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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Alpha-synuclein expression modulates microglial activation phenotype.
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Alpha-synuclein expression modulates microglial activation phenotype.

机译:α-突触核蛋白的表达调节小胶质细胞激活表型。

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Recent Parkinson's disease research has focused on understanding the function of the cytosolic protein, alpha-synuclein, and its contribution to disease mechanisms. Within neurons, alpha-synuclein is hypothesized to have a role in regulating synaptic plasticity, vesicle release, and trafficking. In contrast, glial-expressed alpha-synuclein remains poorly described. Here, we examine the consequence of a loss of alpha-synuclein expression on microglial activation. Using a postnatal brain-derived culture system, we defined the phenotype of microglia from wild-type and knock-out alpha-synuclein mice (Scna-/-). Scna-/- microglia displayed a basally increased reactive phenotype compared with the wild-type cells and an exacerbated reactive phenotype after stimulation. They also exhibited dramatic morphologic differences compared with wild-type, presenting as large, ramified cells filled with vacuole-like structures. This corresponded with increased protein levels of activation markers, CD68 and beta1 integrin, in the Scna-/- cells. More importantly, Scna-/- microglia, after stimulation, secreted elevated levels of proinflammatory cytokines, TNFalpha (tumor necrosis factor alpha) and IL-6 (interleukin-6), compared with wild type. However, despite the reactive phenotype, Scna-/- cells had impaired phagocytic ability. We demonstrate for the first time that alpha-synuclein plays a critical role in modulating microglial activation state. We suggest that altered microglial alpha-synuclein expression will affect their phenotype as has already been demonstrated in neurons. This has direct ramifications for the contribution of microglia to the pathophysiology of disease, particularly in familial cases linked to altered alpha-synuclein expression.
机译:帕金森氏病的最新研究集中在了解胞质蛋白,α-突触核蛋白的功能及其对疾病机制的贡献。在神经元中,假设α-突触核蛋白在调节突触可塑性,囊泡释放和运输中起作用。相反,神经胶质表达的α-突触核蛋白仍然描述不清。在这里,我们检查了小胶质细胞活化后α-突触核蛋白表达损失的后果。使用出生后的脑源性培养系统,我们定义了野生型和基因敲除的α-突触核蛋白小鼠(Scna-/-)小胶质细胞的表型。与野生型细胞相比,Scna //小胶质细胞显示出基本增加的反应性表型,刺激后表现出加剧的反应性表型。与野生型相比,它们还表现出显着的形态学差异,表现为充满液泡状结构的大型分枝细胞。这与Scna-/-细胞中激活标记CD68和beta1整合素的蛋白质水平升高相对应。更重要的是,与野生型相比,刺激后的Scna-/-小胶质细胞分泌的促炎细胞因子,TNFα(肿瘤坏死因子α)和IL-6(白介素-6)水平升高。然而,尽管有反应性表型,Sna-/-细胞的吞噬能力却受损。我们首次证明α-突触核蛋白在调节小胶质细胞活化状态中起关键作用。我们建议,改变的小神经胶质α-突触核蛋白表达将影响其表型,正如神经元中已经证明的那样。这直接影响了小胶质细胞对疾病病理生理的贡献,特别是在与α-突触核蛋白表达改变有关的家族性病例中。

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