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Disruption of TWIST1 translation by 5′ UTR variants in Saethre‐Chotzen syndrome

机译:Saethre-Chotzen综合征的5UTR变异破坏TWIST1翻译

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摘要

Saethre‐Chotzen syndrome (SCS), one of the most common forms of syndromic craniosynostosis (premature fusion of the cranial sutures), results from haploinsufficiency of TWIST1, caused by deletions of the entire gene or loss‐of‐function variants within the coding region. To determine whether non‐coding variants also contribute to SCS, we screened 14 genetically undiagnosed SCS patients using targeted capture sequencing, and identified novel single nucleotide variants (SNVs) in the 5′ untranslated region (UTR) of TWIST1 in two unrelated SCS cases. We show experimentally that these variants, which create translation start sites in the TWIST1 leader sequence, reduce translation from the main open reading frame (mORF). This is the first demonstration that non‐coding SNVs of TWIST1 can cause SCS, and highlights the importance of screening the 5′ UTR in clinically diagnosed SCS patients without a coding mutation. Similar 5′ UTR variants, particularly of haploinsufficient genes, may represent an under‐ascertained cause of monogenic disease.
机译:Saethre-Chotzen综合征(SCS)是综合征性颅骨突膜增生的最常见形式之一(颅骨缝线过早融合),是由于TWIST1的单倍性不足导致的,这是由于整个基因缺失或编码区域内的功能丧失导致的。为了确定非编码变体是否也对SCS起作用,我们使用靶向捕获测序筛选了14位遗传未确诊的SCS患者,并在两个不相关的SCS病例中TWIST1的5'非翻译区(UTR)中鉴定了新型单核苷酸变体(SNV)。我们通过实验证明,这些变体在TWIST1前导序列中创建翻译起始位点,可减少来自主要开放阅读框(mORF)的翻译。这是TWIST1的非编码SNV可以引起SCS的第一个证明,并突出显示了在临床上没有编码突变的SCS患者中筛选5'UTR的重要性。相似的5'UTR变异,尤其是单倍基因不足的5'UTR变异,可能代表了单基因疾病的不确定原因。

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