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De novo POGZ mutations in sporadic autism disrupt the DNA-binding activity of POGZ

机译:散发性自闭症中的从头POGZ突变破坏了POGZ的DNA结合活性

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BackgroundA spontaneous de novo mutation is a new mutation appeared in a child that neither the parent carries. Recent studies suggest that recurrent de novo loss-of-function mutations identified in patients with sporadic autism spectrum disorder (ASD) play a key role in the etiology of the disorder. POGZ is one of the most recurrently mutated genes in ASD patients. Our laboratory and other groups have recently found that POGZ has at least 18 independent de novo possible loss-of-function mutations. Despite the apparent importance, these mutations have never previously been assessed via functional analysis. MethodsUsing wild-type, the Q1042R-mutated, and R1008X-mutated POGZ, we performed DNA-binding experiments for proteins that used the CENP-B box sequence in vitro. Data were statistically analyzed by one-way ANOVA followed by Tukey-Kramer post hoc tests. ResultsThis study reveals that ASD-associated de novo mutations (Q1042R and R1008X) in the POGZ disrupt its DNA-binding activity. ConclusionsHere, we report the first functional characterization of de novo POGZ mutations identified in sporadic ASD cases. These findings provide important insights into the cellular basis of ASD.
机译:背景自发的从头突变是在父母都不携带的孩子中出现的新突变。最近的研究表明,在散发性自闭症谱系障碍(ASD)患者中发现的复发性新功能丧失突变在该病的病因中起关键作用。 POGZ是ASD患者中最经常发生突变的基因之一。我们的实验室和其他小组最近发现,POGZ至少有18个独立的从头可能的功能丧失突变。尽管具有明显的重要性,但以前从未通过功能分析来评估这些突变。方法使用野生型,Q1042R突变和R1008X突变的POGZ,对体外使用CENP-B盒序列的蛋白质进行DNA结合实验。数据通过单向方差分析,随后的Tukey-Kramer事后检验进行统计分析。结果这项研究揭示了POGZ中与ASD相关的从头突变(Q1042R和R1008X)破坏了其DNA结合活性。结论在这里,我们报道了在散发性ASD病例中发现的从头POGZ突变的第一个功能特征。这些发现为ASD的细胞基础提供了重要的见识。

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