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Retinal Degeneration and Ionizing Radiation Hypersensitivity in a Mouse Model for Cockayne Syndrome

机译:视网膜退化和电离辐射超敏反应在Cockayne综合征的小鼠模型中。

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摘要

Mutations in the CSB gene cause Cockayne syndrome (CS), a DNA repair disorder characterized by UV sensitivity and severe physical and neurological impairment. CSB functions in the transcription-coupled repair subpathway of nucleotide excision repair. This function may explain the UV sensitivity but hardly clarifies the other CS symptoms. Many of these, including retinopathy, are associated with premature aging. We studied eye pathology in a mouse model for CS. Csbm/m mice were hypersensitive to UV light and developed epithelial hyperplasia and squamous cell carcinomas in the cornea, which underscores the importance of transcription-coupled repair of photolesions in the mouse. In addition, we observed a spontaneous loss of retinal photoreceptor cells with age in the Csbm/m retina, resulting in a 60% decrease in the number of rods by the age of 18 months. Importantly, when Csbm/m mice (as well as Csa−/− mice) were exposed to 10 Gy of ionizing radiation, we noticed an increase in apoptotic photoreceptor cells, which was not observed in wild-type animals. This finding, together with our observation that the expression of established oxidative stress marker genes is upregulated in the Csbm/m retina, suggests that (endogenous) oxidative DNA lesions play a role in this CS-specific premature-aging feature and supports the oxidative DNA damage theory of aging.
机译:CSB基因的突变会导致库卡因综合症(CS),这是一种DNA修复疾病,其特征是紫外线敏感性以及严重的身体和神经功能受损。 CSB在核苷酸切除修复的转录偶联修复子途径中发挥作用。此功能可能解释了紫外线敏感性,但几乎无法阐明其他CS症状。其中许多,包括视网膜病变,都与早衰有关。我们在CS的小鼠模型中研究了眼病理。 Csb m / m 小鼠对紫外线敏感,并在角膜上皮上皮增生和鳞状细胞癌,这强调了小鼠光损伤的转录偶联修复的重要性。此外,我们观察到随着年龄的增长,Csb m / m 视网膜中视网膜感光细胞的数量会自然减少,导致18个月龄时视杆数减少60%。重要的是,当Csb m / m 小鼠(以及Csa -/-小鼠)暴露于10 Gy的电离辐射时,我们注意到凋亡的光感受器细胞增加,在野生型动物中未观察到。这一发现,加上我们的观察结果,即氧化应激标记基因在Csb m / m 视网膜中的表达上调,表明(内源性)氧化性DNA损伤在CS特异的早产中起作用衰老功能并支持衰老的氧化DNA损伤理论。

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