Marahrens Y, Loring J, Jaenisch R
Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142, USA.
Cell. 1998 Mar 6;92(5):657-64. doi: 10.1016/s0092-8674(00)81133-2.
In female mammals a "random choice" mechanism decides which of the two X chromosomes will be inactivated. It has been postulated that Xist is crucial for heterochromatinization and thus functions downstream of the choice mechanism. Here we report that females heterozygous for an internal deletion in the Xist gene, which includes part of exon 1 and extends to exon 5, undergo primary nonrandom inactivation of the wild-type X chromosome. The Xist gene, therefore, not only has a role in chromatin remodeling, but also includes an element required for X chromosome choosing. In conflict with the prevailing view of how choosing occurs, the element identified by the deletion plays a positive role in the choice mechanism and forces a reassessment of how X chromosome choosing is thought to occur.
在雌性哺乳动物中,一种“随机选择”机制决定两条X染色体中的哪一条将被失活。据推测,Xist对于异染色质化至关重要,因此在选择机制的下游发挥作用。在此我们报告,Xist基因内部缺失(包括外显子1的一部分并延伸至外显子5)的杂合雌性会经历野生型X染色体的初级非随机失活。因此,Xist基因不仅在染色质重塑中起作用,还包含X染色体选择所需的一个元件。与关于选择如何发生的主流观点相矛盾的是,该缺失所确定的元件在选择机制中起积极作用,并迫使人们重新评估X染色体选择被认为是如何发生的。