Suppr超能文献

T 细胞与 B 细胞纠缠和 ICOSL 驱动的生发中心反应的前馈调节。

T-B-cell entanglement and ICOSL-driven feed-forward regulation of germinal centre reaction.

机构信息

Tsinghua-Peking Center for Life Sciences, Laboratory of Dynamic Immunobiology, School of Medicine, Tsinghua University, 100084 Beijing, China.

School of Life Sciences, Tsinghua University, 100084 Beijing, China.

出版信息

Nature. 2015 Jan 8;517(7533):214-8. doi: 10.1038/nature13803. Epub 2014 Oct 15.

Abstract

The germinal centre (GC) reaction supports affinity-based B-cell competition and generates high-affinity bone-marrow plasma cells (BMPCs). How follicular T-helper (TFH) cells regulate GC selection is not clear. Using competitive mixed chimaera, we show here that, beyond the role in promoting TFH development, ICOSL (inducible T-cell co-stimulator ligand, also known as ICOSLG) is important for individual B cells to competitively participate in the GC reaction and to develop into BMPCs. Using intravital imaging aided by a calcium reporter, we further show that ICOSL promotes an 'entangled' mode of TFH-B-cell interactions, characterized by brief but extensive surface engagement, productive T-cell calcium spikes, and B-cell acquisition of CD40 signals. Reiterated entanglement promotes outer-zone co-localization of outcompeting GC B cells together with TFH cells, affording the former increased access to T-cell help. ICOSL on GC B cells is upregulated by CD40 signals. Such an intercellular positive feedback between contact-dependent help and ICOSL-controlled entanglement promotes positive selection and BMPC development, as evidenced by observations that higher-affinity B-cell receptor variants are enriched in the ICOSL(high) fraction, that numerically disadvantaged ICOSL-deficient GC B cells or BMPCs exhibit strong affinity compensation in competitive chimaera, and that when GC competition proceeds without ICOSL, selection of high-affinity variants in otherwise normal GC reactions is impaired. By demonstrating entanglement as the basic form of GC TFH-B-cell interactions, identifying ICOSL as a molecular linkage between T-B interactional dynamics and positive selection for high-affinity BMPC formation, our study reveals a pathway by which TFH cells control the quality of long-lived humoral immunity.

摘要

生发中心(GC)反应支持基于亲和力的 B 细胞竞争,并产生高亲和力骨髓浆细胞(BMPC)。滤泡辅助 T 细胞(TFH)细胞如何调节 GC 选择尚不清楚。使用竞争性混合嵌合体,我们在这里表明,除了促进 TFH 发育的作用外,ICOSL(诱导性 T 细胞共刺激配体,也称为 ICOSLG)对于个体 B 细胞竞争参与 GC 反应并发育为 BMPC 很重要。我们使用钙报告器辅助的活体成像进一步表明,ICOSL 促进了 TFH-B 细胞相互作用的“纠缠”模式,其特征是短暂但广泛的表面结合、有生产力的 T 细胞钙峰以及 B 细胞获得 CD40 信号。重复的纠缠促进了与 TFH 细胞一起竞争的 GC B 细胞的外区共定位,从而使前者更容易获得 T 细胞的帮助。CD40 信号上调 GC B 细胞上的 ICOSL。这种细胞间的正反馈作用,即在体依赖性帮助和 ICOSL 控制的纠缠之间,促进了正选择和 BMPC 的发育,这表现在观察到高亲和力 B 细胞受体变体在 ICOSL(高)部分中富集,在竞争嵌合体中,数量处于劣势的 ICOSL 缺陷 GC B 细胞或 BMPC 表现出强烈的亲和力补偿,并且当 GC 竞争没有 ICOSL 进行时,否则正常 GC 反应中的高亲和力变体的选择会受到损害。通过证明纠缠是 GC TFH-B 细胞相互作用的基本形式,将 ICOSL 鉴定为 T-B 相互作用动力学与高亲和力 BMPC 形成的正选择之间的分子联系,我们的研究揭示了 TFH 细胞控制长寿体液免疫质量的途径。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验