Mapping autosomal recessive intellectual disability: combined microarray and exome sequencing identifies 26 novel candidate genes in 192 consanguineous families

遗传学 外显子组测序 生物 疾病基因鉴定 候选基因 外显子组 拷贝数变化 基因 血缘关系 错义突变 突变 基因组
作者
Ricardo Harripaul,Nasim Vasli,А. О. Михайлов,Muhammad Rafiq,Kirti Mittal,Christian Windpassinger,Taimoor I. Sheikh,Abdul Noor,Hina Mahmood,Samantha I Downey,Maneesha Johnson,Kayla Vleuten,Lauren Bell,Muhammad Ilyas,Falak Sher Khan,Valeed Khan,Mohammad Moradi,M. Ayaz,Farooq Naeem,Asieh Heidari,Iqra I. Ahmed,Shirin Ghadami,Zehra Agha,Sirous Zeinali,Raheel Qamar,Hossein Mozhdehipanah,Peter John,Asif Mir,Muhammad Ansar,Leon French,Muhammad Ayub,John B. Vincent
出处
期刊:Molecular Psychiatry [Springer Nature]
卷期号:23 (4): 973-984 被引量:156
标识
DOI:10.1038/mp.2017.60
摘要

Approximately 1% of the global population is affected by intellectual disability (ID), and the majority receive no molecular diagnosis. Previous studies have indicated high levels of genetic heterogeneity, with estimates of more than 2500 autosomal ID genes, the majority of which are autosomal recessive (AR). Here, we combined microarray genotyping, homozygosity-by-descent (HBD) mapping, copy number variation (CNV) analysis, and whole exome sequencing (WES) to identify disease genes/mutations in 192 multiplex Pakistani and Iranian consanguineous families with non-syndromic ID. We identified definite or candidate mutations (or CNVs) in 51% of families in 72 different genes, including 26 not previously reported for ARID. The new ARID genes include nine with loss-of-function mutations (ABI2, MAPK8, MPDZ, PIDD1, SLAIN1, TBC1D23, TRAPPC6B, UBA7 and USP44), and missense mutations include the first reports of variants in BDNF or TET1 associated with ID. The genes identified also showed overlap with de novo gene sets for other neuropsychiatric disorders. Transcriptional studies showed prominent expression in the prenatal brain. The high yield of AR mutations for ID indicated that this approach has excellent clinical potential and should inform clinical diagnostics, including clinical whole exome and genome sequencing, for populations in which consanguinity is common. As with other AR disorders, the relevance will also apply to outbred populations.

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