Laboratoire Lésions des Acides Nucléiques, Grenoble Cedex 9, France.
Mutat Res. 2012 Aug 1;736(1-2):48-55. doi: 10.1016/j.mrfmmm.2011.05.005. Epub 2011 Jun 2.
Several studies have demonstrated the deleterious effect of aging on the capacity of cells to repair their DNA. However, current existing assays aimed at measuring DNA repair address only a specific repair step dedicated to the correction of a specific DNA lesion type. Consequently they provide no information regarding the repair pathways that handle other types of lesions. In addition to aging, consequences of photo-exposure on these repair processes remain elusive. In this study we evaluated the consequence of aging and of chronic and/or acute photo-exposure on DNA repair in human skin fibroblasts using a multiplexed approach, which provided detailed information on several repair pathways at the same time. The resulting data were analyzed with adapted statistics/bioinformatics tools. We showed that, irrespective of the repair pathway considered, excision/synthesis was less efficient in non-exposed cells from elderly compared to cells from young adults and that photo-exposure disrupted this very clear pattern. Moreover, it was evidenced that chronic sun-exposure induced changes in DNA repair properties. Finally, the identification of a specific signature at the level of the NER pathway in cells repeatedly exposed to sun revealed a cumulative effect of UVB exposure and chronic sun irradiation. The uses of bioinformatics tools in this study was essential to fully take advantage of the large sum of data obtained with our multiplexed DNA repair assay and unravel the effects of environmental exposure on DNA repair pathways.
已有多项研究表明,衰老会削弱细胞修复 DNA 的能力。然而,目前现有的旨在测量 DNA 修复的检测方法仅针对特定的修复步骤,专门用于纠正特定类型的 DNA 损伤。因此,它们无法提供关于处理其他类型损伤的修复途径的信息。除了衰老之外,光暴露对这些修复过程的影响也难以捉摸。在这项研究中,我们使用一种多重分析方法评估了衰老以及慢性和/或急性光暴露对人皮肤成纤维细胞中 DNA 修复的影响,该方法同时提供了几种修复途径的详细信息。使用适应性统计/生物信息学工具对所得数据进行了分析。我们表明,无论考虑哪种修复途径,与年轻人的细胞相比,未暴露于光的老年人细胞中的切除/合成效率较低,而光暴露破坏了这种非常明显的模式。此外,还证实了慢性阳光照射会改变 DNA 修复特性。最后,在反复暴露于阳光的细胞中 NER 途径水平上的鉴定表明,UVB 暴露和慢性阳光照射具有累积效应。在这项研究中,生物信息学工具的使用对于充分利用我们的多重 DNA 修复检测方法获得的大量数据以及揭示环境暴露对 DNA 修复途径的影响至关重要。