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Complement Protein C1q-Mediated Neuroprotection Is Correlated with Regulation of Neuronal Gene and MicroRNA Expression

机译:补体蛋白C1q介导的神经保护作用与神经元基因和MicroRNA表达的调节有关。

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摘要

Activation of the complement cascade, a powerful effector mechanism of the innate immune system, is associated with neuroinflammation but also with elimination of inappropriate synapses during development. Synthesis of C1q, a recognition component of the complement system, occurs in brain during ischemia/reperfusion and Alzheimer's disease, suggesting that C1q may be a response to injury. In vitro, C1q, in the absence of other complement proteins, improves neuronal viability and neurite outgrowth and prevents β-amyloid-induced neuronal death, suggesting that C1q may have a direct neuroprotective role. Here, investigating the molecular basis for this neuroprotection in vitro, addition of C1q to rat primary cortical neurons significantly upregulated expression of genes associated with cholesterol metabolism, such as cholesterol-25-hydroxylase and insulin induced gene 2, and transiently decreased cholesterol levels in neurons, known to facilitate neurite outgrowth. In addition, the expression of syntaxin-3 and its functional association with synaptosomal-associated protein 25 was increased. C1q also increased the nuclear translocation of cAMP response element-binding protein and CCAAT/enhancer-binding protein-δ (C/EBP-δ), two transcription factors involved in nerve growth factor (NGF) expression and downregulated specific microRNAs, including let-7c that is predicted to target (and thus inhibit) NGF and neurotrophin-3 (NT-3) mRNA. Accordingly, C1q increased expression of NGF and NT-3, and small interfering RNA inhibition of C/EBP-δ, NGF, or NT-3 expression prevented the C1q-dependent neurite outgrowth. No such neuroprotective effect is seen in the presence of C3a or C5a. Finally, the induced neuronal gene expression required conformationally intact C1q. These results show that C1q can directly promote neuronal survival, thereby demonstrating new interactions between immune proteins and neuronal cells that may facilitate neuroprotection.
机译:补体级联反应是先天免疫系统的强大效应器机制,其激活与神经炎症有关,但也与发育过程中不适当的突触消除有关。补体系统的识别成分C1q的合成发生在缺血/再灌注和阿尔茨海默氏病期间的大脑中,表明C1q可能是对损伤的反应。在体外,在没有其他补体蛋白的情况下,C1q可改善神经元生存力和神经突生长,并防止β淀粉样蛋白诱导的神经元死亡,这表明C1q可能具有直接的神经保护作用。在这里,研究这种神经保护作用的分子基础,在大鼠原代皮层神经元中添加C1q可显着上调与胆固醇代谢相关的基因的表达,例如胆固醇25-羟化酶和胰岛素诱导的基因2,并瞬时降低神经元中的胆固醇水平,有助于神经突生长。此外,syntaxin-3的表达及其与突触体相关蛋白25的功能性连接增加了。 C1q还增加了cAMP反应元件结合蛋白和CCAAT /增强子结合蛋白δ(C /EBP-δ)的核易位,这是神经生长因子(NGF)表达中涉及的两个转录因子,并且下调了特定的microRNA,包括let-预计可靶向(从而抑制)NGF和Neurotrophin-3(NT-3)mRNA的7c。因此,C1q增加了NGF和NT-3的表达,而对C /EBP-δ,NGF或NT-3表达的小干扰RNA抑制阻止了C1q依赖性神经突的长出。在C3a或C5a的存在下没有观察到这种神经保护作用。最后,诱导的神经元基因表达需要构象完整的C1q。这些结果表明,C1q可以直接促进神经元的存活,从而证明免疫蛋白与神经元细胞之间的新相互作用可以促进神经保护作用。

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