Genzyme Corporation, Framingham, Massachusetts 01701-9322, USA.
J Biol Chem. 2011 Apr 29;286(17):14787-94. doi: 10.1074/jbc.M111.218610. Epub 2011 Mar 14.
Lipid rafts reportedly have a role in coalescing key signaling molecules into the immunological synapse during T cell activation, thereby modulating T cell receptor (TCR) signaling activity. Recent findings suggest that a correlation may exist between increased levels of glycosphingolipids (GSLs) in the lipid rafts of T cells and a heightened response of those T cells toward activation. Here, we show that lowering the levels of GSLs in CD4(+) T cells using a potent inhibitor of glucosylceramide synthase (Genz-122346) led to a moderation of the T cell response toward activation. TCR proximal signaling events, such as phosphorylation of Lck, Zap70 and LAT, as well as early Ca(2+) mobilization, were attenuated by treatment with Genz-122346. Concomitant with these events were significant reductions in IL-2 production and T cell proliferation. Similar findings were obtained with CD4(+) T cells isolated from transgenic mice genetically deficient in GM3 synthase activity. Interestingly, lowering the GSL levels in CD4(+) T cells by either pharmacological inhibition or disruption of the gene for GM3 synthase also specifically inhibited the differentiation of T cells to the Th(17) lineage but not to other Th subsets in vitro. Taken together with the recently reported effects of Raftlin deficiency on Th(17) differentiation, these results strongly suggest that altering the GSL composition of lipid rafts modulates TCR signaling activity and affects Th(17) differentiation.
据报道,脂质筏在 T 细胞活化过程中将关键信号分子凝聚到免疫突触中起作用,从而调节 T 细胞受体 (TCR) 信号活性。最近的研究结果表明,T 细胞脂质筏中糖脂 (GSL) 水平的升高与这些 T 细胞对激活的反应性增强之间可能存在相关性。在这里,我们表明,使用葡萄糖神经酰胺合酶 (Genz-122346) 的强效抑制剂降低 CD4(+) T 细胞中的 GSL 水平,可调节 T 细胞对激活的反应。TCR 近端信号事件,如 Lck、Zap70 和 LAT 的磷酸化以及早期 Ca(2+) 动员,通过 Genz-122346 处理而减弱。伴随着这些事件,IL-2 产生和 T 细胞增殖显著减少。用 GM3 合酶活性基因缺失的转基因小鼠分离的 CD4(+) T 细胞也获得了类似的发现。有趣的是,通过药理学抑制或 GM3 合酶基因的破坏降低 CD4(+) T 细胞中的 GSL 水平也特异性地抑制了 T 细胞向 Th(17)谱系的分化,但在体外不会向其他 Th 亚群分化。与最近报道的 Raftlin 缺乏对 Th(17)分化的影响相结合,这些结果强烈表明改变脂质筏的 GSL 组成可调节 TCR 信号活性并影响 Th(17)分化。