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Extended JAK Activation and Delayed STAT1 Dephosphorylation Contribute to the Distinct Signaling Profile of CNS Neurons Exposed to Interferon-Gamma

机译:扩展的Jak激活和延迟的STAT1脱磷酸化有助于暴露于干扰素-γ的CNS神经元的不同信号谱

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摘要

Although interferon-gamma (IFN-γ) plays a critical role in the noncytolytic elimination of many neurotropic viral infections, the signaling response to this cytokine has not been extensively characterized in primary CNS neurons. We previously demonstrated that the IFN-γ response at the signaling and gene expression levels is temporally extended in primary mouse hippocampal neurons, as compared to the transient response of primary mouse embryonic fibroblasts (MEF). We hypothesize that the protracted kinetics of STAT1 phosphorylation in IFN-γ-treated neurons are due to extended receptor activation and/or delayed STAT1 dephosphorylation in the nucleus. Here, we show that in response to IFN-γ, the Janus kinases (JAK1/JAK2) associated with the neuronal IFN-γ receptor complex remain active for an extended period as compared to MEF. Experimental inactivation of JAK1/JAK2 in neurons after IFN-γ treatment did not reverse the extended STAT1 phosphorylation phenotype. These results suggest that the extended kinetics of neuronal IFN-γ signaling are a product of distinct negative feedback mechanisms operating at both the receptor and within the nucleus.
机译:尽管干扰素-γ(IFN-γ)在非细胞溶解性消除许多神经嗜性病毒感染中起着关键作用,但在原发性CNS神经元中尚未广泛表征对该细胞因子的信号应答。我们先前证明,与原代小鼠胚胎成纤维细胞(MEF)的瞬时反应相比,原代小鼠海马神经元在信号传导和基因表达水平上的IFN-γ反应在时间上有所扩展。我们假设在IFN-γ处理的神经元中STAT1磷酸化的动力学延长是由于细胞核中的受体激活延长和/或STAT1去磷酸化延迟。在这里,我们表明,与MEF相比,对IFN-γ的响应,与神经元IFN-γ受体复合物相关的Janus激酶(JAK1 / JAK2)仍保持活性。 IFN-γ处理后神经元中JAK1 / JAK2的实验失活并未逆转STAT1磷酸化扩展表型。这些结果表明,神经元IFN-γ信号传导的扩展动力学是在受体和细胞核内均起作用的不同负反馈机制的产物。

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