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首页> 外文期刊>Nature reviews neuroscience >Proteomic analysis of the effect of the polyphenol pentagalloyl glucose on proteins involved in neurodegenerative diseases in activated BV-2 microglial cells
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Proteomic analysis of the effect of the polyphenol pentagalloyl glucose on proteins involved in neurodegenerative diseases in activated BV-2 microglial cells

机译:多酚戊酰葡萄酰葡萄糖对活化BV-2微胶质细胞神经变性疾病蛋白质蛋白质的蛋白质组学分析

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Neuroinflammation and microglial activation are two important hallmarks of neurodegenerative diseases. Continuous microglial activation may cause the release of several cytotoxic molecules, including many cytokines that are involved in the inflammatory process. Therefore, attenuating inflammation caused by activated microglia may be an approach for the therapeutic management of neurodegenerative diseases. In addition, many studies have reported that polyphenol pentagalloyl glucose (1,2,3,4,6-penta-O-galloyl-beta-D-glucose; PGG) is a molecule with potent anti-inflammatory effects, such as inhibiting the release of proinflammatory cytokines. Our previous studies revealed that PGG attenuated the expression of two inflammatory cytokines (murine monocyte chemoattractant protein-5 and pro-metalloproteinase-9) in lipopolysaccharide/interferon gamma-activated BV-? microglial cells. Additionally, PGG modulated the NF-kappa B and MAPK signaling pathways by altering genes and proteins, which may affect the MAPK cascade and NF-kappa B activation. The aim of the present study was to investigate the ability of PGG to modulate the expression of proteins released in activated BV-2 microglial cells, which may be involved in the pathological process of inflammation and neurodegeneration. Proteomic analysis of activated BV-2 cells identified 17 proteins whose expression levels were significantly downregulated by PGG, including septin-7, ataxin-2, and adenylosuccinate synthetase isozyme 2 (ADSS). These proteins were previously described as being highly expressed in neurodegenerative diseases and/or involved in the signaling pathways associated with the formation and growth of neuronal connections and the control of Alzheimer's disease pathogenesis. The inhibitory effect of PGG on ataxin-2, septin-7 and ADSS was further confirmed at the protein and transcriptional levels. Therefore, the obtained results suggest that PGG, with its potent inhibitory effects on ataxin-2, septin-7 and ADSS, may have potential use in the therapeutic management of neurodegenerative diseases.
机译:神经引发和微胶质激活是神经变性疾病的两个重要标志。连续的微胶质激活可能导致若干细胞毒性分子的释放,包括涉及炎症过程的许多细胞因子。因此,衰减由活性的微胶质细胞引起的炎症可能是神经变性疾病治疗管理的方法。此外,许多研究报道了多酚戊酰酰葡萄糖(1,2,3,4,4,6-庚酰基-Geta-β-D-葡萄糖; PGG)是具有效力抗炎作用的分子,例如抑制释放促炎细胞因子。我们以前的研究表明,PGG在脂多糖/干扰素γ-活化的BV-中抑制了两种炎症细胞因子(鼠单核细胞化学蛋白-5和Pro-Metallothinease-9)的表达。小胶质细胞。另外,PGG通过改变基因和蛋白质来调节NF-Kappa B和MAPK信号传导途径,这可能影响MAPK级联和NF-Kappa B激活。本研究的目的是探讨PGG调节在活化的BV-2微胶质细胞中释放的蛋白质表达的能力,这可能参与炎症和神经变性的病理过程。活化BV-2细胞的蛋白质组学分析鉴定了17种蛋白质,其表达水平通过PGG显着下调,包括钠霉素-7,阿瓦序-2和腺苷合成酶同工酶2(ADS)。这些蛋白质先前被描述为在神经变性疾病中高度表达和/或参与与神经元连接的形成和生长相关的信号传导途径和阿尔茨海默病病理发生的控制。 PGG在蛋白酶和转录水平的情况下进一步证实了PGG对ataxin-2,钠肽-7和ADS的抑制作用。因此,所得结果表明,PGG,其对Ataxin-2,Sepin-7和Adss的有效抑制作用可能具有在神经变性疾病的治疗管理中具有潜在用途。

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