Department of Genetics and Genome Sciences, University of Connecticut School of Medicine, Farmington, CT 06030, USA.
Institute for Systems Genomics, University of Connecticut, Farmington, CT 06030, USA.
Hum Mol Genet. 2020 Nov 25;29(19):3285-3295. doi: 10.1093/hmg/ddaa210.
Prader-Willi syndrome (PWS) is characterized by neonatal hypotonia, developmental delay and hyperphagia/obesity. This disorder is caused by the absence of paternally expressed gene products from chromosome 15q11-q13. We previously demonstrated that knocking out ZNF274, a Kruppel-associated box-A-domain zinc finger protein capable of recruiting epigenetic machinery to deposit the H3K9me3 repressive histone modification, can activate expression from the normally silent maternal allele of SNORD116 in neurons derived from PWS induced pluripotent stem cells (iPSCs). However, ZNF274 has many other targets in the genome in addition to SNORD116. Depleting ZNF274 will surely affect the expression of other important genes and disrupt other pathways. Here, we used CRISPR/Cas9 to delete ZNF274 binding sites at the SNORD116 locus to determine whether activation of the maternal copy of SNORD116 could be achieved without altering ZNF274 protein levels. We obtained similar activation of gene expression from the normally silenced maternal allele in neurons derived from PWS iPSCs, compared with ZNF274 knockout, demonstrating that ZNF274 is directly involved in the repression of SNORD116. These results suggest that interfering with ZNF274 binding at the maternal SNORD116 locus is a potential therapeutic strategy for PWS.
普拉德-威利综合征(PWS)的特征是新生儿低张力、发育迟缓以及贪食/肥胖。这种疾病是由于第 15 号染色体 q11-q13 上父源表达的基因产物缺失引起的。我们之前的研究表明,敲除 ZNF274(一种能够募集表观遗传机制来沉积 H3K9me3 抑制性组蛋白修饰的 Kruppel 相关盒-A 结构域锌指蛋白)可以激活源自 PWS 诱导多能干细胞(iPSC)的神经元中 SNORD116 的母源沉默等位基因的表达。然而,ZNF274 在基因组中除了 SNORD116 之外还有许多其他的靶标。ZNF274 的缺失肯定会影响其他重要基因的表达并破坏其他途径。在这里,我们使用 CRISPR/Cas9 来删除 SNORD116 基因座上的 ZNF274 结合位点,以确定在不改变 ZNF274 蛋白水平的情况下是否可以实现 SNORD116 母源拷贝的激活。与 ZNF274 敲除相比,我们在源自 PWS iPSC 的神经元中获得了 SNORD116 母源沉默等位基因的相似基因表达激活,表明 ZNF274 直接参与了 SNORD116 的抑制。这些结果表明,干扰 ZNF274 在母源 SNORD116 基因座上的结合可能是治疗 PWS 的一种潜在策略。