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Defining the cause of skewed X-chromosome inactivation in X-linked mental retardation by use of a mouse model.

机译:通过使用小鼠模型确定X连锁型智力障碍中偏斜的X染色体失活的原因。

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摘要

Extreme skewing of X-chromosome inactivation (XCI) is rare in the normal female population but is observed frequently in carriers of some X-linked mutations. Recently, it has been shown that various forms of X-linked mental retardation (XLMR) have a strong association with skewed XCI in female carriers, but the mechanisms underlying this skewing are unknown. ATR-X syndrome, caused by mutations in a ubiquitously expressed, chromatin-associated protein, provides a clear example of XLMR in which phenotypically normal female carriers virtually all have highly skewed XCI biased against the X chromosome that harbors the mutant allele. Here, we have used a mouse model to understand the processes causing skewed XCI. In female mice heterozygous for a null Atrx allele, we found that XCI is balanced early in embryogenesis but becomes skewed over the course of development, because of selection favoring cells expressing the wild-type Atrx allele. Unexpectedly, selection does not appear to be the result of general cellular-viability defects in Atrx-deficient cells, since it is restricted to specific stages of development and is not ongoing throughout the life of the animal. Instead, there is evidence that selection results from independent tissue-specific effects. This illustrates an important mechanism by which skewed XCI may occur in carriers of XLMR and provides insight into the normal role of ATRX in regulating cell fate.
机译:X染色体失活(XCI)的极端偏斜在正常女性人群中很少见,但在某些X连锁突变的携带者中经常观察到。最近,已经显示出各种形式的X连锁智力低下(XLMR)与女性携带者中偏斜的XCI有很强的联系,但是这种偏斜的潜在机制尚不清楚。由普遍表达的染色质相关蛋白的突变引起的ATR-X综合征提供了XLMR的一个清晰例子,其中表型正常的女性携带者实际上都具有高度偏斜的XCI,偏向于带有突变等位基因的X染色体。在这里,我们使用鼠标模型来了解导致XCI倾斜的过程。在无效的Atrx等位基因杂合的雌性小鼠中,我们发现XCI在胚胎发生早期处于平衡状态,但由于选择有利于表达野生型Atrx等位基因的细胞,因此在发育过程中会发生偏斜。出乎意料的是,选择似乎并不是Atrx缺陷细胞中一般细胞活力缺陷的结果,因为选择仅限于特定的发育阶段,并且在动物的整个生命周期中都没有进行。相反,有证据表明选择是由独立的组织特异性作用引起的。这说明了偏斜的XCI可能在XLMR的携带者中发生的重要机制,并提供了ATRX在调节细胞命运中的正常作用的见解。

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