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Into the Fourth Dimension: Dysregulation of Genome Architecture in Aging and Alzheimer’s Disease

机译:进入第四维度:衰老和阿尔茨海默氏病的基因组结构失调

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摘要

Alzheimer’s disease (AD) is a progressive neurodegenerative disease characterized by synapse dysfunction and cognitive impairment. Understanding the development and progression of AD is challenging, as the disease is highly complex and multifactorial. Both environmental and genetic factors play a role in AD pathogenesis, highlighted by observations of complex DNA modifications at the single gene level, and by new evidence that also implicates changes in genome architecture in AD patients. The four-dimensional structure of chromatin in space and time is essential for context-dependent regulation of gene expression in post-mitotic neurons. Dysregulation of epigenetic processes have been observed in the aging brain and in patients with AD, though there is not yet agreement on the impact of these changes on transcription. New evidence shows that proteins involved in genome organization have altered expression and localization in the AD brain, suggesting that the genomic landscape may play a critical role in the development of AD. This review discusses the role of the chromatin organizers and epigenetic modifiers in post-mitotic cells, the aging brain, and in the development and progression of AD. How these new insights can be used to help determine disease risk and inform treatment strategies will also be discussed.
机译:阿尔茨海默氏病(AD)是一种以突触功能障碍和认知障碍为特征的进行性神经退行性疾病。由于该疾病非常复杂且是多因素的,因此了解AD的发展和进展具有挑战性。环境因素和遗传因素均在AD发病机理中发挥作用,在单个基因水平上观察到复杂的DNA修饰,并通过新证据也暗示了AD患者的基因组结构发生了变化,这突出了该因素。染色质在时空上的四维结构对于有丝分裂后神经元中基因表达的上下文相关调节至关重要。尽管尚未就这些变化对转录的影响达成共识,但在衰老的大脑和AD患者中已观察到表观遗传过程的失调。新证据表明,参与基因组组织的蛋白质已经改变了AD脑中的表达和定位,这表明基因组格局可能在AD的发展中起关键作用。这篇综述讨论了染色质组织者和表观遗传修饰剂在有丝分裂后细胞,大脑老化以及AD的发展和进程中的作用。这些新见解如何可用于帮助确定疾病风险并为治疗策略提供信息也将进行讨论。

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