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T细胞受体位于有序的质膜纳米结构域中,这些纳米结构域在受体被补片处理后会聚集在一起。

The T cell receptor resides in ordered plasma membrane nanodomains that aggregate upon patching of the receptor.

作者信息

Dinic Jelena, Riehl Astrid, Adler Jeremy, Parmryd Ingela

机构信息

Science for Life Laboratory, Department of Medical Cell Biology, Uppsala University, 751 23 Uppsala, Sweden.

出版信息

Sci Rep. 2015 May 8;5:10082. doi: 10.1038/srep10082.

Abstract

Two related models for T cell signalling initiation suggest either that T cell receptor (TCR) engagement leads to its recruitment to ordered membrane domains, often referred to as lipid rafts, where signalling molecules are enriched or that ordered TCR-containing membrane nanodomains coalesce upon TCR engagement. That ordered domains form upon TCR engagement, as they do upon lipid raft marker patching, has not been considered. The target of this study was to differentiate between those three options. Plasma membrane order was followed in live T cells at 37 °C using laurdan to report on lipid packing. Patching of the TCR that elicits a signalling response resulted in aggregation, not formation, of ordered plasma membrane domains in both Jurkat and primary T cells. The TCR colocalised with actin filaments at the plasma membrane in unstimulated Jurkat T cells, consistent with it being localised to ordered membrane domains. The colocalisation was most prominent in cells in G1 phase when the cells are ready to commit to proliferation. At other cell cycle phases the TCR was mainly found at perinuclear membranes. Our study suggests that the TCR resides in ordered plasma membrane domains that are linked to actin filaments and aggregate upon TCR engagement.

摘要

关于T细胞信号传导起始有两种相关模型,一种认为T细胞受体(TCR)的结合会导致其被招募到有序的膜结构域,通常称为脂筏,信号分子在其中富集;另一种认为含有TCR的有序膜纳米结构域在TCR结合时会合并。TCR结合时是否会像脂筏标记物贴片时那样形成有序结构域,此前尚未得到考虑。本研究的目的是区分这三种情况。在37°C的活T细胞中,使用劳丹明报告脂质堆积情况来跟踪质膜的有序性。引发信号反应的TCR贴片在Jurkat细胞和原代T细胞中均导致有序质膜结构域的聚集而非形成。在未受刺激的Jurkat T细胞中,TCR与质膜上的肌动蛋白丝共定位,这与其定位于有序膜结构域一致。当细胞准备进入增殖阶段时,这种共定位在G1期细胞中最为明显。在其他细胞周期阶段,TCR主要位于核周膜上。我们的研究表明,TCR存在于与肌动蛋白丝相连的有序质膜结构域中,并在TCR结合时聚集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8065/5386217/cd126eac6c6c/srep10082-f1.jpg

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