首页> 美国卫生研究院文献>American Journal of Human Genetics >Lack of X inactivation associated with maternal X isodisomy: evidence for a counting mechanism prior to X inactivation during human embryogenesis.
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Lack of X inactivation associated with maternal X isodisomy: evidence for a counting mechanism prior to X inactivation during human embryogenesis.

机译:缺乏X灭活与母亲X等位线切割相关:证据表明在人类胚胎发生过程中X灭活之前存在计数机制。

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摘要

We have previously reported functional disomy for X-linked genes in females with tiny ring X chromosomes and a phenotype significantly more abnormal than Turner syndrome. In such cases the disomy results from failure of these X chromosomes to inactivate because they lack DNA sequences essential for cis X inactivation. Here we describe a novel molecular mechanism for functional X disomy that is associated with maternal isodisomy. In this case, the severe mental retardation and multiple congenital abnormalities in a female with a mosaic 45,X/ 46,X,del(X)(q21.3-qter)/ 46X,r(X) karyotype are associated with overexpression of the genes within Xpter to Xq21.31 in many of her cells. Her normal X, ring X, and deleted linear X chromosomes originate from the same maternal X chromosome, and all are transcriptionally active. None expresses X inactive specific transcript (XIST), although the locus and region of the putative X inactivation center (XIC) are present on both normal and linear deleted X chromosomes. To our knowledge, this is the first report of a functional maternal X isodisomy, and the largest X chromosome to escape inactivation. In addition, these results (1) show that cis inactivation does not invariably occur in human females with two X chromosomes, even when the XIC region is present on both of them; (2) provide evidence for a critical time prior to the visible onset of X inactivation in the embryo when decisions about X inactivation are made; and (3) support the hypothesis that the X chromosome counting mechanism involves chromosomal imprinting, occurs prior to the onset of random inactivation, and is required for subsequent inactivation of the chromosome.
机译:我们先前曾报道过,女性的X连锁基因具有功能性二态性,这些女性的X环环形染色体很小,并且表型明显比特纳综合征更为异常。在这种情况下,二体切割是由于这些X染色体无法失活而导致的,因为它们缺乏顺式X失活所必需的DNA序列。在这里,我们描述了一种与产妇等位线相关的功能性X二体性的新型分子机制。在这种情况下,具有45,X / 46,X,del(X)(q21.3-qter)/ 46X,r(X)核型的女性的严重智力低下和多发性先天异常与过度表达她许多细胞中Xpter至Xq21.31中的基因。她的正常X环,X环和缺失的线性X染色体均来自同一母体X染色体,并且全部具有转录活性。尽管正常和线性缺失的X染色体上都存在假定的X灭活中心(XIC)的基因座和区域,但没有人表达X灭活特异性转录本(XIST)。据我们所知,这是功能性孕妇X等位线切割的首次报道,也是最大的X染色体逃避灭活的过程。另外,这些结果(1)表明,即使两个X染色体上都存在XIC区域,在具有两个X染色体的人类女性中也不会发生顺式失活。 (2)在做出有关X灭活的决定时,在可见的X灭活发生之前的关键时期提供证据; (3)支持以下假设:X染色体计数机制涉及染色体印迹,发生在随机失活开始之前,并且对于随后的染色体失活是必需的。

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