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首页> 外文期刊>European journal of human genetics: EJHG >A novel splicing mutation in the IQSEC2 gene that modulates the phenotype severity in a family with intellectual disability
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A novel splicing mutation in the IQSEC2 gene that modulates the phenotype severity in a family with intellectual disability

机译:IQSEC2基因中的新型剪接突变,可调节智障家庭的表型严重性

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摘要

The IQSEC2 gene is located on chromosome Xp11.22 and encodes a guanine nucleotide exchange factor for the ADP-ribosylation factor family of small GTPases. This gene is known to have a significant role in cytoskeletal organization, dendritic spine morphology and synaptic organization. Variants in IQSEC2 cause moderate to severe intellectual disability in males and a variable phenotype in females because this gene escapes from X-chromosome inactivation. Here we report on the first splicing variant in IQSEC2 (g.88032_88033del; NG_021296.1) that co-segregates in a family diagnosed with an X-linked form of ID. In a percentage of the cells, the variant activates an intraexonic splice acceptor site that abolishes 26 amino acids from the highly conserved PH domain of IQSEC2 and creates a premature stop codon 36 amino acids later in exon 13. Interestingly, the percentage of aberrant splicing seems to correlate with the severity of the disease in each patient. The impact of this variant in the target tissue is unknown, but we can hypothesize that these differences may be related to the amount of abnormal IQSEC2 transcript. To our knowledge, we are reporting a novel mechanism of IQSEC2 involvement in ID. Variants that affect splicing are related to many genetic diseases and the understanding of their role in disease expands potential opportunities for gene therapy. Modulation of aberrant splicing transcripts can become a potent therapeutic approach for many of these diseases.
机译:IQSEC2基因位于Xp11.22染色体上,编码小GTP酶的ADP-核糖基化因子家族的鸟嘌呤核苷酸交换因子。已知该基因在细胞骨架组织,树突棘形态和突触组织中具有重要作用。 IQSEC2的变异会导致男性中度至严重的智力障碍,而女性则导致可变的表型,因为该基因从X染色体失活中逃脱了。在这里,我们报告了IQSEC2中的第一个剪接变体(g.88032_88033del; NG_021296.1),该变体在诊断为X连锁形式ID的家庭中共同隔离。在一定百分比的细胞中,该变体激活了一个外显子剪接受体位点,该位点从IQSEC2高度保守的PH结构域中删除了26个氨基酸,并在第13外显子中产生了36个氨基酸的提前终止密码子。有趣的是,异常剪接的百分比似乎与每位患者的疾病严重程度相关。该变体在靶组织中的影响尚不清楚,但我们可以假设这些差异可能与IQSEC2转录本异常的数量有关。据我们所知,我们正在报告IQSEC2参与ID的新机制。影响剪接的变体与许多遗传疾病有关,对它们在疾病中的作用的了解扩大了基因治疗的潜在机会。异常剪接转录物的调节可成为许多这些疾病的有效治疗方法。

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