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CADPS2 的母系遗传基因突变存在于自闭症谱系障碍和智力残疾患者中。

Maternally inherited genetic variants of CADPS2 are present in autism spectrum disorders and intellectual disability patients.

机构信息

Unit of Medical Genetics, Department of Medical and Surgical Sciences, S. Orsola-Malpighi Hospital University of Bologna, Bologna, Italy.

Unit of Medical Genetics, Department of Medical and Surgical Sciences, S. Orsola-Malpighi Hospital University of Bologna, Bologna, Italy Department of Pharmacy and Biotechnology, University of Bologna, Bologna, Italy.

出版信息

EMBO Mol Med. 2014 Jun;6(6):795-809. doi: 10.1002/emmm.201303235. Epub 2014 Apr 6.

Abstract

Intellectual disability (ID) and autism spectrum disorders (ASDs) are complex neuropsychiatric conditions, with overlapping clinical boundaries in many patients. We identified a novel intragenic deletion of maternal origin in two siblings with mild ID and epilepsy in the CADPS2 gene, encoding for a synaptic protein involved in neurotrophin release and interaction with dopamine receptor type 2 (D2DR). Mutation screening of 223 additional patients (187 with ASD and 36 with ID) identified a missense change of maternal origin disrupting CADPS2/D2DR interaction. CADPS2 allelic expression was tested in blood and different adult human brain regions, revealing that the gene was monoallelically expressed in blood and amygdala, and the expressed allele was the one of maternal origin. Cadps2 gene expression performed in mice at different developmental stages was biallelic in the postnatal and adult stages; however, a monoallelic (maternal) expression was detected in the embryonal stage, suggesting that CADPS2 is subjected to tissue- and temporal-specific regulation in human and mice. We suggest that CADPS2 variants may contribute to ID/ASD development, possibly through a parent-of-origin effect.

摘要

智力残疾 (ID) 和自闭症谱系障碍 (ASD) 是复杂的神经精神疾病,许多患者的临床边界存在重叠。我们在两个患有轻度 ID 和癫痫的兄弟姐妹中发现了 CADPS2 基因的一个新的母源性基因内缺失,该基因编码一种参与神经营养因子释放和与多巴胺受体 2 (D2DR) 相互作用的突触蛋白。对 223 名额外患者(187 名 ASD 和 36 名 ID)进行突变筛查,发现一个母源性错义变化破坏了 CADPS2/D2DR 相互作用。在血液和不同的成人脑组织中测试 CADPS2 等位基因表达,发现该基因在血液和杏仁核中呈单等位基因表达,并且表达的等位基因来自母系。在不同发育阶段的小鼠中进行 Cadps2 基因表达分析显示,在出生后和成年阶段呈双等位基因表达;然而,在胚胎期检测到单等位基因(母系)表达,提示 CADPS2 在人和小鼠中受到组织和时间特异性调节。我们认为 CADPS2 变体可能导致 ID/ASD 发育,可能通过亲本来源效应。

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