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SLC22A5 5'UTR 中产生的一个突变导致上游翻译起始密码子,是原发性肉碱缺乏症的常见病因。

A mutation creating an upstream translation initiation codon in SLC22A5 5'UTR is a frequent cause of primary carnitine deficiency.

机构信息

Laboratory Genetic Metabolic Diseases, Amsterdam Gastroenterology and Metabolism Research Institute, University of Amsterdam, Amsterdam, The Netherlands.

United for Metabolic Diseases, The Netherlands.

出版信息

Hum Mutat. 2019 Oct;40(10):1899-1904. doi: 10.1002/humu.23839. Epub 2019 Jul 3.

Abstract

Primary carnitine deficiency is caused by a defect in the active cellular uptake of carnitine by Na -dependent organic cation transporter novel 2 (OCTN2). Genetic diagnostic yield for this metabolic disorder has been relatively low, suggesting that disease-causing variants are missed. We Sanger sequenced the 5' untranslated region (UTR) of SLC22A5 in individuals with possible primary carnitine deficiency in whom no or only one mutant allele had been found. We identified a novel 5'-UTR c.-149G>A variant which we characterized by expression studies with reporter constructs in HeLa cells and by carnitine-transport measurements in fibroblasts using a newly developed sensitive assay based on tandem mass spectrometry. This variant, which we identified in 57 of 236 individuals of our cohort, introduces a functional upstream out-of-frame translation initiation codon. We show that the codon suppresses translation from the wild-type ATG of SLC22A5, resulting in reduced OCTN2 protein levels and concomitantly lower transport activity. With an allele frequency of 24.2% the c.-149G>A variant is the most frequent cause of primary carnitine deficiency in our cohort and may explain other reported cases with an incomplete genetic diagnosis. Individuals carrying this variant should be clinically re-evaluated and monitored to determine if this variant has clinical consequences.

摘要

原发性肉碱缺乏症是由于 Na+-依赖性有机阳离子转运体新型 2(OCTN2)的细胞摄取活性缺陷引起的。这种代谢紊乱的遗传诊断率相对较低,这表明可能存在未被发现的致病变异。我们对可能患有原发性肉碱缺乏症但仅发现一个突变等位基因的个体进行了 SLC22A5 的 5'非翻译区(UTR)的 Sanger 测序。我们鉴定了一个新的 5'-UTR c.-149G>A 变异,通过在 HeLa 细胞中使用报告构建体进行表达研究和使用基于串联质谱的新开发的灵敏测定法在成纤维细胞中进行肉碱转运测量对其进行了表征。我们在我们的队列中的 236 名个体中的 57 名个体中鉴定出这种变异,它引入了一个功能性的上游框外起始密码子。我们表明该密码子抑制了 SLC22A5 的野生型 ATG 的翻译,导致 OCTN2 蛋白水平降低,同时转运活性降低。该 c.-149G>A 变异的等位基因频率为 24.2%,是我们队列中原发性肉碱缺乏症最常见的原因,可能解释了其他报道的不完全遗传诊断的病例。携带这种变异的个体应进行临床重新评估和监测,以确定该变异是否具有临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a48/6790604/7627931bd09f/HUMU-40-1899-g001.jpg

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