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A mouse model of Angelman syndrome imprinting defects

机译:Angelman综合征压印缺陷的鼠标模型

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摘要

Angelman syndrome, Prader-Will syndrome and Dup15q syndrome map to a cluster of imprinted genes located at 15q11-q13. Imprinting at this domain is regulated by an imprinting control region consisting of two distinct elements, the Angelman syndrome imprinting center (AS-IC) and the Prader-Willi syndrome imprinting center (PWS-IC). Individuals inheriting deletions of the AS-IC exhibit reduced expression of the maternally expressed UBE3A gene and biallelic expression of paternal-only genes. We have previously demonstrated that AS-IC activity partly consists of providing transcription across the PWS-IC in oocytes, and that these transcripts are necessary for maternal imprinting of Snrpn. Here we report a novel mouse mutation that truncates transcripts prior to transiting the PWS-IC and results in a domain-wide imprinting defect. These results confirm a transcription-based model for imprint setting at this domain. The imprinting defect can be preempted by removal of the transcriptional block in oocytes, but not by its removal in early embryos. Imprinting defect mice exhibit several traits often found in individuals with Angelman syndrome imprinting defects.
机译:Angelman综合征,PRADER-WILL综合征和DUP15Q综合征地图到位于15Q11-Q13的印记基因集群。在该领域的印迹由印记控制区域调节,由两个不同的元素,angelman综合征压印中心(AS-IC)和Prader-Willi综合征压印中心(PWS-IC)组成。继承AS-IC缺失的个体表现出母体表达的UBE3A基因的表达减少,父母的父母基因的表达。我们之前已经证明,AS-IC活动部分包括在卵母细胞中通过PWS-IC进行转录,并且这些转录物是SNRPN的母体印记所必需的。在这里,我们报告了一种新的小鼠突变,在过滤PWS-IC之前截断转录物并导致域宽的压印缺陷。这些结果证实了在此域的压印设置的基于转录模型。通过在卵母细胞中除去转录块来预先物质的印迹缺陷可以抢先,但不能通过早期胚胎的去除。印记缺损小鼠表现出常有在具有angelman综合征压印缺陷的个体中发现的几种性状。

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