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Early age decline in DNA repair capacity in the liver: in depth profileof differential gene expression

机译:早期年龄的肝脏DNA修复能力下降:深度分析基因表达差异

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摘要

Aging is associated with progressive decline in cell function and with increased damage to macromolecular components. DNA damage, in the form of double-strand breaks (DSBs), increases with age and in turn, contributes to the aging process and age-related diseases. DNA strand breaks triggers a set of highly orchestrated signaling events known as the DNA damage response (DDR), which coordinates DNA repair. However, whether the accumulation of DNA damage with age is a result of decreased repair capacity, remains to be determined. In our study we showed that with age there is a decline in the resolution of foci containing γH2AX and pKAP-1 in diethylnitrosamine (DEN)-treated mouse livers, already evident at a remarkably early age of 6-months. Considerable age-dependent differences in global gene expression profiles in mice livers after exposure to DEN, further affirmed these age related differences in the response to DNA damage. Functional analysis identified p53 as the most overrepresented pathway that is specifically enhanced and prolonged in 6-month-old mice. Collectively, our results demonstrated an early decline in DNA damage repair that precedes ‘old age’, suggesting this may be a driving force contributing to the aging process rather than a phenotypic consequence of old age.
机译:衰老与细胞功能的逐步下降以及对大分子成分的损伤增加有关。 DNA损伤以双链断裂(DSB)的形式随着年龄的增长而增加,进而导致衰老过程和与年龄有关的疾病。 DNA链断裂触发了一系列高度协调的信号事件,称为DNA损伤反应(DDR),可协调DNA修复。但是,DNA损伤随年龄的增长是否是修复能力下降的结果,尚待确定。在我们的研究中,我们发现随着年龄的增长,在二乙基亚硝胺(DEN)处理的小鼠肝脏中含有γH2AX和pKAP-1的病灶的分辨率下降,这在6个月的早期就已经很明显了。暴露于DEN后,小鼠肝脏中全局基因表达谱存在明显的年龄相关差异,进一步证实了这些与年龄相关的差异对DNA损伤的反应。功能分析确定p53是6个月大的小鼠中特异性增强和延长的最明显的途径。总体而言,我们的结果表明,在“老年”之前,DNA损伤修复的早期下降,这表明这可能是导致衰老过程的驱动力,而不是老年的表型后果。

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