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Decreased Diacylglycerol Metabolism Enhances ERK Activation and Augments CD8+ T Cell Functional Responses*

机译:减少的二酰基甘油代谢可增强ERK激活并增强CD8 + T细胞功能反应*

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摘要

Modulation of T cell receptor signal transduction in CD8+ T cells represents a novel strategy toward enhancing the immune response to tumor. Recently, levels of guanine exchange factors, RasGRP and SOS, within T cells have been shown to represent a key determinant in the regulation of the analog to the digital activation threshold of Ras. One important for regulating activation levels of RasGRP is diacylglycerol (DAG), and its levels are influenced by diacylglycerol kinase-ζ (DGKζ), which metabolizes DAG into phosphatidic acid, terminating DAG-mediated Ras signaling. We sought to determine whether DGKζ-deficient CD8+ T cells demonstrated enhanced in vitro responses in a manner predicted by the current model of Ras activation and to evaluate whether targeting this threshold confers enhanced CD8+ T cell responsiveness to tumor. We observed that DGKζ-deficient CD8+ T cells conform to most predictions of the current model of how RasGRP levels influence Ras activation. But our results differ in that the EC50 value of stimulation is not altered for any T cell receptor stimulus, a finding that suggests a further degree of complexity to how DGKζ deficiency affects signals important for Ras and ERK activation. Additionally, we found that DGKζ-deficient CD8+ T cells demonstrate enhanced responsiveness in a subcutaneous lymphoma model, implicating the analog to a digital conversion threshold as a novel target for potential therapeutic manipulation.
机译:CD8 + T细胞中T细胞受体信号转导的调节代表了一种增强对肿瘤免疫应答的新策略。近来,已显示T细胞内鸟嘌呤交换因子,RasGRP和SOS的水平代表了调节从Ras到数字激活阈值的类似物的关键决定因素。调节RasGRP活化水平的重要因素之一是二酰基甘油(DAG),其水平受二酰基甘油激酶-ζ(DGKζ)的影响,后者将DAG代谢成磷脂酸,从而终止DAG介导的Ras信号传导。我们试图确定DGKζ缺陷型CD8 + T细胞是否以Ras激活的当前模型预测的方式表现出增强的体外反应,并评估靶向该阈值是否赋予增强的CD8 + T细胞对肿瘤的反应性。我们观察到,缺乏DGKζ的CD8 + T细胞符合当前模型对RasGRP水平如何影响Ras激活的大多数预测。但是我们的结果不同之处在于,对于任何T细胞受体刺激,刺激的EC50值均未改变,这一发现表明DGKζ缺乏如何影响对Ras和ERK激活很重要的信号的复杂程度更高。此外,我们发现DGKζ缺陷型CD8 + T细胞在皮下淋巴瘤模型中表现出增强的反应性,将类似物转化为数字转化阈值作为潜在治疗手段的新靶标。

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