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[采用高熔解曲线法鉴定1例Ⅰ型瓜氨酸血症患儿的纯合子ASS1突变]

[Identification of a homozygous ASS1 mutation in a child with citrullinemia type Ⅰ with high-melting curve method].

作者信息

Sun Jingjing, Shen Yunlin, Yan Chongbing, Gong Xiaohui

机构信息

Department of Neonatology, Shanghai Children's Hospital, the Affiliated Children's Hospital of Shanghai Jiaotong University, Shanghai 200062, China.

出版信息

Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2018 Jun 10;35(3):429-433. doi: 10.3760/cma.j.issn.1003-9406.2018.03.028.

Abstract

OBJECTIVE

To carry out rapid genetic diagnosis for a child affected with citrullinemia type Ⅰ.

METHODS

Peripheral venous blood samples were obtained from the two-day-old child and his parents as well as 100 healthy controls. Serum ammonia and citrulline was determined by biochemical test and tandem mass spectrometry. Sixteen pairs of primers were designed for high-resolution melting (HRM) analysis of all exons and adjacent intronic sequences of the ASS1 gene in the proband, parents and healthy controls. Suspected mutations were confirmed by DNA sequencing, while the mRNA transcripts of the ASS1 gene were determined by reverse transcription (RT)-PCR. Functional impact of the mutation sites was predicted with PolyPhen-2 and SIFT Blink software.

RESULTS

Blood ammonia and citrulline of the proband have respectively reached 286 μmol/L and 487.69 μmol/L, which far superseded the normal values. HRM analysis and DNA sequencing have identified in the child a homozygous c.380G>A (p.R127Q) mutation in exon 6 of the ASS1 gene, in addition with a homozygous IVS8+60G>A substitution in intron 8, while his parents were heterozygous carriers for both mutations. RT-PCR assay indicated that the IVS8+60G>A mutation did not result in abnormal splicing of the ASS1 gene transcripts. Bioinformatic analysis suggested that the site for p.R127Q was conserved among 45 species of vertebrates and may play a crucial role in citrulline metabolism.

CONCLUSION

The severe urea cycle disorder in the proband was probably due to the compound homozygous R127Q and IVS8+60G>A mutations of the ASS1 gene.

摘要

目的

对一名Ⅰ型瓜氨酸血症患儿进行快速基因诊断。

方法

采集该2日龄患儿及其父母的外周静脉血样本,以及100名健康对照者的样本。通过生化检测和串联质谱法测定血清氨和瓜氨酸水平。设计16对引物,对先证者、其父母及健康对照者的ASS1基因所有外显子及相邻内含子序列进行高分辨率熔解(HRM)分析。通过DNA测序确认疑似突变,同时采用逆转录(RT)-PCR法测定ASS1基因的mRNA转录本。使用PolyPhen-2和SIFT Blink软件预测突变位点的功能影响。

结果

先证者血氨和瓜氨酸水平分别达到286 μmol/L和487.69 μmol/L,远超正常值。HRM分析和DNA测序确定该患儿ASS1基因第6外显子存在纯合c.380G>A(p.R127Q)突变,同时第8内含子存在纯合IVS8+60G>A替换,而其父母均为这两种突变的杂合携带者。RT-PCR检测表明IVS8+60G>A突变未导致ASS1基因转录本的异常剪接。生物信息学分析提示p.R127Q位点在45种脊椎动物中保守,可能在瓜氨酸代谢中起关键作用。

结论

先证者严重的尿素循环障碍可能是由于ASS1基因的复合纯合R127Q和IVS8+60G>A突变所致。

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