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一项基于基因组的性染色体非整倍体研究提供了证据,表明 Y 染色体剂量对自闭症风险的影响。

A genome-first study of sex chromosome aneuploidies provides evidence of Y chromosome dosage effects on autism risk.

机构信息

Autism & Developmental Medicine Institute, Geisinger, Lewisburg, PA, US.

Office of Research Affairs, Departments of Pediatrics and Psychiatry, University of Florida College of Medicine, Jacksonville, FL, US.

出版信息

Nat Commun. 2024 Oct 15;15(1):8897. doi: 10.1038/s41467-024-53211-7.

Abstract

A female protective effect has long been postulated as the primary explanation for the four-fold increase of autism spectrum disorder (ASD) diagnoses in males versus females. However, genetic and epidemiological investigations of this hypothesis have so far failed to explain the large difference in ASD prevalence between the sexes. To address this knowledge gap, we examined sex chromosome aneuploidy in a large ASD case-control cohort to evaluate the relationship between X and Y chromosome dosage and ASD risk. From these data, we modeled three relationships between sex chromosome dosage and ASD risk: the extra Y effect, the extra X effect, and sex chromosome haploinsufficiency. We found that the extra Y effect increased ASD risk significantly more than the extra X effect. Among females, we observed a large association between 45, X and ASD, confirming sex chromosome haploinsufficiency as a strong ASD risk factor. These results provide a framework for understanding the relationship between X and Y chromosome dosage on ASD, which may inform future research investigating genomic contributors to the observed sex difference.

摘要

长期以来,人们一直假设女性具有保护作用,这是男性自闭症谱系障碍(ASD)诊断率是女性的四倍的主要解释。然而,对这一假设的遗传和流行病学研究迄今为止未能解释男女之间 ASD 患病率的巨大差异。为了解决这一知识空白,我们在一个大型 ASD 病例对照队列中检查了性染色体非整倍性,以评估 X 和 Y 染色体剂量与 ASD 风险之间的关系。根据这些数据,我们建立了性染色体剂量与 ASD 风险之间的三种关系模型:额外 Y 效应、额外 X 效应和性染色体单倍体不足。我们发现,额外 Y 效应显著增加了 ASD 风险,超过了额外 X 效应。在女性中,我们观察到 45,X 和 ASD 之间存在很大的关联,证实了性染色体单倍体不足是一个很强的 ASD 风险因素。这些结果为理解 X 和 Y 染色体剂量对 ASD 的关系提供了一个框架,这可能为未来研究观察到的性别差异的基因组贡献提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64a9/11480344/e1ddb00d4521/41467_2024_53211_Fig1_HTML.jpg

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