Biallelic variants in LINGO1 are associated with autosomal recessive intellectual disability, microcephaly, speech and motor delay

外显子组测序 错义突变 小头畸形 智力残疾 遗传学 生物 外显子组 斑马鱼 疾病基因鉴定 表型 损失函数 基因
作者
Muhammad Ansar,Saima Riazuddin,Muhammad Tahir Sarwar,Periklis Makrythanasis,Sohail Aziz Paracha,Zafar Iqbal,Jamshed Khan,Muhammad Zaman Khan Assir,Mureed Hussain,Asma Razzaq,Daniel L. Polla,Abid Sohail Taj,Asbjørn Holmgren,Naila Batool,Doriana Misceo,Justyna Iwaszkiewicz,Arjan P.M. de Brouwer,Michel Guipponi,Sylviane Hanquinet,Vincent Zoete,Federico Santoni,Eirik Frengen,Jawad Ahmed,Sheikh Riazuddin,Hans van Bokhoven,Stylianos E. Antonarakis
出处
期刊:Genetics in Medicine [Elsevier BV]
卷期号:20 (7): 778-784 被引量:21
标识
DOI:10.1038/gim.2017.113
摘要

To elucidate the novel molecular cause in two unrelated consanguineous families with autosomal recessive intellectual disability.A combination of homozygosity mapping and exome sequencing was used to locate the plausible genetic defect in family F162, while only exome sequencing was followed in the family PKMR65. The protein 3D structure was visualized with the University of California-San Francisco Chimera software.All five patients from both families presented with severe intellectual disability, aggressive behavior, and speech and motor delay. Four of the five patients had microcephaly. We identified homozygous missense variants in LINGO1, p.(Arg290His) in family F162 and p.(Tyr288Cys) in family PKMR65. Both variants were predicted to be pathogenic, and segregated with the phenotype in the respective families. Molecular modeling of LINGO1 suggests that both variants interfere with the glycosylation of the protein.LINGO1 is a transmembrane receptor, predominantly found in the central nervous system. Published loss-of-function studies in mouse and zebrafish have established a crucial role of LINGO1 in normal neuronal development and central nervous system myelination by negatively regulating oligodendrocyte differentiation and neuronal survival. Taken together, our results indicate that biallelic LINGO1 missense variants cause autosomal recessive intellectual disability in humans.
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