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Transcriptional profiling at the DLK1/MEG3 domain explains clinical overlap between imprinting disorders

机译:DLK1 / MEG3结构域的转录谱分析说明印迹疾病之间的临床重叠

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Imprinting disorders (IDs) often affect growth in humans, leading to diseases with overlapping features, regardless of the genomic region affected. IDs related to hypomethylation of the human 14q32.2 region and its DLK1/MEG3 domain are associated with Temple syndrome (TS14). TS14 is a rare type of growth retardation, the clinical signs of which overlap considerably with those of Silver-Russell syndrome (SRS), another ID related to IGF2 down-regulation at 11p15.5 region. We show that 14q32.2 hypomethylation affects expression, not only for genes at this locus but also for other imprinted genes, and especially lowers IGF2 levels at 11p15.5. Furthermore, expression of nonimprinted genes is also affected, some of which are also deregulated in SRS patients. These findings highlight the epigenetic regulation of gene expression at the DLK1/MEG3 domain. Expression profiling of TS14 and SRS patients highlights common signatures, which may account for the clinical overlap observed between TS14 and SRS.
机译:印记疾病(IDs)通常会影响人类的生长,导致特征重叠的疾病,无论受影响的基因组区域如何。与人类14q32.2区及其DLK1 / MEG3域的甲基化不足有关的ID与Temple综合征(TS14)相关。 TS14是一种罕见的生长迟缓类型,其临床体征与Silver-Russell综合征(SRS)的临床体征明显重叠,后者是与11p15.5区域IGF2下调有关的另一个ID。我们表明,14q32.2甲基化影响表达,不仅对于该基因座的基因,还影响其他印迹基因,尤其是降低11p15.5处的IGF2水平。此外,非印迹基因的表达也受到影响,其中一些在SRS患者中也被失调。这些发现强调了在DLK1 / MEG3结构域的基因表达的表观遗传调控。 TS14和SRS患者的表达谱突出显示了共同的特征,这可能解释了TS14和SRS之间观察到的临床重叠。

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