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Nur77 attenuates inflammatory responses and oxidative stress by inhibiting phosphorylated IκB-α in Parkinson’s disease cell model

机译:Nur77通过抑制帕金森病细胞模型中的磷酸化IκB-α减轻炎症反应和氧化应激

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摘要

Neuroinflammation and oxidative stress play key roles in the pathological development of Parkinson’s disease (PD). Nerve growth factor-induced gene B (Nur77) is closely related to dopamine neurotransmission, and its pathogenesis is unclear. This study aims to investigate the role and mechanism of Nur77 in a cell model of Parkinson’s disease. Silencing Nur77 with siRNA can aggravate intracellular LDH release, increase the expression of pro-inflammatory genes (such as tumor necrosis factor α, nuclear factor κB (p65), monocyte chemotactic protein 1, interleukin-6), and decrease cell survival, decrease expression of nuclear factor E2-related factor(Nrf2), heme oxygenase 1, NADPH quinineoxidoreductase-1. Cytosporone B (Nur77 agonist) has the opposite effect to Nur77 silencing. PDTC (NF-κB inhibitor / antioxidant) can also inhibit pro-inflammatory genes to a similar degree as Cytosporone B. Phosphorylated IκB-α can be inhibited by Cytosporone B, while silencing Nur77 can increase the protein expression level of phosphorylated IκB-α. After silencing IκB-α, both Cytosporone B and siNur77 did not affect pro-inflammatory genes and antioxidant stress. These findings reveal the first evidence that Nur77 exerts anti-inflammatory and antioxidant stress effects by inhibiting IκB-α phosphorylation expression in a Parkinson cell model. Nur77 may be a potential therapeutic target for Parkinson’s disease.
机译:神经炎症和氧化应激在帕金森氏病(PD)的病理发展中起关键作用。神经生长因子诱导的基因B(Nur77)与多巴胺神经传递密切相关,其发病机理尚不清楚。这项研究旨在研究Nur77在帕金森氏病细胞模型中的作用和机制。用siRNA沉默Nur77可加剧细胞内LDH的释放,增加促炎基因(如肿瘤坏死因子α,核因子κB(p65),单核细胞趋化蛋白1,白介素6)的表达,并降低细胞存活率,降低表达核因子E2相关因子(Nrf2),血红素加氧酶1,NADPH奎宁氧化还原酶-1。 Cytosporone B(Nur77激动剂)具有与Nur77沉默相反的作用。 PDTC(NF-κB抑制剂/抗氧化剂)还可以抑制促炎基因,其程度与Cytosporone B类似。磷酸化的IκB-α可以被Cysporsone B抑制,而沉默Nur77可以增加磷酸化IκB-α的蛋白表达水平。沉默IκB-α后,Cytosporone B和siNur77均不影响促炎基因和抗氧化应激。这些发现揭示了Nur77通过抑制帕金森细胞模型中IκB-α磷酸化表达发挥抗炎和抗氧化应激作用的第一个证据。 Nur77可能是帕金森氏病的潜在治疗靶标。

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