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Missense variants in AIMP1 gene are implicated in autosomal recessive intellectual disability without neurodegeneration

机译:AIMP1基因的错义变异涉及常染色体隐性智力障碍而无神经退行性变

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摘要

AIMP1/p43 is a multifunctional non-catalytic component of the multisynthetase complex. The complex consists of nine catalytic and three non-catalytic proteins, which catalyze the ligation of amino acids to their cognate tRNA isoacceptors for use in protein translation. To date, two allelic variants in the AIMP1 gene have been reported as the underlying cause of autosomal recessive primary neurodegenerative disorder. Here, we present two consanguineous families from Pakistan and Iran, presenting with moderate to severe intellectual disability, global developmental delay, and speech impairment without neurodegeneration. By the combination of homozygosity mapping and next generation sequencing, we identified two homozygous missense variants, p.(Gly299Arg) and p.(Val176Gly), in the gene AIMP1 that co-segregated with the phenotype in the respective families. Molecular modeling of the variants revealed deleterious effects on the protein structure that are predicted to result in reduced AIMP1 function. Our findings indicate that the clinical spectrum for AIMP1 defects is broader than witnessed so far.
机译:AIMP1 / p43是多合成酶复合物的多功能非催化成分。该复合物由9种催化蛋白和3种非催化蛋白组成,它们催化氨基酸与其同源tRNA异构体的连接,用于蛋白质翻译。迄今为止,已经报道了AIMP1基因中的两个等位基因变体是常染色体隐性原发性神经退行性疾病的根本原因。在这里,我们介绍了来自巴基斯坦和伊朗的两个近亲家庭,表现为中度至重度智力障碍,全球发育迟缓和语言障碍,而没有神经变性。通过纯合作图和下一代测序的组合,我们在与各个家族的表型共同分离的基因AIMP1中鉴定了两个纯合的错义变体p。(Gly299Arg)和p。(Val176Gly)。变异体的分子模型揭示了对蛋白质结构的有害影响,预计会导致AIMP1功能降低。我们的发现表明,AIMP1缺陷的临床范围比迄今为止目睹的范围要广。

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