首页> 美国卫生研究院文献>Cells >Tumor Necrosis Factor-Like Weak Inducer of Apoptosis (TWEAK) Enhances Activation of STAT3/NLRC4 Inflammasome Signaling Axis through PKCδ in Astrocytes: Implications for Parkinson’s Disease
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Tumor Necrosis Factor-Like Weak Inducer of Apoptosis (TWEAK) Enhances Activation of STAT3/NLRC4 Inflammasome Signaling Axis through PKCδ in Astrocytes: Implications for Parkinson’s Disease

机译:肿瘤坏死因子的细胞凋亡弱诱导剂(调整)增强了通过星形胶质细胞的PKCδ激活STAT3 / NLRC4炎性信号轴的激活:对帕金森病的影响

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摘要

Astrocytic dysfunction has been implicated in Parkinson’s disease (PD) pathogenesis. While the Tumor necrosis factor-like weak inducer of apoptosis (TWEAK)/Fn14 signaling axis is known to play a role in PD-like neuropathology, the molecular mechanisms that govern this process remain poorly understood. Herein, we show that TWEAK levels are elevated in PD serum compared to controls. Moreover, using both U373 human astrocyte cells and primary mouse astrocytes, we demonstrate that TWEAK induces mitochondrial oxidative stress as well as protein kinase C delta (PKCδ) and signal transducer and activator of transcription 3 (STAT3) activation, accompanied by NLRC4 inflammasome activation and upregulation and release of proinflammatory cytokines, including IL-1β, TNF-α, and IL-18. Mechanistically, TWEAK-induced PKCδ activation enhances the STAT3/NLRC4 signaling pathway and other proinflammatory mediators through a mitochondrial oxidative stress-dependent mechanism. We further show that PKCδ knockdown and mito-apocynin, a mitochondrial antioxidant, suppress TWEAK-induced proinflammatory NLRC4/STAT3 signaling and cellular oxidative stress response. Notably, we validated our in vitro findings in an MPTP mouse model of PD and in mice receiving intrastriatal administration of TWEAK. These results indicate that TWEAK is a key regulator of astroglial reactivity and illustrate a novel mechanism by which mitochondrial oxidative stress may influence dopaminergic neuronal survival in PD.
机译:星形胶质功能障碍涉及帕金森病(PD)发病机制。虽然已知肿瘤坏死因子样弱诱导剂(调整)/ Fn14信号轴的弱诱导剂,但在Pd样神经病理学中发挥作用,但管理该过程的分子机制仍然明白。在此,与对照相比,我们表明PD血清中的调整水平升高。此外,使用U373人的星形胶质细胞和原发性小鼠星形胶质细胞,我们证明了调整诱导线粒体氧化应力以及蛋白激酶Cδ(PKCδ)和转录3(STAT3)活化的信号传感器和激活剂,伴随着NLRC4炎症组和活化上调和释放促炎细胞因子,包括IL-1β,TNF-α和IL-18。机械地,调整诱导的PKCδ活化通过线粒体氧化应激依赖性机制增强STAT3 / NLRC4信号通路和其他促炎介质。我们进一步表明,PKCδ敲低和MITO-Apocynin,一种线粒体抗氧化剂,抑制了调节诱导的促炎NLRC4 / Stat3信号传导和细胞氧化应激反应。值得注意的是,我们在PD的MPTP小鼠模型和接受脑部核球上的小鼠中验证了我们的体外发现。这些结果表明,调整是星形痛反应性的关键调节因子,并说明线粒体氧化应激可能影响PD中的多巴胺能神经元存活的新机制。

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