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首页> 外文期刊>The journal of immunology >TCR-Induced Activation of Ras Proceeds at the Plasma Membrane and Requires Palmitoylation of N-Ras
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TCR-Induced Activation of Ras Proceeds at the Plasma Membrane and Requires Palmitoylation of N-Ras

机译:TCR诱导的Ras激活在血浆膜上进行,需要N-Ras的棕榈酰化。

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Ras transmits manifold signals from the TCR at various crossroads in the life of a T cell. For example, selection programs in the thymus or the acquisition of a state of hypo-responsiveness known as anergy are just some of the T cell features known to be controlled by TCR-sparked signals that are intracellularly propagated by Ras. These findings raise the question of how Ras can transmit such a variety of signals leading to the shaping of equally many T cell traits. Because Ras proteins transit through endomembrane compartments on their way to the plasma membrane (PM), compartmentalized Ras activation at distinct subcellular sites represents a potential mechanism for signal diversification in TCR signaling. This hypothesis has been nurtured by studies in T cells engineered to overexpress Ras that reported distinct activation of Ras at the PM and Golgi. Contrary to this scenario, we report in this study that activation of endogenous Ras, imaged in live Jurkat T cells using novel affinity probes for Ras-GTP, proceeds only at the PM even upon enforced signal flux through the diacylglycerol/RasGRP1 pathway. Physiological engagement of the TCR at the immunological synapse in primary T cells caused focalized Ras-GTP accumulation also only at the PM. Analysis of palmitoylation-deficient Ras mutants, which are confined to endomembranes, confirmed that the TCR does not activate Ras in that compartment and revealed a critical function for palmitoylation in N-Ras/H-Ras activation. These findings identify the PM as the only site of TCR-driven Ras activation and document that endomembranes are not a signaling platform for Ras in T cells.
机译:Ras在T细胞生命周期的各个十字路口传输来自TCR的多种信号。例如,胸腺中的选择程序或称为无反应的低反应状态的获得只是已知由受Ras细胞内传播的TCR火花信号控制的一些T细胞特征。这些发现提出了一个问题,即Ras如何能够传输导致各种各样的T细胞性状成形的各种信号。由于Ras蛋白在穿过质膜(PM)的过程中穿过膜内区室,因此在不同的亚细胞位点进行区室化的Ras激活代表了TCR信号中信号多样化的潜在机制。通过在过表达Ras的工程改造T细胞中进行的研究,证实了这一假设,该研究报道了PM和高尔基体上Ras的明显活化。与这种情况相反,我们在这项研究中报告说,即使是通过二酰基甘油/ RasGRP1信号的强制信号通量,使用新颖的Ras-GTP亲和探针在活Jurkat T细胞中成像的内源性Ras的激活也仅在PM处进行。 TCR在原代T细胞中的免疫突触上的生理参与也导致集中的Ras-GTP积累也仅在PM处。仅限于子宫内膜的棕榈酰化缺陷型Ras突变体的分析证实,TCR不会激活该区室中的Ras,并且揭示了N-Ras / H-Ras激活中棕榈酰化的关键功能。这些发现确定PM是TCR驱动的Ras激活的唯一位点,并证明内膜不是T细胞中Ras的信号传导平台。

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