Gap-junction communication pathways in germinal center reactions.

T Krenacs, M Rosendaal
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引用次数: 19

Abstract

Intercellular channels called gap junctions enable multicellular organisms to exchange information rapidly between cells. Though gap junctions are held to be ubiquitous in solid tissues, we have only recently found them in the lymphoid organs. Functional direct cell-cell communication has now been confirmed by us and other groups in bone marrow, thymus, and in secondary lymphoid tissues. What functions do they serve in the lymphoreticular system where, so far, only cytokines/growth factors and adhesion molecules have been considered as regulators? Here we show evidence for and refer to published work about functional direct cell-cell communication through gap junctions in germinal center reactions and make proposals for their role in the immune response. We found a large amount of the connexin43 (Cx43) gap junctions in the germinal centers of secondary lymphoid follicles. Ultrastructurally and immunohistologically, most of the junctions were detected on the processes of follicular dendritic cells (FDC) enveloping nondividing centrocytes in the light zone of germinal centers where B-cell selection is thought to take place. Further support for this finding came by revealing the Cx43 mRNA in situ at the same location as the protein. On antigen challenge, gap junctions appeared on the FDC as they formed meshworks in germinal centers. In order to find out which germinal center cells communicate directly, we separated FDC-rich, low-density, B-cell fractions from human tonsil. In culture, we injected single FDC with the low-molecular-weight fluorescent dye, Lucifer Yellow (M(r) 457 Da), which passed between adjacent FDC and sometimes from FDC to B cells. Based on these findings and their assigned functions in other tissues, gap junctions may contribute to germinal center reactions in the following ways: (1) they may regulate follicle pattern formation by controlling FDC growth, (2) they may be involved in FDC-B-cell signaling contributing to the final rescue of selected B cells from apoptosis, and (3) they may enable FDC to work as a functional syncytium providing a cellular internet for integrating germinal center events. Data supporting these interpretations are briefly discussed.

生发中心反应中的缝隙连接通讯途径。
称为间隙连接的细胞间通道使多细胞生物能够在细胞之间快速交换信息。虽然间隙连接被认为在实体组织中普遍存在,但我们最近才在淋巴器官中发现它们。我们和其他研究小组已经证实,在骨髓、胸腺和次级淋巴组织中,细胞间的功能性直接通讯是存在的。到目前为止,只有细胞因子/生长因子和粘附分子被认为是调节因子,它们在淋巴系统中起什么作用?在这里,我们展示了通过生发中心反应中的间隙连接的功能性直接细胞-细胞通信的证据并参考了已发表的工作,并提出了它们在免疫反应中的作用。我们在次级淋巴滤泡的生发中心发现了大量的连接蛋白43 (Cx43)间隙连接。在超微结构和免疫组织学上,大多数连接都是在生发中心的光区包围未分裂的中心细胞的滤泡树突状细胞(FDC)过程中检测到的,b细胞选择被认为发生在这里。进一步支持这一发现的是在与蛋白质相同的位置原位显示Cx43 mRNA。在抗原刺激下,FDC在生发中心形成网状结构时出现间隙连接。为了找出哪些生发中心细胞直接交流,我们从人类扁桃体中分离了富含fdc的低密度b细胞组分。在培养中,我们向单个FDC注射低分子量荧光染料Lucifer Yellow (M(r) 457 Da),荧光染料在相邻的FDC之间传递,有时从FDC传递到B细胞。基于这些发现及其在其他组织中的指定功能,间隙连接可能以以下方式促进生发中心反应:(1)它们可能通过控制FDC生长来调节卵泡模式的形成,(2)它们可能参与FDC-B细胞信号传导,最终帮助选定的B细胞免于凋亡,(3)它们可能使FDC作为一个功能性合胞体,提供一个整合生发中心事件的细胞网络。本文简要讨论了支持这些解释的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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