首页> 美国卫生研究院文献>Journal of Medical Genetics >Selection in blood cells from female carriers of the fragile X syndrome: inverse correlation between age and proportion of active X chromosomes carrying the full mutation.
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Selection in blood cells from female carriers of the fragile X syndrome: inverse correlation between age and proportion of active X chromosomes carrying the full mutation.

机译:从脆性X综合征女性携带者的血细胞中选择:年龄和携带完整突变的活跃X染色体比例之间呈负相关。

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摘要

We have studied the patterns of mutation and X inactivation in female carriers of a fragile X mutation, to try to correlate them with various phenotypic features. We used a simple assay, which shows simultaneously the size of the mutation, its methylation status, and DNA fragments that represent the normal active and inactive X chromosomes. We have observed an age dependent process, whereby the 'full' fragile X mutation is found preferentially on the inactive X in leucocytes in adult females, but not in younger ones. This phenomenon was not observed in female carriers of a 'premutation', who have little phenotypic expression. Preliminary data suggest that young females who show preferential presence of a full mutation on the active X in leucocytes may be at increased risk for mental retardation. We have also obtained preliminary evidence for an age dependent decrease in the somatic heterogeneity of full mutations, possibly owing to selection for smaller mutated fragments. If confirmed, the latter phenomenon might account for the known decrease with age of the expression of the fragile site. Our observations suggest that a gene whose expression is affected by the presence of a full mutation (possibly the FMR-1 gene) has a cell autonomous function in leucocytes, leading to a slowly progressive selection for cells where the mutation is on the inactive X chromosome.
机译:我们研究了脆性X突变女性携带者中的突变和X失活模式,以试图将它们与各种表型特征相关联。我们使用了一种简单的测定方法,该方法可以同时显示突变的大小,其甲基化状态以及代表正常X染色体和非X染色体的DNA片段。我们已经观察到了年龄依赖性过程,在成年雌性白细胞中,“全”脆性X突变优先出现在白细胞的失活X上,而在年轻女性中则没有。在表型表达很少的“预突变”女性携带者中未观察到这种现象。初步数据表明,显示优先出现白细胞中活性X完全突变的年轻女性可能会增加智力低下的风险。我们还获得了完整突变体细胞异质性的年龄依赖性下降的初步证据,这可能是由于选择了较小的突变片段所致。如果得到证实,则后一种现象可能是已知的易碎位点表达随年龄下降的原因。我们的观察结果表明,其表达受完全突变影响的基因(可能是FMR-1基因)在白细胞中具有细胞自治功能,从而导致该突变位于无活性X染色体上的细胞的缓慢渐进选择。

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