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Primary Murine CD4+ T Cells Fail to Acquire the Ability to Produce Effector Cytokines When Active Ras Is Present during Th1/Th2 Differentiation

机译:当Th1 / Th2分化过程中存在活跃的Ras时原发性鼠CD4 + T细胞无法获得产生效应细胞因子的能力。

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摘要

Constitutive Ras signaling has been shown to augment IL-2 production, reverse anergy, and functionally replace many aspects of CD28 co-stimulation in CD4+ T cells. These data raise the possibility that introduction of active Ras into primary T cells might result in improved functionality in pathologic situations of T cell dysfunction, such as cancer or chronic viral infection. To test the biologic effects of active Ras in primary T cells, CD4+ T cells from Coxsackie-Adenovirus Receptor Transgenic mice were transduced with an adenovirus encoding active Ras. As expected, active Ras augmented IL-2 production in naive CD4+ T cells. However, when cells were cultured for 4 days under conditions to promote effector cell differentiation, active Ras inhibited the ability of CD4+ T cells to acquire a Th1 or Th2 effector cytokine profile. This differentiation defect was not due to deficient STAT4 or STAT6 activation by IL-12 or IL-4, respectively, nor was it associated with deficient induction of T-bet and GATA-3 expression. Impaired effector cytokine production in active Ras-transduced cells was associated with deficient demethylation of the IL-4 gene locus. Our results indicate that, despite augmenting acute activation of naïve T cells, constitutive Ras signaling inhibits the ability of CD4+ T cells to properly differentiate into Th1/Th2 effector cytokine-producing cells, in part by interfering with epigenetic modification of effector gene loci. Alternative strategies to potentiate Ras pathway signaling in T cells in a more regulated fashion should be considered as a therapeutic approach to improve immune responses in vivo.
机译:研究表明,组成性Ras信号传导可增加IL-2的产生,逆转无能,并在功能上替代CD4 + T细胞中CD28共刺激的许多方面。这些数据增加了在原代T细胞中引入活性Ras可能导致在T细胞功能异常的病理情况下改善功能的可能性,例如癌症或慢性病毒感染。为了测试活性Ras在原代T细胞中的生物学作用,用编码活性Ras的腺病毒转导了来自柯萨奇-腺病毒受体转基因小鼠的CD4 + T细胞。不出所料,活性Ras增强了天然CD4 + T细胞中IL-2的产生。然而,当细胞在促进效应细胞分化的条件下培养4天时,活性Ras抑制了CD4 + T细胞获得Th1或Th2效应细胞因子谱的能力。这种分化缺陷不是由于分别由IL-12或IL-4引起的STAT4或STAT6激活不足,也不与T-bet和GATA-3表达的诱导不足有关。活性Ras转导的细胞中效应细胞因子的产生受损与IL-4基因位点的去甲基化不足有关。我们的结果表明,尽管Ras信号增强了幼稚T细胞的急性激活,但它抑制了CD4 + T细胞正确分化为Th1 / Th2效应细胞因子产生细胞的能力,部分是通过干扰效应基因基因座的表观遗传修饰。以更受调节的方式增强T细胞中Ras途径信号转导的替代策略应被视为改善体内免疫反应的治疗方法。

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