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首页> 外文期刊>Journal of Alzheimer's disease: JAD >Postmortem Alzheimer's Disease Hippocampi Show Oxidative Phosphorylation Gene Expression Opposite that of Isolated Pyramidal Neurons
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Postmortem Alzheimer's Disease Hippocampi Show Oxidative Phosphorylation Gene Expression Opposite that of Isolated Pyramidal Neurons

机译:死后的阿兹海默氏病海马显示与孤立的锥体神经元相反的氧化磷酸化基因表达

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摘要

Causes of initiation and progression of sporadic Alzheimer's disease (sAD) are likely multiple and include impairment of mitochondrial bioenergetics. We analyzed RNA expression levels of multiple mitochondrial oxidative phosphorylation (OXPHOS) and biogenesis (mitobiogenesis) genes in unfixed hippocampal (WH) frozen sections (10 sAD; 9 CTL) and laser-captured hippocampal pyramidal neurons (PyNs,similar to 1000 neurons from each case) from 8 sAD and 7 CTL cases. Nuclear-encoded OXPHOS genes inWHwere significantly increased in sAD, whereas in isolated sAD PyNs, these same genes were significantly decreased. Mitochondrial DNA-encoded genes were increased in sAD PyNs but showed a non-significant downward trend in sAD WH. Relationships among WH and PyN gene expression levels in sAD distributed in a different population compared to CTL. Principal component analysis (PCA) revealed clustering of CTL but widespread heterogeneity of sAD samples. In sAD, mitochondrial bioenergetics at the gene expression level are depressed in vulnerable PyNs. PCA revealed that CTL samples clustered together, whereas sAD samples varied widely. From the perspective ofOXPHOS bioenergetics, sAD is a heterogeneous syndrome and not likely due to a single abnormality. Increased stimulation of nuclear-encoded OXPHOS gene expression in PyNs is a rational therapeutic approach for most but not all cases of sAD.
机译:散发性阿尔茨海默氏病(sAD)引发和进展的原因可能多种多样,包括线粒体生物能学受损。我们分析了未固定的海马(WH)冰冻切片(10 sAD; 9 CTL)和激光捕获的海马锥体神经元(PyNs)中的多个线粒体氧化磷酸化(OXPHOS)和生物发生(mitobiogenesis)基因的RNA表达水平案例)来自8 sAD和7 CTL案例。 sAD中WH中的核编码OXPHOS基因显着增加,而在分离的sAD PyNs中,这些相同的基因显着减少。线粒体DNA编码的基因在sAD PyNs中增加,但在sAD WH中显示出不显着的下降趋势。与CTL相比,分布在不同人群中的sAD中WH和PyN基因表达水平之间的关系。主成分分析(PCA)显示了CTL的聚类,但sAD样品的异质性普遍。在sAD中,易受害的PyN中处于基因表达水平的线粒体生物能学被抑制。 PCA揭示了CTL样本聚集在一起,而sAD样本变化很大。从OXPHOS生物能学的角度来看,sAD是一种异质综合症,不太可能是由于单一异常引起的。对于大多数但并非所有sAD病例,增加PyNs中核编码的OXPHOS基因表达的刺激是一种合理的治疗方法。

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