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Recent Advances in Understanding the Genetic Architecture of Autism.
Annual Review of Genomics and Human Genetics ( IF 7.7 ) Pub Date : 2020-09-01 , DOI: 10.1146/annurev-genom-121219-082309
Caroline M Dias 1, 2, 3 , Christopher A Walsh 2, 3, 4, 5, 6
Affiliation  

Recent advances in understanding the genetic architecture of autism spectrum disorder have allowed for unprecedented insight into its biological underpinnings. New studies have elucidated the contributions of a variety of forms of genetic variation to autism susceptibility. While the roles of de novo copy number variants and single-nucleotide variants—causing loss-of-function or missense changes—have been increasingly recognized and refined, mosaic single-nucleotide variants have been implicated more recently in some cases. Moreover, inherited variants (including common variants) and, more recently, rare recessive inherited variants have come into greater focus. Finally, noncoding variants—both inherited and de novo—have been implicated in the last few years. This work has revealed a convergence of diverse genetic drivers on common biological pathways and has highlighted the ongoing importance of increasing sample size and experimental innovation. Continuing to synthesize these genetic findings with functional and phenotypic evidence and translating these discoveries to clinical care remain considerable challenges for the field.

中文翻译:


了解自闭症遗传结构的最新进展。

在理解自闭症谱系障碍的遗传结构方面的最新进展,使人们对其疾病的生物学基础有了空前的认识。新的研究阐明了多种形式的遗传变异对自闭症易感性的贡献。尽管引起功能丧失或错义变化的从头拷贝数变体和单核苷酸变体的作用已得到越来越多的认识和完善,但在某些情况下,镶嵌单核苷酸变体的含义更为新近。此外,继承的变体(包括常见变体)以及最近才出现的罕见隐性继承变体已成为人们关注的焦点。最后,在过去几年中涉及非编码变体(继承和从头开始)。这项工作揭示了通用生物学途径上各种遗传驱动因素的融合,并强调了增加样本量和实验创新的持续重要性。继续用功能和表型证据合成这些遗传发现并将这些发现转化为临床护理仍然是该领域的巨大挑战。

更新日期:2020-09-03
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