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Phosphatidylinositol 4-phosphate 5-kinase α activation critically contributes to cd28-dependent signaling responses

机译:磷脂酰肌醇4-磷酸5-激酶α激活对cd28依赖性信号转导至关重要

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摘要

CD28 is one of the most relevant costimulatory receptors that deliver both TCR-dependent and TCR-independent signals regulating a wide range of signaling pathways crucial for cytokine and chemokine gene expressions, T cell survival, and proliferation. Most of the CD28-dependent signaling functions are initiated by the recruitment and activation of class IA PI3Ks, which catalyze the conversion of phosphatidylinositol 4,5-biphosphate (PIP2) into phosphatidylinositol 3,4,5-triphosphate, thus generating the docking sites for key signaling proteins. Hence, PIP2 is a crucial substrate in driving the PI3K downstream signaling pathways, and PIP2 turnover may be an essential regulatory step to ensure the activation of PI3K following CD28 engagement. Despite some data evidence that CD28 augments TCR-induced turnover of PIP2, its direct role in regulating PIP2 metabolism has never been assessed. In this study, we show that CD28 regulates PIP2 turnover by recruiting and activating phosphatidylinositol 4-phosphate 5-kinases alpha (PIP5K alpha) in human primary CD4(+) T lymphocytes. This event leads to the neosynthesis of PIP2 and to its consumption by CD28-activated PI3K. We also evidenced that PIP5K alpha activation is required for both CD28 unique signals regulating IL-8 gene expression as well as for CD28/TCR-induced Ca2+ mobilization, NF-AT nuclear translocation, and IL-2 gene transcription. Our findings elucidate a novel mechanism that involves PIP5Ka as a key modulator of CD28 costimulatory signals.
机译:CD28是最相关的共刺激受体之一,可传递TCR依赖性和TCR依赖性信号,从而调节多种信号通路,这些信号通路对于细胞因子和趋化因子基因的表达,T细胞存活和增殖至关重要。大多数CD28依赖的信号传导功能是通过IA类PI3K的募集和激活来启动的,该类催化剂催化磷脂酰肌醇4,5-双磷酸酯(PIP2)转化为磷脂酰肌醇3,4,5-三磷酸酯,从而产生了对接位点关键信号蛋白。因此,PIP2是驱动PI3K下游信号通路的关键底物,PIP2转换可能是确保CD28参与后PI3K激活的重要调控步骤。尽管有一些数据证据表明CD28增强了TCR诱导的PIP2转换,但其在调节PIP2代谢中的直接作用尚未得到评估。在这项研究中,我们表明CD28通过募集和激活人原发性CD4(+)T淋巴细胞中的磷脂酰肌醇4-磷酸5激酶α(PIP5K alpha)来调节PIP2的转换。此事件导致PIP2的新合成,并被CD28激活的PI3K消耗。我们还证明,调节IL-8基因表达的CD28独特信号以及CD28 / TCR诱导的Ca2 +动员,NF-AT核易位和IL-2基因转录均需要PIP5K alpha激活。我们的发现阐明了一种新机制,其中涉及PIP5Ka作为CD28共刺激信号的关键调节剂。

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