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NSD1 mutations generate a genome-wide DNA methylation signature

机译:NSD1突变产生全基因组DNA甲基化特征

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摘要

Sotos syndrome (SS) represents an important human model system for the study of epigenetic regulation; it is an overgrowth/intellectual disability syndrome caused by mutations in a histone methyltransferase, NSD1. As layered epigenetic modifications are often interdependent, we propose that pathogenic NSD1 mutations have a genome-wide impact on the most stable epigenetic mark, DNA methylation (DNAm). By interrogating DNAm in SS patients, we identify a genome-wide, highly significant NSD1(+/-)-specific signature that differentiates pathogenic NSD1 mutations from controls, benign NSD1 variants and the clinically overlapping Weaver syndrome. Validation studies of independent cohorts of SS and controls assigned 100% of these samples correctly. This highly specific and sensitive NSD1(+/-) signature encompasses genes that function in cellular morphogenesis and neuronal differentiation, reflecting cardinal features of the SS phenotype. The identification of SS-specific genome-wide DNAm alterations will facilitate both the elucidation of the molecular pathophysiology of SS and the development of improved diagnostic testing.
机译:Sotos综合征(SS)代表着重要的人类模型系统,用于研究表观遗传调控。它是由组蛋白甲基转移酶NSD1突变引起的过度生长/智力残疾综合症。由于分层的表观遗传修饰通常是相互依赖的,因此我们提出,致病性NSD1突变对最稳定的表观遗传标记DNA甲基化(DNAm)具有全基因组影响。通过询问SS患者中的DNAm,我们确定了一个全基因组,高度重要的NSD1(+/-)特异特征,该特征将致病性NSD1突变与对照,良性NSD1变体和临床重叠的Weaver综合征区分开。对SS和对照的独立队列进行的验证研究正确分配了这些样品的100%。这种高度特异性和敏感的NSD1(+/-)签名包含在细胞形态发生和神经元分化中起作用的基因,反映了SS表型的基本特征。 SS特有的全基因组DNAm改变的鉴定将有助于阐明SS的分子病理生理学和改进诊断测试的发展。

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