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Bmi1 Is Down-Regulated in the Aging Brain and Displays Antioxidant and Protective Activities in Neurons

机译:Bmi1的下调大脑老化和显示器抗氧化和防治活动的神经元

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摘要

Aging increases the risk to develop several neurodegenerative diseases, although the underlying mechanisms are poorly understood. Inactivation of the Polycomb group gene Bmi1 in mice results in growth retardation, cerebellar degeneration, and development of a premature aging-like phenotype. This progeroid phenotype is characterized by formation of lens cataracts, apoptosis of cortical neurons, and increase of reactive oxygen species (ROS) concentrations, owing to p53-mediated repression of antioxidant response (AOR) genes. Herein we report that Bmi1 expression progressively declines in the neurons of aging mouse and human brains. In old brains, p53 accumulates at the promoter of AOR genes, correlating with a repressed chromatin state, down-regulation of AOR genes, and increased oxidative damages to lipids and DNA. Comparative gene expression analysis further revealed that aging brains display an up-regulation of the senescence-associated genes IL-6, p19Arf and p16Ink4a, along with the pro-apoptotic gene Noxa, as seen in Bmi1-null mice. Increasing Bmi1 expression in cortical neurons conferred robust protection against DNA damage-induced cell death or mitochondrial poisoning, and resulted in suppression of ROS through activation of AOR genes. These observations unveil that Bmi1 genetic deficiency recapitulates aspects of physiological brain aging and that Bmi1 over-expression is a potential therapeutic modality against neurodegeneration.
机译:老龄化增加了发展若干神经变性疾病的风险,尽管潜在的机制理解得很差。在小鼠中的PolycomB组基因BMI1的失活导致生长延迟,小脑退化和发育早熟的表型的发育。该突突表的特征在于形成镜片白内障,皮质神经元的凋亡,并且由于P53介导的抗氧化反应(AOR)基因的抑制而增加了活性氧物质(ROS)浓度的增加。在此,我们认为BMI1表达逐渐下降老龄化老鼠和人脑的神经元。在旧大脑中,P53积累在AOR基因的启动子,与抑制染色质状态,降低AOR基因的调节,并增加对脂质和DNA的氧化损伤。比较基因表达分析进一步揭示了老化大脑显示衰老相关基因IL-6,P19 Arf 和p16 墨水4a 的上调,以及促凋亡基因Noxa,如BMI1-inull小鼠所见。增加皮质神经元的BMI1表达赋予DNA损伤诱导的细胞死亡或线粒体中毒的稳健保护,并导致通过激活AOR基因来抑制ROS。这些观察结果推出了BMI1遗传缺乏率概括了生理脑老化的方面,并且BMI1过表达是针对神经变性的潜在治疗方式。

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