首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Tubulation of Endosomal Structures in Human Dendritic Cells by Toll-like Receptor Ligation and Lymphocyte Contact Accompanies Antigen Cross-presentation
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Tubulation of Endosomal Structures in Human Dendritic Cells by Toll-like Receptor Ligation and Lymphocyte Contact Accompanies Antigen Cross-presentation

机译:Toll样受体连接和淋巴细胞接触人类树突状细胞内体结构的管束伴随抗原交叉展示。

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摘要

Mouse dendritic cells (DCs) can rapidly extend their Class II MHC-positive late endosomal compartments into tubular structures, induced by Toll-like receptor (TLR) triggering. Within antigen-presenting DCs, tubular endosomes polarize toward antigen-specific CD4+ T cells, which are considered beneficial for their activation. Here we describe that also in human DCs, TLR triggering induces tubular late endosomes, labeled by fluorescent LDL. TLR triggering was insufficient for induced tubulation of transferrin-positive endosomal recycling compartments (ERCs) in human monocyte-derived DCs. We studied endosomal remodeling in human DCs in co-cultures of DCs with CD8+ T cells. Tubulation of ERCs within human DCs requires antigen-specific CD8+ T cell interaction. Tubular remodeling of endosomes occurs within 30 min of T cell contact and involves ligation of HLA-A2 and ICAM-1 by T cell-expressed T cell receptor and LFA-1, respectively. Disintegration of microtubules or inhibition of endosomal recycling abolished tubular ERCs, which coincided with reduced antigen-dependent CD8+ T cell activation. Based on these data, we propose that remodeling of transferrin-positive ERCs in human DCs involves both innate and T cell-derived signals.
机译:小鼠树突状细胞(DC)可以通过Toll样受体(TLR)触发,迅速将其II类MHC阳性内体隔室扩展为管状结构。在呈递抗原的DC中,管状内体向着抗原特异性CD4 + T细胞极化,这被认为对它们的激活是有益的。在这里,我们描述了在人DC中,TLR触发也诱导了管状的晚期内体,并被荧光LDL标记。 TLR触发不足以诱导人单核细胞来源的DC中转铁蛋白阳性的内体再循环隔室(ERC)的导管形成。我们在DC与CD8 + T细胞的共培养物中研究了人类DC中的内体重塑。要在人DC中建立ERC,就需要抗原特异性CD8 + T细胞相互作用。内体的管状重塑发生在T细胞接触后30分钟之内,并涉及分别通过T细胞表达的T细胞受体和LFA-1连接HLA-A2和ICAM-1。微管的解体或内体再循环的抑制消除了肾小管ERC,这与减少的抗原依赖性CD8 + T细胞活化相吻合。基于这些数据,我们建议在人DC中转铁蛋白阳性ERC的重塑涉及先天和T细胞来源的信号。

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