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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Pak2 Controls Acquisition of NKT Cell Fate by Regulating Expression of the Transcription Factors PLZF and Egr2
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Pak2 Controls Acquisition of NKT Cell Fate by Regulating Expression of the Transcription Factors PLZF and Egr2

机译:Pak2通过调节转录因子PLZF和Egr2的表达来控制NKT细胞命运的获取。

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摘要

NKT cells constitute a small population of T cells developed in the thymus that produce large amounts of cytokines and chemokines in response to lipid Ags. Signaling through the Va14-Ja18 TCR instructs commitment to the NKT cell lineage, but the precise signaling mechanisms that instruct their lineage choice are unclear. In this article, we report that the cytoskeletal remodeling protein, p21-activated kinase 2 (Pak2), was essential for NKT cell development. Loss of Pak2 in T cells reduced stage III NKT cells in the thymus and periphery. Among different NKT cell subsets, Pak2 was necessary for the generation and function of NKT1 and NKT2 cells, but not NKT17 cells. Mechanistically, expression of Egr2 and promyelocytic leukemia zinc finger (PLZF), two key transcription factors for acquiring the NKT cell fate, were markedly diminished in the absence of Pak2. Diminished expression of Egr2 and PLZF were not caused by aberrant TCR signaling, as determined using a Nur77-GFP reporter, but were likely due to impaired induction and maintenance of signaling lymphocyte activation molecule 6 expression, a TCR costimulatory receptor required for NKT cell development. These data suggest that Pak2 controls thymic NKT cell development by providing a signal that links Egr2 to induce PLZF, in part by regulating signaling lymphocyte activation molecule 6 expression.
机译:NKT细胞构成了在胸腺中发育的一小部分T细胞,它们对脂质Ags产生大量的细胞因子和趋化因子。通过Va14-Ja18 TCR发出的信号指示对NKT细胞谱系的承诺,但尚不清楚指示其谱系选择的精确信号传导机制。在本文中,我们报告说,细胞骨架重塑蛋白p21激活的激酶2(Pak2)对于NKT细胞发育至关重要。 T细胞中Pak2的丢失减少了胸腺和外周的III期NKT细胞。在不同的NKT细胞子集中,Pak2对于NKT1和NKT2细胞的生成和功能是必需的,但对于NKT17细胞不是必需的。从机制上讲,在缺乏Pak2的情况下,Egr2和早幼粒细胞白血病锌指(PLZF)(获得NKT细胞命运的两个关键转录因子)的表达明显降低。 Egr2和PLZF的表达减少不是由Nur77-GFP报告基因检测到的异常TCR信号传导引起的,而是可能是由于信号传导的淋巴细胞活化分子6表达(NKT细胞发育所需的TCR共刺激受体)的诱导和维持能力受损所致。这些数据表明,Pak2通过提供连接Egr2诱导PLZF的信号来控制胸腺NKT细胞的发育,部分是通过调节信号传导的淋巴细胞激活分子6的表达来实现的。

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