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核DNA损伤的积累或神经元丢失:理解神经退行性疾病中选择性神经元易损性新方法的分子基础。

Accumulation of nuclear DNA damage or neuron loss: molecular basis for a new approach to understanding selective neuronal vulnerability in neurodegenerative diseases.

作者信息

Brasnjevic Ivona, Hof Patrick R, Steinbusch Harry W M, Schmitz Christoph

机构信息

Department of Psychiatry and Neuropsychology, School for Mental Health and Neuroscience, Maastricht University, Maastricht, The Netherlands.

出版信息

DNA Repair (Amst). 2008 Jul 1;7(7):1087-97. doi: 10.1016/j.dnarep.2008.03.010. Epub 2008 May 23.

Abstract

According to a long-standing hypothesis, aging is mainly caused by accumulation of nuclear (n) DNA damage in differentiated cells such as neurons due to insufficient nDNA repair during lifetime. In line with this hypothesis it was until recently widely accepted that neuron loss is a general consequence of normal aging, explaining some degree of decline in brain function during aging. However, with the advent of more accurate procedures for counting neurons, it is currently widely accepted that there is widespread preservation of neuron numbers in the aging brain, and the changes that do occur are relatively specific to certain brain regions and types of neurons. Whether accumulation of nDNA damage and decline in nDNA repair is a general phenomenon in the aging brain or also shows cell-type specificity is, however, not known. It has not been possible to address this issue with the biochemical and molecular-biological methods available to study nDNA damage and nDNA repair. Rather, it was the introduction of autoradiographic methods to study quantitatively the relative amounts of nDNA damage (measured as nDNA single-strand breaks) and nDNA repair (measured as unscheduled DNA synthesis) on tissue sections that made it possible to address this question in a cell-type-specific manner under physiological conditions. The results of these studies revealed a formerly unknown inverse relationship between age-related accumulation of nDNA damage and age-related impairment in nDNA repair on the one hand, and the age-related, selective, loss of neurons on the other hand. This inverse relation may not only reflect a fundamental process of aging in the central nervous system but also provide the molecular basis for a new approach to understand the selective neuronal vulnerability in neurodegenerative diseases, particularly Alzheimer's disease.

摘要

根据一个长期存在的假说,衰老主要是由于在神经元等分化细胞中,终生的核(n)DNA修复不足导致核DNA损伤积累所致。与这一假说相符的是,直到最近人们还普遍认为神经元丢失是正常衰老的普遍后果,这在一定程度上解释了衰老过程中脑功能的某种程度的衰退。然而,随着更精确的神经元计数方法的出现,目前人们普遍认为,衰老大脑中的神经元数量广泛保留,而确实发生的变化相对特定于某些脑区和神经元类型。然而,核DNA损伤的积累和核DNA修复的下降在衰老大脑中是普遍现象还是也表现出细胞类型特异性,目前尚不清楚。利用现有的研究核DNA损伤和核DNA修复的生化和分子生物学方法,无法解决这个问题。相反,正是放射自显影方法的引入,用于定量研究组织切片上核DNA损伤的相对量(以核DNA单链断裂衡量)和核DNA修复(以非预定DNA合成衡量),才使得在生理条件下以细胞类型特异性方式解决这个问题成为可能。这些研究结果揭示了一方面与年龄相关的核DNA损伤积累和与年龄相关的核DNA修复受损之间,以及另一方面与年龄相关的选择性神经元丢失之间,存在一种以前未知的反比关系。这种反比关系不仅可能反映了中枢神经系统衰老的一个基本过程,还可能为理解神经退行性疾病,特别是阿尔茨海默病中选择性神经元易损性的新方法提供分子基础。

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