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从无 SAP 的 T 细胞到无助的 B 细胞,再回到 T 细胞:生发中心发育和功能的基础是 T 细胞和 B 细胞的动态相互作用。

From SAP-less T cells to helpless B cells and back: dynamic T-B cell interactions underlie germinal center development and function.

机构信息

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

出版信息

Immunol Rev. 2012 May;247(1):24-35. doi: 10.1111/j.1600-065X.2012.01119.x.

Abstract

Operation of the immune system critically depends on intercellular communication among multiple cell types, frequently in the form of physical cell-cell interactions. Germinal centers (GCs) are highly organized tissue microdomains in which high affinity, class-switched, antibody-producing cells and humoral immune memory are generated. Critical underlying cell-cell interaction events include at the minimum binary interactions between CD4(+) T-helper cells and antigen-presenting dendritic cells (DCs), which ensure proper T-cell activation and acquisition of effecter potentials, and those between T-helper cells and antigen-activated B cells whereby the latter cells receive helper signals (e.g. CD40L) important for their proliferation, survival, and differentiation. How these critical cellular interaction events are molecularly regulated and dynamically orchestrated to support GC formation and function is still a study in progress. Signaling lymphocytic activation molecule (SLAM)-associated protein (SAP) has recently been defined as a pivotal molecule that controls cognate T-B interactions and GC formation. Detailed analysis of interaction and migration dynamics of SAP-deficient T cells has raised the interesting possibility that T cell:antigen-presenting cell interactions underlying GC development and function are regulated in a cell type- and spatiotemporal stage-specific manner. This has important implications for our understanding of synapse formation, helper signal delivery to B cells, follicular helper T-cell differentiation, and quality control of the GC reaction in general. A model of selective T-B interactions involving bi-directional feedback and feed-forward logic is proposed to underlie GC development and function.

摘要

免疫系统的运作严重依赖于多种细胞类型之间的细胞间通讯,通常以物理细胞-细胞相互作用的形式。生发中心(GC)是高度组织化的组织微区,其中产生高亲和力、类别转换、产生抗体的细胞和体液免疫记忆。关键的细胞-细胞相互作用事件至少包括 CD4(+)辅助性 T 细胞和抗原呈递树突状细胞(DC)之间的二元相互作用,这确保了适当的 T 细胞激活和获得效应潜力,以及 T 辅助细胞和抗原激活 B 细胞之间的相互作用,其中后者细胞接收有助于其增殖、存活和分化的辅助信号(例如 CD40L)。这些关键的细胞相互作用事件如何在分子水平上受到调节,并动态协调以支持 GC 的形成和功能,仍然是一个正在研究中的课题。信号淋巴细胞激活分子(SLAM)相关蛋白(SAP)最近被定义为控制同源 T-B 相互作用和 GC 形成的关键分子。对 SAP 缺陷 T 细胞的相互作用和迁移动力学的详细分析提出了一个有趣的可能性,即 GC 发育和功能所基于的 T 细胞:抗原呈递细胞相互作用是受细胞类型和时空阶段特异性调节的。这对我们理解突触形成、辅助信号向 B 细胞的传递、滤泡辅助 T 细胞分化以及 GC 反应的质量控制具有重要意义。提出了一种涉及双向反馈和前馈逻辑的选择性 T-B 相互作用模型,以支持 GC 的发育和功能。

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