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首页> 外文期刊>International journal of biological sciences >Nicotinamide Riboside Enhances Mitochondrial Proteostasis and Adult Neurogenesis through Activation of Mitochondrial Unfolded Protein Response Signaling in the Brain of ALS SOD1 supG93A/sup Mice
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Nicotinamide Riboside Enhances Mitochondrial Proteostasis and Adult Neurogenesis through Activation of Mitochondrial Unfolded Protein Response Signaling in the Brain of ALS SOD1 supG93A/sup Mice

机译:核苷酰胺通过在ALS SOD1 G93A-/ SOP>小鼠的脑中的线粒体展开蛋白响应信号激活来增强线粒体蛋白质和成人神经发生。

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Amyotrophic lateral sclerosis (ALS) is caused by the progressive degeneration of motor neurons in the spinal cord, the brain stem, and the motor cortex. So far, there is still a lack of effective drugs. Nicotinamide adenine dinucleotide (NAD+) takes part in redox reactions and the NAD-dependent signaling pathway. The NAD+ decline is related with many neurological diseases, leading to the accumulation of neurotoxic protein in the central nervous system. Moreover, the NAD+ supplementation is shown to promote neural stem cells/neuronal precursor cells (NSCs/NPCs) pool maintenance. Regulatory mechanisms and functions of NAD+ metabolism in ALS are still unknown. Thus, we hypothesized the aggregation of human SOD1 toxic protein and the fate of NSCs/NPCs in the ALS disease could be improved by the administration of nicotinamide riboside (NR), an NAD+ precursor. In this study, we treated SOD1supG93A/sup transgenic and wild-type mice by the oral administration of 20 mg/ml NR starting at 50 days of age. Effects of NR on the body weight, the motor function, the onset and the survival were assessed during the experiment. The expression of mutant hSOD1 protein, mitochondrial unfolded protein response (UPRsupmt/sup) related protein, mitophagy markers and NAD+ metabolism related protein were detected by immunoblotting. Effects of NR on the NSCs/NPCs in neurogenic niches of brain were identified by the immunofluorescence staining. Our investigation elucidated that the NR treatment exhibited better hanging wire endurance but did not postpone the onset or extend the life span of SOD1supG93A/sup mice. Besides, we observed that the NR repletion promoted the clearance of mitochondrial hSOD1 neurotoxic protein. Meanwhile, the mitochondrial function pathway was disrupted in the brain of SOD1supG93A/sup mice. What's more, we demonstrated that the inadequate function of NAD+ salvage synthesis pathway was the primary explanation behind the decline of NAD+, and the NR treatment enhanced the proliferation and migration of NSCs/NPCs in the brain of SOD1supG93A/sup mice. At last, we found that levels of UPRsupmt/sup related protein were significantly increased in the brain of SOD1supG93A/sup mice after the NR treatment. In summary, these findings reveal that the administration of NR activates UPRsupmt/sup signaling, modulates mitochondrial proteostasis and improves the adult neurogenesis in the brain of SOD1supG93A/sup mice.? The author(s).
机译:肌萎缩外侧硬化症(ALS)是由脊髓,脑干和电机皮质中的运动神经元进行逐渐退化引起的。到目前为止,仍然缺乏有效的药物。烟酰胺腺嘌呤二核苷酸(NAD +)参与氧化还原反应和NAD依赖性信号通路。 NAD +下降与许多神经疾病有关,导致中枢神经系统中神经毒性蛋白的积累。此外,显示NAD +补充促进神经干细胞/神经元前体细胞(NSCs / NPCS)池维持。 NAD +代谢在ALS中的监管机制和功能仍然未知。因此,我们假设人SOD1有毒蛋白质的聚集,并且通过烟酰胺核苷(NR),NAD +前体施用烟胺核苷酸中的NSCs / NPC的命运。在该研究中,通过在50天开始,通过口服20mg / ml NR处理SOD1 G93a 转基因和野生型小鼠。在实验期间评估了NR对体重,电动机功能,发病和存活的影响。通过免疫印迹检测突变体HSOD1蛋白,线粒体展开蛋白反应(UPR MT )相关蛋白质,乳化物标记物和NAD +代谢相关蛋白。免疫荧光染色鉴定了NR对NSCs / NPC中NSCs / NPC的影响。我们的调查阐明了NR治疗表现出更好的悬挂钢丝耐久性,但没有推迟发作或延长SOD1 G93A 小鼠的寿命。此外,我们观察到NR Repletion促进了线粒体HSOD1神经毒性蛋白的清除。同时,线粒体功能途径在SOD1 G93a 小鼠的脑中被破坏。更重要的是,我们证明了NAD +拯救合成途径的不足是NAD +下降背后的主要解释,NR治疗增强了SOD1 G93A 脑中NSCs / NPC的增殖和迁移老鼠。最后,我们发现在NR处理后SOD1 G93A 小鼠的脑中显着增加了UPR MT 相关蛋白的相关蛋白显着增加。总之,这些发现表明,NR的给药激活UPR mt 信号传导,调节线粒体蛋白质,并改善SOD1 g93a 小鼠脑中的成年神经发生。作者。

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