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首页> 外文期刊>Mechanisms of Development >Homeotic transformations of the axial skeleton of YY1 mutant mice and genetic interaction with the Polycomb group gene Ring1/Ring1A
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Homeotic transformations of the axial skeleton of YY1 mutant mice and genetic interaction with the Polycomb group gene Ring1/Ring1A

机译:YY1突变小鼠轴骨架的同种异型转化以及与Polycomb组基因Ring1 / Ring1A的遗传相互作用

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摘要

Polycomb group (PcG) proteins participate in the maintenance of transcriptionally repressed state of genes relevant to cell differentiation. Here, we show anterior homeotic transformations of the axial skeleton of YY1(+/-) mice. We find that the penetrance of some of these alterations was reduced in mice that are deficient in the class II PcG gene Ring1/Ring1A, indicating a genetic interaction between those two genes. Further support for this interaction is an abnormal anterior eye formation in Ring1-deficient mice, which is enhanced in compound YY1(+/-)Ring1(-/-) mice. In addition, YY1 forms complexes with Ring1 and other class II PcG proteins such as Rnf2 and Bmi1 in GST pull down experiments in transfected cells. These findings provide evidence for a PcG function for YY1 in vertebrates.
机译:聚梳组(PcG)蛋白参与与细胞分化有关的基因的转录抑制状态的维持。在这里,我们显示YY1(+/-)小鼠的轴向骨骼的前同种异体转换。我们发现,在II类PcG基因Ring1 / Ring1A缺陷的小鼠中,其中一些改变的渗透率降低了,表明这两个基因之间存在遗传相互作用。这种相互作用的进一步支持是在Ring1缺陷小鼠中异常的前眼形成,在化合物YY1(+/-)Ring1(-/-)小鼠中增强了。此外,在GST下拉实验中,YY1与Ring1和其他II类PcG蛋白(如Rnf2和Bmi1)形成复合物。这些发现为脊椎动物YY1的PcG功能提供了证据。

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