行。肠粘膜的微生物曝光产生的寡核抗性反应与无菌小鼠不同,以及在静脉内系统性暴露于微生物群后产生的不同曲目。 IGA曲目主要用于细胞表面抗原 - 在剂量升级后不扩张,而系统性暴露的增加将IgG曲目较宽为微生物细胞质和细胞表面抗原。这些微生物暴露在B细胞中诱导特征免疫球蛋白重链曲目,主要是在记忆和血浆细胞阶段。虽然顺序全身暴露于不同的微生物分类群多样化IgG曲目和促进的替代特定反应,所以序贯粘膜暴露产生有限的重叠曲目和初始IgA结合特异性的损失。这表明了对系统性暴露的灵活性响应之间的对比,避免致命脓毒症的需要,以及对粘膜暴露的限制反应,反映了粘膜中宿主微生物互动的通用性质。Sysic与粘膜暴露于微生物的鼠标模型分类厅揭示了前者用不同的免疫球蛋白曲目来激发灵活的B细胞响应,而后者产生更受限制的反应。

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  • 来源
    《Nature》 |2020年第7820期|274-278|共5页
  • 作者单位

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Oslo Dept Immunol Oslo Norway;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Inst Infect Dis Bern Switzerland;

    McMaster Univ Med Ctr Hamilton ON Canada;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    German Canc Res Ctr Div Chron Inflammat & Canc Heidelberg Germany;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Inst Infect Dis Bern Switzerland;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

    Univ Bern Univ Klin Viszerale Chirurg & Med Inselspital Maurice Muller Labs DBMR Bern Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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