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Rare Inherited Variation in Autism: Beginning to See the Forest and a Few Trees

机译:自闭症的罕见遗传变异:开始看到森林和几棵树

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摘要

In this issue of Neuron, two papers (Lim et al., 2013; Yu et al., 2013) use whole-exome sequencing (WES) to elucidate the contribution of inherited variation to the risk for autism by leveraging the increased penetrance of homozygous and compound heterozygous rare variants in autosomes and hemizygous rare variants in the X chromosome of males. Together, they expand our knowledge about the genetic architecture of ASD, verify previously identified genes, and identify novel mutations that will guide the discovery of the critical biological processes disrupted in autism.
机译:在本期《神经元》中,有两篇论文(Lim等人,2013; Yu等人,2013)使用全外显子测序(WES)通过利用纯合子的增加的渗透性来阐明遗传变异对自闭症风险的贡献。以及常染色体上的复合杂合子稀有变异体和雄性X染色体上的半合子稀有变异体。他们一起扩大了我们对ASD遗传结构的认识,验证了先前鉴定的基因,并鉴定了新的突变,这些突变将指导发现自闭症的关键生物学过程的发现。

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