Department of Psychiatry, Rudolf Magnus Institute of Neuroscience, University Medical Center Utrecht, Utrecht, The Netherlands.
Mol Psychiatry. 2011 Apr;16(4):442-51. doi: 10.1038/mp.2010.26. Epub 2010 Mar 23.
Recent studies have shown that more than 10% of autism cases are caused by de novo structural genomic rearrangements. Given that some heritable copy number variants (CNVs) have been observed in patients as well as in healthy controls, to date little attention has been paid to the potential function of these non-de novo CNVs in causing autism. A normally intelligent patient with autism, with non-affected parents, was identified with a maternally inherited 10 Mb deletion at 13q21.2. Sequencing of the genes within the deletion identified a paternally inherited nonsynonymous amino-acid substitution at position 614 of diaphanous homolog 3 (DIAPH3) (proline to threonine; Pro614Thr). This variant, present in a highly conserved domain, was not found in 328 healthy subjects. Experiments showed a transient expression of Diaph3 in the developing murine cerebral cortex, indicating it has a function in brain development. Transfection of Pro614Thr in murine fibroblasts showed a significant reduction in the number of induced filopodia in comparison to the wild-type gene. DIAPH3 is involved in cell migration, axon guidance and neuritogenesis, and is suggested to function downstream of SHANK3. Our findings strongly suggest DIAPH3 as a novel autism susceptibility gene. Moreover, this report of a 'double-hit' compound heterozygote for a large, maternally inherited, genomic deletion and a paternally inherited rare missense mutation shows that not only de novo genomic variants in patients should be taken seriously in further study but that inherited CNVs may also provide valuable information.
最近的研究表明,超过 10%的自闭症病例是由新生结构基因组重排引起的。鉴于一些遗传性拷贝数变异(CNVs)在患者和健康对照中都有观察到,迄今为止,人们很少关注这些非新生 CNVs 在引起自闭症方面的潜在功能。一名自闭症患者,智力正常,父母均未受影响,被鉴定出携带母系遗传的 13q21.2 处 10Mb 缺失。对缺失区内基因的测序发现,一种 DIAPH3(无丝分裂相关蛋白 3)的父系遗传非同义氨基酸取代位于第 614 位(脯氨酸到苏氨酸;Pro614Thr)。该变体存在于高度保守的结构域中,在 328 名健康受试者中未发现。实验表明,Diaph3 在发育中的鼠大脑皮质中有短暂表达,表明其在大脑发育中有功能。与野生型基因相比,Pro614Thr 在鼠成纤维细胞中的转染导致诱导的丝状伪足数量显著减少。DIAPH3 参与细胞迁移、轴突导向和神经突生成,并被认为在 SHANK3 下游发挥作用。我们的研究结果强烈表明 DIAPH3 是一种新的自闭症易感基因。此外,本报告中一名“双重打击”复合杂合子,即携带大片段母系遗传基因组缺失和父系遗传罕见错义突变,表明不仅患者中的新生基因组变异在进一步研究中应引起重视,而且遗传 CNVs 也可能提供有价值的信息。