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通过筛查 SLC25A13 中的 11 种常见突变,实现 citrin 缺陷的简单快速基因检测。

Simple and rapid genetic testing for citrin deficiency by screening 11 prevalent mutations in SLC25A13.

机构信息

Department of Pediatrics, Tohoku University Graduate School of Medicine, 1-1 Seiryo-machi, Aoba-ku, Sendai, Miyagi 980-8574, Japan.

出版信息

Mol Genet Metab. 2012 Apr;105(4):553-8. doi: 10.1016/j.ymgme.2011.12.024. Epub 2012 Jan 8.

DOI:10.1016/j.ymgme.2011.12.024
PMID:22277121
Abstract

Citrin deficiency is an autosomal recessive disorder caused by mutations in the SLC25A13 gene and has two disease outcomes: adult-onset type II citrullinemia and neonatal intrahepatic cholestasis caused by citrin deficiency. The clinical appearance of these diseases is variable, ranging from almost no symptoms to coma, brain edema, and severe liver failure. Genetic testing for SLC25A13 mutations is essential for the diagnosis of citrin deficiency because chemical diagnoses are prohibitively difficult. Eleven SLC25A13 mutations account for 95% of the mutant alleles in Japanese patients with citrin deficiency. Therefore, a simple test for these mutations is desirable. We established a 1-hour, closed-tube assay for the 11 SLC25A13 mutations using real-time PCR. Each mutation site was amplified by PCR followed by a melting-curve analysis with adjacent hybridization probes (HybProbe, Roche). The 11 prevalent mutations were detected in seven PCR reactions. Six reactions were used to detect a single mutation each, and one reaction was used to detect five mutations that are clustered in a 21-bp region in exon 17. To test the reliability, we used this method to genotype blind DNA samples from 50 patients with citrin deficiency. Our results were in complete agreement those obtained using previously established methods. Furthermore, the mutations could be detected without difficulty using dried blood samples collected on filter paper. Therefore, this assay could be used for newborn screening and for facilitating the genetic diagnosis of citrin deficiency, especially in East Asian populations.

摘要

Citrin 缺乏症是一种常染色体隐性遗传疾病,由 SLC25A13 基因突变引起,有两种疾病结果:成人发病型 II 型 citrullinemia 和由 citrin 缺乏引起的新生儿肝内胆汁淤积症。这些疾病的临床表现多种多样,从几乎无症状到昏迷、脑水肿和严重肝功能衰竭不等。SLC25A13 基因突变的基因检测对于 citrin 缺乏症的诊断至关重要,因为化学诊断非常困难。11 种 SLC25A13 突变占日本 citrin 缺乏症患者突变等位基因的 95%。因此,需要一种简单的检测这些突变的方法。我们使用实时 PCR 建立了一种 1 小时的、封闭管的 11 种 SLC25A13 突变的检测方法。每个突变位点都通过 PCR 扩增,然后通过相邻杂交探针(HybProbe,罗氏)进行熔解曲线分析。在七个 PCR 反应中检测到 11 种常见突变。六个反应用于检测每种突变,一个反应用于检测 17 号外显子中 21 个碱基区域内聚集的五种突变。为了测试可靠性,我们使用该方法对 50 名 citrin 缺乏症患者的盲法 DNA 样本进行了基因分型。我们的结果与之前建立的方法完全一致。此外,使用该方法可以毫不费力地检测到使用滤纸收集的干血斑样本中的突变。因此,该检测方法可用于新生儿筛查和促进 citrin 缺乏症的遗传诊断,尤其是在东亚人群中。

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