首页> 外文期刊>Molecular Neurobiology >Alpha-synuclein is involved in manganese-induced ER stress via PERK signal pathway in organotypic brain slice cultures
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Alpha-synuclein is involved in manganese-induced ER stress via PERK signal pathway in organotypic brain slice cultures

机译:α-突触核蛋白通过有机型脑切片培养物中的PERK信号途径参与锰诱导的ER应激

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摘要

Overexposure to manganese (Mn) has been known to induce neuronal damage involving endoplasmic reticulum (ER) stress. However, the exact mechanism of Mn-induced ER stress is unclear. Increasing evidence suggested that the overexpression of alpha-synuclein played a critical role in Mn-induced neurotoxicity. To explore whether the occurrence of ER stress was associated with alpha-synuclein overexpression, we made the rat brain slices model of silencing alpha-synuclein using short-interference RNA. After non-silencing alpha-synuclein slices were treated with Mn (0-400 μM) for 24 h, there was a dose-dependent increase in apoptotic rates of cells and levels of lactate dehydrogenase in the culture medium. Moreover, there was a dose-dependent increase in the protein expression of 78, 94-kDa glucose-regulated protein (GRP78/94), C/EBP homologous protein (CHOP), and caspase-12. Moreover, PKR-like ER kinase (PERK) phosphorylation, PERK-mediated phosphorylation of eIF2a, and ATF4 expression also increased. Inositol-requiring enzyme 1 (IRE1) activation and X-box-binding protein-1 (Xbp1) mRNA splicing increased. Activating transcription factor 6 p90 levels did not change. However, after silencing alpha-synuclein slices were treated with 400 μM Mn for 24 h, there was a significant decrease in the expression of GRP78/94, CHOP, and caspase-12 compared with 400 μM Mn-treated non-silencing alpha-synuclein slices. Furthermore, PERK phosphorylation, PERK-mediated phosphorylation of eIF2a, and ATF4 mRNA expression also decreased. However, IRE1 phosphorylation and Xbp1 mRNA splicing did not change. The findings revealed that Mn induced ER stress via activation of PERK and IRE1 signaling pathways and subsequent apoptosis in cultured slices. Moreover, alpha-synuclein protein was associated with Mn-induced activation of PERK signaling pathway.
机译:已知过度暴露于锰(Mn)会引起涉及内质网(ER)应力的神经元损伤。但是,尚不清楚锰诱导的内质网应激的确切机制。越来越多的证据表明,α-突触核蛋白的过表达在Mn诱导的神经毒性中起关键作用。为了探讨内质网应激的发生是否与α-突触核蛋白的过表达相关,我们使用短干扰RNA制作了沉默α-突触核蛋白的大鼠脑切片模型。非沉默的α-突触核蛋白切片用Mn(0-400μM)处理24 h后,细胞凋亡率和培养基中乳酸脱氢酶水平呈剂量依赖性增加。此外,78,94 kDa葡萄糖调节蛋白(GRP78 / 94),C / EBP同源蛋白(CHOP)和caspase-12的蛋白表达呈剂量依赖性。此外,PKR样ER激酶(PERK)磷酸化,PERK介导的eIF2a磷酸化和ATF4表达也增加。需要肌醇的酶1(IRE1)激活和X框绑定蛋白1(Xbp1)mRNA剪接增加。激活转录因子6 p90水平没有变化。但是,用400μMMn处理沉默的α-突触核蛋白切片24小时后,与400μMMn处理的非沉默α-突触核蛋白相比,GRP78 / 94,CHOP和caspase-12的表达显着降低片。此外,PERK磷酸化,PERK介导的eIF2a磷酸化和ATF4 mRNA表达也降低。但是,IRE1磷酸化和Xbp1 mRNA剪接没有改变。研究结果表明,Mn通过激活PERK和IRE1信号通路以及随后在培养的切片中诱导细胞凋亡来诱导ER应激。此外,α-突触核蛋白与锰诱导的PERK信号通路的激活有关。

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