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Diacylglycerol-dependent binding recruits PKC theta and RasGRP1 C1 domains to specific subcellular localizations in living T lymphocytes

机译:二酰基甘油依赖性结合将PKC theta和RasGRP1 C1域募集到活T淋巴细胞中的特定亚细胞定位

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摘要

Diacylglycerol (DAG) signaling relies on the presence of conserved. domain 1 (Cl) in its target proteins. Phospholipase C-dependent generation of DAG after T cell receptor (TCR) triggering is essential for the correct immune response onset. Accordingly, two Cl-containing proteins expressed in T lymphocytes, Ras guanyl nucleotide-releasing protein1 (Ras-GRP1) and protein kinase CO (PKCtheta), were shown to be fundamental for T-cell activation and proliferation. Although containing the same regulatory domain, they are proposed to relocate to distinct subcellular locations in response to TCR triggering. Here we studied intracellular localization of RasGRP1 and PKCtheta C1 domains in living Jurkat T cells. The results demonstrate that, in the absence of significant primary sequence differences, the C1 domains of these proteins show specific localization within the cell and distinct responses to pharmacological stimulation and TCR triggering. These differences help explain the divergent localization and distinct functional roles of the full-length proteins, which contains them. The properties of these DAG-binding modules allow their characterization as functional markers that discriminate between DAG pools. Finally, we show that by binding to different diacylglycerol forms, overexpression of distinct C1 modules can attenuate DAG-dependent signals originating from the plasma or internal membranes. This is shown by analyzing the contribution of these two lipid pools to PLC-dependent Ras activation in response to TCR triggering.
机译:二酰基甘油(DAG)信号传导依赖于保守的存在。靶蛋白中的结构域1(Cl)。 T细胞受体(TCR)触发后,磷脂酶C依赖的DAG生成对于正确的免疫反应发作至关重要。因此,在T淋巴细胞中表达的两种含Cl蛋白,Ras鸟苷酸核苷酸释放蛋白1(Ras-GRP1)和蛋白激酶CO(PKCtheta),被证明是T细胞活化和增殖的基础。尽管它们包含相同的调节域,但它们被提议响应TCR触发而重新定位到不同的亚细胞位置。在这里,我们研究了活的Jurkat T细胞中RasGRP1和PKCtheta C1域的细胞内定位。结果表明,在没有明显的一级序列差异的情况下,这些蛋白质的C1域在细胞内显示出特定的定位,并且对药理刺激和TCR触发具有不同的响应。这些差异有助于解释包含它们的全长蛋白质的不同定位和独特的功能作用。这些DAG绑定模块的属性允许将它们表征为区分DAG池的功能标记。最后,我们表明通过结合不同的二酰基甘油形式,不同C1模块的过表达可以减弱源自血浆或内膜的DAG依赖性信号。通过分析这两个脂质池对响应TCR触发的PLC依赖性Ras激活的贡献,可以证明这一点。

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