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A maternal hypomethylation syndrome presenting as transient neonatal diabetes mellitus.

机译:母体甲基化不足综合征,表现为短暂性新生儿糖尿病。

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The expression of imprinted genes is mediated by allele-specific epigenetic modification of genomic DNA and chromatin, including parent of origin-specific DNA methylation. Dysregulation of these genes causes a range of disorders affecting pre- and post-natal growth and neurological function. We investigated a cohort of 12 patients with transient neonatal diabetes whose disease was caused by loss of maternal methylation at the TNDM locus. We found that six of these patients showed a spectrum of methylation loss, mosaic with respect to the extent of the methylation loss, the tissues affected and the genetic loci involved. Five maternally methylated loci were affected, while one maternally methylated and two paternally methylated loci were spared. These patients had higher birth weight and were more phenotypically diverse than other TNDM patients with different aetiologies, presumably reflecting the influence of dysregulation of multiple imprinted genes. We propose the existence of a maternal hypomethylation syndrome, and therefore suggest that any patient with methylation loss at one maternally-methylated locus may also manifest methylation loss at other loci, potentially complicating or even confounding the clinical presentation.
机译:印迹基因的表达由基因组DNA和染色质的等位基因特异性表观遗传修饰介导,包括起源特异性DNA甲基化的母体。这些基因的失调会导致一系列影响产前和产后生长和神经功能的疾病。我们调查了12例短暂性新生儿糖尿病患者,他们的疾病是由TNDM位点的母体甲基化丧失引起的。我们发现这些患者中有六例显示出甲基化损失的频谱,关于甲基化损失的程度,受影响的组织和涉及的基因位点的镶嵌图。五个母亲甲基化基因座受到影响,而一个母亲甲基化基因座和两个父亲甲基化基因座被幸免。与其他具有不同病因的TNDM患者相比,这些患者的出生体重更高,并且在表型上也更加多样化,这大概反映了多重印迹基因失调的影响。我们提出了母体低甲基化综合症的存在,因此建议在一个母体甲基化位点有甲基化缺失的任何患者也可能在其他位点出现甲基化缺失,这可能使临床表现复杂化甚至混淆。

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