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自闭症中 CGG 重复的非孟德尔遗传模式和极端偏离率。

Non-Mendelian inheritance patterns and extreme deviation rates of CGG repeats in autism.

机构信息

Department of Medical Genetics, University of Antwerp, 2600 Antwerp, Belgium.

NIHR BioResource, Cambridge University Hospitals NHS Foundation Trust, Cambridge Biomedical Campus, Cambridge, CB2 0QQ, United Kingdom.

出版信息

Genome Res. 2022 Nov-Dec;32(11-12):1967-1980. doi: 10.1101/gr.277011.122. Epub 2022 Nov 9.

Abstract

As expansions of CGG short tandem repeats (STRs) are established as the genetic etiology of many neurodevelopmental disorders, we aimed to elucidate the inheritance patterns and role of CGG STRs in autism-spectrum disorder (ASD). By genotyping 6063 CGG STR loci in a large cohort of trios and quads with an ASD-affected proband, we determined an unprecedented rate of CGG repeat length deviation across a single generation. Although the concept of repeat length being linked to deviation rate was solidified, we show how shorter STRs display greater degrees of size variation. We observed that CGG STRs did not segregate by Mendelian principles but with a bias against longer repeats, which appeared to magnify as repeat length increased. Through logistic regression, we identified 19 genes that displayed significantly higher rates and degrees of CGG STR expansion within the ASD-affected probands ( < 1 × 10). This study not only highlights novel repeat expansions that may play a role in ASD but also reinforces the hypothesis that CGG STRs are specifically linked to human cognition.

摘要

由于 CGG 短串联重复(STR)的扩增已被确定为许多神经发育障碍的遗传病因,我们旨在阐明 CGG STR 在自闭症谱系障碍(ASD)中的遗传模式和作用。通过对一个患有 ASD 的先证者的大型三人和四人队列中的 6063 个 CGG STR 基因座进行基因分型,我们确定了在单个世代中 CGG 重复长度偏离的前所未有的速率。尽管重复长度与偏离率相关的概念已经得到巩固,但我们展示了较短的 STR 如何显示出更大的大小变化程度。我们观察到 CGG STR 不符合孟德尔原则,而是偏向于较长的重复,随着重复长度的增加,这种偏向似乎会放大。通过逻辑回归,我们在受 ASD 影响的先证者中鉴定出 19 个基因,这些基因的 CGG STR 扩展率和程度显著更高(<1×10-4)。这项研究不仅突出了可能在 ASD 中发挥作用的新的重复扩展,还加强了 CGG STR 与人类认知特异性相关的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d59b/9808627/6b9b84a1452e/1967f01.jpg

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