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IL-7 通过促进 B 细胞受体多样性来促进对细菌多糖的抗体应答。

IL-7 Enables Antibody Responses to Bacterial Polysaccharides by Promoting B Cell Receptor Diversity.

机构信息

Department of Microbiology and Immunology, Sidney Kimmel Medical College, Sidney Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107; and.

Department of Microbiology, University of Alabama at Birmingham, Birmingham, AL 35294.

出版信息

J Immunol. 2018 Aug 15;201(4):1229-1240. doi: 10.4049/jimmunol.1800162. Epub 2018 Jul 13.

Abstract

Polysaccharide vaccines such as the Vi polysaccharide (ViPS) of serovar Typhi induce efficient Ab responses in adults but not in young children. The reasons for this difference are not understood. IL-7 dependency in B cell development increases progressively with age. IL-7Rα-mediated signals are required for the expression of many V gene segments that are distal to D-J in the IgH locus and for the complete diversification of the BCR repertoire. Therefore, we hypothesized that B cells generated in the absence of IL-7 do not recognize a wide range of Ags because of a restricted BCR repertoire. Compared with adult wildtype mice, young wildtype mice and IL-7-deficient adult mice generated a significantly reduced Ab response to ViPS. Additionally, ViPS-binding B cells in adult wildtype mice predominantly used distal V gene segments. Transgenic expression of either IL-7 or a BCR encoded by a distal V gene segment permitted young mice to respond efficiently to bacterial polysaccharides. These results indicate that restricted V gene usage early in life results in a paucity of Ag-specific B cell precursors, thus limiting antipolysaccharide responses.

摘要

多糖疫苗,如血清型 Typhi 的 Vi 多糖(ViPS),可在成人中诱导有效的 Ab 反应,但在幼儿中则不能。造成这种差异的原因尚不清楚。IL-7 依赖性在 B 细胞发育中随着年龄的增长而逐渐增加。IL-7Rα 介导的信号对于 IgH 基因座中远离 D-J 的许多 V 基因片段的表达以及 BCR 库的完全多样化是必需的。因此,我们假设由于 BCR 库的限制,缺乏 IL-7 产生的 B 细胞不能识别广泛的抗原。与成年野生型小鼠相比,幼年野生型小鼠和 IL-7 缺陷型成年小鼠对 ViPS 的 Ab 反应明显降低。此外,成年野生型小鼠中 ViPS 结合的 B 细胞主要使用远端 V 基因片段。IL-7 或由远端 V 基因片段编码的 BCR 的转基因表达允许幼年小鼠有效地对细菌多糖产生反应。这些结果表明,生命早期的受限 V 基因使用导致抗原特异性 B 细胞前体的缺乏,从而限制了对抗多糖的反应。

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