Pauler Florian M, Stricker Stefan H, Warczok Katarzyna E, Barlow Denise P
CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Institute of Genetics, Max F. Perutz Laboratories, Vienna Biocenter, A1030 Vienna, Austria.
Genome Res. 2005 Oct;15(10):1379-87. doi: 10.1101/gr.3783805.
Epigenetic mechanisms restrict the expression of imprinted genes to one parental allele in diploid cells. At the Igf2r/Air imprinted cluster on mouse chromosome 17, paternal-specific expression of the Air noncoding RNA has been shown to silence three genes in cis: Igf2r, Slc22a2, and Slc22a3. By an unbiased mapping of DNase I hypersensitive sites (DHS) in a 192-kb region flanking Igf2r and Air, we identified 21 DHS, of which nine mapped to evolutionarily conserved sequences. Based on the hypothesis that silencing effects of Air would be directed towards cis regulatory elements used to activate genes, DHS are potential key players in the control of imprinted expression. However, in this 192-kb region only the two DHS mapping to the Igf2r and Air promoters show parental specificity. The remaining 19 DHS were present on both parental alleles and, thus, have the potential to activate Igf2r on the maternal allele and Air on the paternal allele. The possibility that the Igf2r and Air promoters share the same cis-acting regulatory elements, albeit on opposite parental chromosomes, was supported by the similar expression profiles of Igf2r and Air in vivo. These results refine our understanding of the onset of imprinted silencing at this cluster and indicate the Air noncoding RNA may specifically target silencing to the Igf2r promoter.
表观遗传机制将印记基因的表达限制在二倍体细胞中的一个亲本等位基因上。在小鼠17号染色体上的Igf2r/Air印记簇中,Air非编码RNA的父本特异性表达已被证明可顺式沉默三个基因:Igf2r、Slc22a2和Slc22a3。通过对Igf2r和Air侧翼192 kb区域的DNase I超敏位点(DHS)进行无偏差定位,我们鉴定出21个DHS,其中9个定位于进化保守序列。基于Air的沉默效应将针对用于激活基因的顺式调控元件这一假设,DHS可能是控制印记表达的关键因素。然而,在这个192 kb区域中,只有定位于Igf2r和Air启动子的两个DHS显示出亲本特异性。其余19个DHS在两个亲本等位基因上均存在,因此有可能激活母本等位基因上的Igf2r和父本等位基因上的Air。Igf2r和Air启动子共享相同的顺式作用调控元件(尽管位于相反的亲本染色体上)这一可能性,得到了Igf2r和Air在体内相似表达谱的支持。这些结果完善了我们对该簇印记沉默起始的理解,并表明Air非编码RNA可能将沉默特异性靶向Igf2r启动子。