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The genetic architecture of autism spectrum disorders (ASDs) and the potential importance of common regulatory genetic variants

机译:自闭症谱系障碍(ASD)的遗传结构和常见调控遗传变异的潜在重要性

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Currently, there is great interest in identifying genetic variants that contribute to the risk of developing autism spectrum disorders (ASDs), due in part to recent increases in the frequency of diagnosis of these disorders worldwide. While there is nearly universal agreement that ASDs are complex diseases, with multiple genetic and environmental contributing factors, there is less agreement concerning the relative importance of common vs rare genetic variants in ASD liability. Recent observations that rare mutations and copy number variants (CNVs) are frequently associated with ASDs, combined with reduced fecundity of individuals with these disorders, has led to the hypothesis that ASDs are caused primarily by de novo or rare genetic mutations. Based on this model, large-scale whole-genome DNA sequencing has been proposed as the most appropriate method for discovering ASD liability genes. While this approach will undoubtedly identify many novel candidate genes and produce important new insights concerning the genetic causes of these disorders, a full accounting of the genetics of ASDs will be incomplete absent an understanding of the contributions of common regulatory variants, which are likely to influence ASD liability by modifying the effects of rare variants or, by assuming unfavorable combinations, directly produce these disorders. Because it is not yet possible to identify regulatory genetic variants by examination of DNA sequences alone, their identification will require experimentation. In this essay, I discuss these issues and describe the advantages of measurements of allelic expression imbalance (AEI) of mRNA expression for identifying cis -acting regulatory variants that contribute to ASDs. Keywords common-disease-common-variant model common-disease-rare-variant model copy number variant (CNV) allelic expression imbalance (AEI).
机译:当前,对鉴定导致发展自闭症谱系障碍(ASDs)风险的遗传变异非常感兴趣,部分原因是最近全世界这些疾病的诊断频率增加。尽管人们几乎普遍同意,自闭症是一种复杂的疾病,具有多种遗传和环境因素,但关于常见与稀有遗传变异在自闭症责任中的相对重要性却鲜有共识。最近的观察表明,罕见突变和拷贝数变异(CNV)经常与ASD相关,再加上患有这些疾病的个体的生育力下降,导致了这样的假说,即ASD主要由新生或罕见遗传突变引起。基于此模型,大规模全基因组DNA测序已被提出为发现ASD责任基因的最合适方法。尽管此方法无疑会鉴定许多新的候选基因并产生有关这些疾病的遗传原因的重要新见解,但如果不了解可能会影响正常调节变体的作用,则对ASD遗传学的完整解释将是不完整的。通过改变稀有变体的影响或假设不利的组合,ASD责任直接产生这些疾病。由于尚不可能仅通过检查DNA序列来鉴定调节性遗传变异,因此鉴定它们需要进行实验。在本文中,我将讨论这些问题,并描述测量mRNA表达的等位基因表达失衡(AEI)的优势,以鉴定有助于ASD的顺式作用调控变体。关键词普通病-常见变异模型普通病-罕见变异模型拷贝数变异(CNV)等位基因表达失衡(AEI)。

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