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首页> 外文期刊>Human mutation >Gender and cell-type-specific effects of the transcription-coupled repair protein, ERCC6/CSB, on repeat expansion in a mouse model of the fragile X-related disorders
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Gender and cell-type-specific effects of the transcription-coupled repair protein, ERCC6/CSB, on repeat expansion in a mouse model of the fragile X-related disorders

机译:转录偶联修复蛋白ERCC6 / CSB对脆弱X相关疾病小鼠模型中重复扩增的性别和细胞类型特异性影响

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摘要

The repeat expansion diseases are human genetic disorders that arise from the expansion of a tandem-repeat tract. The Fragile X-related disorders are members of this disease group in which the repeat unit is CGG/CCG and is located in the 5′ untranslated region of the FMR1 gene. Affected individuals often show mosaicism with respect to repeat number resulting from both expansion and contraction of the repeat tract; however, the mechanism responsible for these changes in repeat number is unknown. The work from a variety of model systems suggests that transcription-coupled repair (TCR) may contribute to repeat instability in diseases resulting from CAG/CTG-repeat expansion. To test whether TCR could contribute to repeat instability in the Fragile X-related disorders, we tested the effect of mutations in Csb (Cockayne syndrome group B), a gene essential for TCR, in a knock-in mouse model of these disorders. We found that the loss of CSB affects expansions in a gender and cell-type-specific manner. Our data also show an unanticipated gender difference in instability even in Csb+/+ animals that may have implications for our understanding of the mechanism of repeat expansion in the FX mouse model and perhaps for humans as well.
机译:重复扩增疾病是由串联重复序列的扩增引起的人类遗传疾病。与脆性X相关的疾病是该疾病组的成员,其中重复单元是CGG / CCG,并且位于FMR1基因的5'非翻译区。受影响的个体通常因重复道的扩张和收缩而在重复数方面表现出镶嵌感;但是,造成这些重复数变化的机制尚不清楚。来自各种模型系统的研究表明,转录偶联修复(TCR)可能会导致CAG / CTG重复扩增导致的疾病重复不稳定。为了测试TCR是否能促进脆性X相关疾病的重复不稳定,我们在这些疾病的敲入小鼠模型中测试了TCR必不可少的基因Csb(Cockayne综合征组B)中突变的作用。我们发现,CSB的丢失会以性别和特定于细胞类型的方式影响扩增。我们的数据还显示,即使在Csb + / +动物中,也存在无法预料的性别差异,这可能对我们对FX小鼠模型甚至人类的重复扩增机制的理解有影响。

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