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G alpha i2 和 ZAP-70 介导 RasGRP1 膜定位和 SDF-1 诱导的 T 细胞功能激活。

G alpha i2 and ZAP-70 mediate RasGRP1 membrane localization and activation of SDF-1-induced T cell functions.

机构信息

Department of Immunology, Mayo Clinic College of Medicine, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

J Immunol. 2011 Sep 15;187(6):3177-85. doi: 10.4049/jimmunol.1100206. Epub 2011 Aug 19.

Abstract

RasGRP1, a Ras guanine-nucleotide exchange factor, critically mediates T cell development and function and controls immunodeficiency and autoimmunity. In this study, we describe a unique mechanism of mobilization and activation of RasGRP1 in response to SDF-1, a chemokine that signals via the G protein-coupled receptor CXCR4. Depletion of RasGRP1 impaired SDF-1-stimulated human T cell migration, expression of the activation marker CD69, and activation of the ERK MAPK pathway, indicating that RasGRP1 mediates SDF-1 functions. SDF-1 treatment caused RasGRP1 to localize to the plasma membrane to activate K-Ras and to the Golgi to activate N-Ras. These events were required for cellular migration and for ERK activation that mediates downstream transcriptional events in response to SDF-1. SDF-1-dependent localization of RasGRP1 did not require its diacylglycerol-binding domain, even though diacyglycerol was previously shown to mediate localization of RasGRP1 in response to Ag stimulation. This domain was, however, required for activity of RasGRP1 after its localization. Intriguingly, SDF-1 treatment of T cells induced the formation of a novel molecular signaling complex containing RasGRP1, Gαi2, and ZAP-70. Moreover, SDF-1-mediated signaling by both Gi proteins and ZAP-70 was required for RasGRP1 mobilization. In addition, RasGRP1 mobilization and activation in response to SDF-1 was dependent on TCR expression, suggesting that CXCR4 heterodimerizes with the TCR to couple to ZAP-70 and mobilize RasGRP1. These results increase understanding of the molecular mechanisms that mediate SDF-1 effects on T cells and reveal a novel mechanism of RasGRP1 regulation. Other G protein-coupled receptors may similarly contribute to regulation of RasGRP1.

摘要

RasGRP1 是一种 Ras 鸟嘌呤核苷酸交换因子,它在 T 细胞发育和功能中起着关键作用,并控制着免疫缺陷和自身免疫。在这项研究中,我们描述了 RasGRP1 响应趋化因子 SDF-1 而被动员和激活的一种独特机制,SDF-1 通过 G 蛋白偶联受体 CXCR4 发出信号。RasGRP1 的耗竭会损害 SDF-1 刺激的人类 T 细胞迁移、激活标志物 CD69 的表达以及 ERK MAPK 途径的激活,表明 RasGRP1 介导了 SDF-1 的功能。SDF-1 处理导致 RasGRP1 定位到质膜以激活 K-Ras,定位到高尔基体以激活 N-Ras。这些事件是细胞迁移和 ERK 激活所必需的,ERK 激活介导了 SDF-1 响应下游的转录事件。SDF-1 依赖性 RasGRP1 定位不需要其二酰基甘油结合域,尽管以前已经表明二酰基甘油介导了 RasGRP1 在对 Ag 刺激的响应中的定位。然而,该结构域是 RasGRP1 定位后的活性所必需的。有趣的是,SDF-1 处理 T 细胞会诱导形成一种包含 RasGRP1、Gαi2 和 ZAP-70 的新型分子信号复合物。此外,Gi 蛋白和 ZAP-70 的 SDF-1 介导的信号都需要 RasGRP1 的动员。此外,RasGRP1 对 SDF-1 的响应的动员和激活依赖于 TCR 的表达,这表明 CXCR4 与 TCR 异二聚化以与 ZAP-70 偶联并动员 RasGRP1。这些结果增加了对 SDF-1 对 T 细胞影响的分子机制的理解,并揭示了 RasGRP1 调节的一种新机制。其他 G 蛋白偶联受体可能同样有助于 RasGRP1 的调节。

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