CNTNAP2杂合错义变异体:自闭症谱系障碍和/或其他病理的危险因素?

Journal of Experimental Neuroscience Pub Date : 2018-11-09 eCollection Date: 2018-01-01 DOI:10.1177/1179069518809666
Giorgia Canali, Laurence Goutebroze
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引用次数: 8

摘要

CNTNAP2基因被认为是神经发育障碍的主要易感基因之一,在自闭症谱系障碍(ASD)患者中发现了许多杂合错义变异。然而,这些变异对ASD表现的贡献存在很大争议,因为在对照受试者中也发现了许多杂合错义变异。在最近的一项研究中,我们建立了一种敏感的体外发育细胞试验,以阐明这些变异在与ASD患者Cntnap2杂合性相关的Cntnap2杂合背景下的潜在功能影响。我们发现由CNTNAP2编码的细胞粘附糖蛋白Caspr2在皮质神经元轴突生长中起剂量依赖性作用,并提供了一些变异具有功能后果的原理证明,要么是功能丧失,要么是显性负作用。这表明在人类中可能存在模仿CNTNAP2杂合型和纯合型零突变的表型。我们的观察进一步表明,比最初预期更多的变异可能在功能上有害,并在全脑范围内诱导表型的高度异质性。这就提出了一种有趣的可能性,即CNTNAP2杂合错配变异可以定义一个整体的内表型,从而形成ASD的风险,并质疑除了ASD之外,这些变异是否会导致其他神经发育障碍和/或遗传上不太复杂的病理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

<i>CNTNAP2</i> Heterozygous Missense Variants: Risk Factors for Autism Spectrum Disorder and/or Other Pathologies?

<i>CNTNAP2</i> Heterozygous Missense Variants: Risk Factors for Autism Spectrum Disorder and/or Other Pathologies?

<i>CNTNAP2</i> Heterozygous Missense Variants: Risk Factors for Autism Spectrum Disorder and/or Other Pathologies?

CNTNAP2 Heterozygous Missense Variants: Risk Factors for Autism Spectrum Disorder and/or Other Pathologies?

The CNTNAP2 gene has been proposed to be one of the major susceptibility genes for neurodevelopmental disorders, in which numerous heterozygous missense variants have been identified in patients with autism spectrum disorder (ASD). The contribution of these variants to the manifestations of ASD is however highly controversial because numerous heterozygous missense variants have also been identified in control subjects. In a recent study, we set up a sensitive developmental in vitro cell assay to clarify the potential functional impact of these variants in a heterozygous Cntnap2 background relevant for CNTNAP2 heterozygosity in patients with ASD. We showed that the cell adhesion glycoprotein Caspr2 encoded by CNTNAP2 plays a dose-dependent role in cortical neuron axon growth and provided a proof of principle that some variants have functional consequences, either a loss of function or a dominant-negative effect. This indicates that phenotypes mimicking CNTNAP2 heterozygous and homozygous null mutation may exist in humans. Our observations further suggest that more variants than originally expected could be functionally deleterious and induce a high heterogeneity of phenotypes at the scale of the whole brain. This raises the interesting possibility that CNTNAP2 heterozygous missense variants could define an overall endophenotype shaping a risk for ASD and questions whether, beyond ASD, the variants could contribute to the development of other neurodevelopmental disorders and/or genetically less complex pathologies.

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