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首页> 外文期刊>Experimental Gerontology >Impairment of PGC-1 alpha-mediated mitochondrial biogenesis precedes mitochondrial dysfunction and Alzheimer's pathology in the 3xTg mouse model of Alzheimer's disease
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Impairment of PGC-1 alpha-mediated mitochondrial biogenesis precedes mitochondrial dysfunction and Alzheimer's pathology in the 3xTg mouse model of Alzheimer's disease

机译:PGC-1αα-介导的线粒体生物发生的损伤在3Dxtg鼠标模型中的线粒体功能障碍和阿尔茨海默病病

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摘要

Impairment of mitochondrial biogenesis and mitochondrial dysfunction is a prominent feature of Alzheimer's disease (AD). However, the extent to which the impairment of mitochondrial biogenesis influences mitochondrial dysfunction at the onset and during progression of AD is still unclear. Our study demonstrated that the protein expression pattern of the transcription factor pCREB/CREB, together with the protein expression of PGC-1 alpha, NRF1 and TFAM are all significantly reduced in early ages of 3xTg-AD mice. We also found reduced mRNA expression levels of PKAC-alpha, CREB, PGC-1 alpha, NRF1, NRF2 and TFAM as early as 1 month-of-age, an age at which there was no significant A beta oligomer deposition, suggesting that mitochondrial biogenesis is likely impaired in ages preceding the development of the AD pathology. In addition, there was a decrease in VDAC2 expression, which is related to mitochondrial content and mitochondrial function, as demonstrated by protein expression of complex IV, as well as complex II + III, and complex IV activities, at later ages in 3xTg-AD mice. These results suggest that the impairment in mitochondrial biogenesis signaling mediated by PGC-1 alpha at early ages of the AD mice model likely resulted in mitochondrial dysfunction and manifestation of the AD pathology at later ages. Taken together, enhancing mitochondrial biogenesis may represent a potential pharmacological approach for the treatment of AD.
机译:线粒体生物发生的损害和线粒体功能障碍是阿尔茨海默病(AD)的突出特征。然而,线粒体生物发生的损害程度影响发病中的线粒体功能障碍,并且在广告的进展期间仍然不清楚。我们的研究证明,转录因子PCREB ​​/ CREB的蛋白表达模式与PGC-1α,NRF1和TFAM的蛋白表达一起在3XTG-AD小鼠早期的情况下显着降低。我们还发现PKAC-α,CREB,PGC-1α,NRF1,NRF2和TFAM的发病率降低,如1个月的时间,这是没有显着的β低聚物沉积的年龄,表明线粒体在广告病理学的发展之前,生物发生可能损害。此外,VDAC2表达的减少与线粒体含量和线粒体功能有关,如蛋白质表达的复合体IV的蛋白质表达,以及复合II + III和复合IV活性,在3XTG-AD中的后期老鼠。这些结果表明,在AD小鼠模型早期的PGC-1α介导的线粒体生物发生信号传导的损伤可能导致线粒体功能障碍和随后年龄的广告病理的表现。一起服用,增强线粒体生物发生可能代表治疗广告的潜在药理学方法。

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