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Molecular and cellular issues of KMT2A variants involved in Wiedemann-Steiner syndrome

机译:与Wiedemann-Steiner综合征有关的KMT2A变体的分子和细胞问题

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摘要

Variants in KMT2A, encoding the histone methyltransferase KMT2A, are a growing cause of intellectual disability (ID). Up to now, the majority of KMT2A variants are non-sense and frameshift variants causing a typical form of Wiedemann–Steiner syndrome. We studied KMT2A gene in a cohort of 200 patients with unexplained syndromic and non-syndromic ID and identified four novel variants, one splice and three missense variants, possibly deleterious. We used primary cells from the patients and molecular approaches to determine the deleterious effects of those variants on KMT2A expression and function. For the putative splice variant c.11322-1G>A, we showed that it led to only one nucleotide deletion and loss of the C-terminal part of the protein. For two studied KMT2A missense variants, c.3460C>T (p.(Arg1154Trp)) and c.8558T>G (p.(Met2853Arg)), located at the cysteine-rich CXXC domain and the transactivation domain of the protein, respectively, we found altered KMT2A target genes expression in patient’s fibroblasts compared to controls. Furthermore, we found a disturbed subcellular distribution of KMT2A for the c.3460C>T mutant. Taken together, our results demonstrated the deleterious impact of the splice variant and of the missense variants located at two different functional domains and suggested reduction of KMT2A function as the disease-causing mechanism.
机译:编码组蛋白甲基转移酶KMT2A的KMT2A变体是导致智力障碍(ID)的原因。到目前为止,大多数KMT2A变体都是无义和移码变体,是典型的Wiedemann-Steiner综合征形式。我们在200名患有无法解释的综合征和非综合征ID的患者队列中研究了KMT2A基因,并鉴定了四个新的变异体,一个剪接和三个错义变异体,可能有害。我们使用了来自患者的原代细胞和分子方法来确定这些变异体对KMT2A表达和功能的有害影响。对于推定的剪接变体c.11322-1G> A,我们显示了它仅导致一个核苷酸缺失和蛋白质C末端部分的丢失。对于两个研究的KMT2A错义变体,c.3460C> T(p。(Arg1154Trp))和c.8558T> G(p。(Met2853Arg))分别位于富含半胱氨酸的CXXC结构域和该蛋白的反式激活结构域,我们发现与对照组相比,患者成纤维细胞中KMT2A靶基因的表达发生了变化。此外,我们发现c.3460C> T突变体的KMT2A的亚细胞分布受到干扰。两者合计,我们的结果表明位于两个不同功能域的剪接变体和错义变体的有害影响,并建议减少KMT2A作为致病机制的功能。

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