DDX53的遗传变异与Xp22.11位点相关的自闭症谱系障碍有关。

IF 8.1 1区 生物学 Q1 GENETICS & HEREDITY
American journal of human genetics Pub Date : 2025-01-02 Epub Date: 2024-12-19 DOI:10.1016/j.ajhg.2024.11.003
Marcello Scala, Clarrisa A Bradley, Jennifer L Howe, Brett Trost, Nelson Bautista Salazar, Carole Shum, Marla Mendes, Miriam S Reuter, Evdokia Anagnostou, Jeffrey R MacDonald, Sangyoon Y Ko, Paul W Frankland, Jessica Charlebois, Mayada Elsabbagh, Leslie Granger, George Anadiotis, Verdiana Pullano, Alfredo Brusco, Roberto Keller, Sarah Parisotto, Helio F Pedro, Laina Lusk, Pamela Pojomovsky McDonnell, Ingo Helbig, Sureni V Mullegama, Emilie D Douine, Rosario Ivetth Corona, Bianca E Russell, Stanley F Nelson, Claudio Graziano, Maria Schwab, Laurie Simone, Federico Zara, Stephen W Scherer
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引用次数: 0

摘要

自闭症谱系障碍(ASD)表现出约4:1的男女性别偏见,其特征是早发性社交/沟通技能障碍、兴趣受限和刻板行为。Xp22.11位点的破坏与男性ASD有关。该基因座包括三外显子PTCHD1,一个相邻的多异构体长非编码RNA (lncRNA) PTCHD1- as(横跨约1 Mb),以及一个被称为DDX53的单外显子RNA解旋酶,它是PTCHD1- as的内含子。虽然PTCHD1/PTCHD1- as与ASD之间的关系正在研究中,但DDX53的作用尚未得到全面的研究,部分原因是没有明显的功能性小鼠同源物。通过临床测试,我们从8个不相关的家族中鉴定出8名患有ASD的男性和2名女性,他们携带罕见的、可预测的DDX53损伤或功能丧失变体。此外,我们确定了一个由男性先证及其患有高功能自闭症的母亲组成的家庭,他们都有一个涉及DDX53和非编码RNA PTCHD1-AS外显子的基因缺失。然后,我们检查了数据库,包括自闭症之声MSSNG和西蒙斯基金会自闭症研究倡议,以及人口控制。我们确定了另外26名ASD患者,他们携带19种主要是母系遗传的、罕见的、破坏性的DDX53变异,包括从原始临床分析中在家族中检测到的两种变异。我们在人类中的发现支持DDX53和ASD之间的直接联系,这将在临床基因检测中具有重要意义。这些与自闭症相关的发现,加上在小鼠中未发现功能性同源基因的观察,也可能影响ASD小鼠模型的设计和解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic variants in DDX53 contribute to autism spectrum disorder associated with the Xp22.11 locus.

Autism spectrum disorder (ASD) exhibits an ∼4:1 male-to-female sex bias and is characterized by early-onset impairment of social/communication skills, restricted interests, and stereotyped behaviors. Disruption of the Xp22.11 locus has been associated with ASD in males. This locus includes the three-exon PTCHD1, an adjacent multi-isoform long noncoding RNA (lncRNA) named PTCHD1-AS (spanning ∼1 Mb), and a poorly characterized single-exon RNA helicase named DDX53 that is intronic to PTCHD1-AS. While the relationship between PTCHD1/PTCHD1-AS and ASD is being studied, the role of DDX53 has not been comprehensively examined, in part because there is no apparent functional murine ortholog. Through clinical testing, here, we identified 8 males and 2 females with ASD from 8 unrelated families carrying rare, predicted damaging or loss-of-function variants in DDX53. Additionally, we identified a family consisting of a male proband and his affected mother with high-functioning autism, both harboring a gene deletion involving DDX53 and exons of the noncoding RNA PTCHD1-AS. Then, we examined databases, including the Autism Speaks MSSNG and Simons Foundation Autism Research Initiative, as well as population controls. We identified 26 additional individuals with ASD harboring 19 mostly maternally inherited, rare, damaging DDX53 variations, including two variants detected in families from the original clinical analysis. Our findings in humans support a direct link between DDX53 and ASD, which will be important in clinical genetic testing. These same autism-related findings, coupled with the observation that a functional orthologous gene is not found in mice, may also influence the design and interpretation of murine modeling of ASD.

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来源期刊
CiteScore
14.70
自引率
4.10%
发文量
185
审稿时长
1 months
期刊介绍: The American Journal of Human Genetics (AJHG) is a monthly journal published by Cell Press, chosen by The American Society of Human Genetics (ASHG) as its premier publication starting from January 2008. AJHG represents Cell Press's first society-owned journal, and both ASHG and Cell Press anticipate significant synergies between AJHG content and that of other Cell Press titles.
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