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寒冷诱导的T细胞膜微结构域凝聚激活信号通路。

Cold-induced coalescence of T-cell plasma membrane microdomains activates signalling pathways.

作者信息

Magee Anthony I, Adler Jeremy, Parmryd Ingela

机构信息

Division of Biomedical Sciences, Imperial College Faculty of Medicine, Exhibition Road, South Kensington, London, SW7 2AZ, UK.

出版信息

J Cell Sci. 2005 Jul 15;118(Pt 14):3141-51. doi: 10.1242/jcs.02442.

Abstract

The plasma membranes of eukaryotic cells are hypothesised to contain microdomains with distinct lipid and protein composition known as lipid rafts. In T cells, cross-linking of lipid raft components triggers signalling cascades. We show that the T-cell antigen receptor (TCR) and a protein tyrosine kinase, Lck, have a patchy plasma membrane distribution in Jurkat T cells at reduced temperatures, although they have a continuous distribution at physiological temperature (37 degrees C). GM1 displays a patchy distribution at reduced temperature after Triton X-100 extraction. The archetypal non-lipid raft marker, the transferrin receptor, displays a more continuous plasma membrane distribution uncorrelated with that of Lck at 0 degrees C. Cold-induced aggregation of the lipid raft-partitioning proteins is accompanied by increased tyrosine phosphorylation and ERK activation, peaking at 10-20 degrees C. Tyrosine phosphorylation is further greatly increased by ligating the TCR with anti-CD3 at 10-20 degrees C. The tyrosine phosphorylation mainly occurred at the plasma membrane, was dependent on Lck and on the surface expression of the TCR. The activation of tyrosine phosphorylation and ERK by TCR ligation at reduced temperature also occurred in human primary T cells. These results support the concept that lipid rafts can form in membranes of live cells and that their coalescence stimulates signalling.

摘要

真核细胞的质膜被推测含有具有独特脂质和蛋白质组成的微结构域,即脂筏。在T细胞中,脂筏成分的交联会触发信号级联反应。我们发现,在低温下,T细胞抗原受体(TCR)和蛋白酪氨酸激酶Lck在Jurkat T细胞的质膜上呈斑块状分布,而在生理温度(37℃)下它们呈连续分布。经Triton X-100提取后,GM1在低温下呈斑块状分布。典型的非脂筏标记物转铁蛋白受体在0℃时在质膜上的分布更连续,且与Lck的分布无关。脂筏分区蛋白的冷诱导聚集伴随着酪氨酸磷酸化增加和ERK激活,在10 - 20℃时达到峰值。在10 - 20℃用抗CD3连接TCR可使酪氨酸磷酸化进一步大幅增加。酪氨酸磷酸化主要发生在质膜上,依赖于Lck和TCR的表面表达。在低温下通过TCR连接激活酪氨酸磷酸化和ERK的现象在人原代T细胞中也会发生。这些结果支持了脂筏可在活细胞膜中形成且其聚结会刺激信号传导的观点。

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