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10例原发性肉碱缺乏症新生儿的基因诊断
引用本文:谭建强,陈大宇,李哲涛,严提珍,黄际卫,蔡稔. 10例原发性肉碱缺乏症新生儿的基因诊断[J]. 中国当代儿科杂志, 2017, 19(11): 1150-1154. DOI: 10.7499/j.issn.1008-8830.2017.11.005
作者姓名:谭建强  陈大宇  李哲涛  严提珍  黄际卫  蔡稔
作者单位:谭建强, 陈大宇, 李哲涛, 严提珍, 黄际卫, 蔡稔
基金项目:广西卫生厅项目(Z2016547)(Z20170530),柳州市科学研究与技术开发计划项目研究成果资助(2014G020404)
摘    要:目的对新生儿原发性肉碱缺乏症(PCD)基因突变谱进行分析,为PCD早期诊断和治疗以及遗传咨询和产前诊断提供理论依据。方法对进行新生儿串联质谱筛查的34 167份滤纸干血片进行血酰基肉碱谱分析,对其中游离肉碱(C0)低于10μmol/L的新生儿及父母行SLC22A5基因测序。结果酰基肉碱谱筛查C0低于10μmol/L的新生儿10例,患儿母亲游离肉碱均未见降低,10例患儿的SLC22A5基因测序检测到10种20个突变位点,其中c.976CT、c.919del G、c.517del C、c.338GA未见报道,生物信息学分析提示高致病风险。结论串联质谱技术结合SLC22A5基因测序有助于PCD早期诊断,新突变的发现丰富了SLC22A5基因突变谱。

关 键 词:原发性肉碱缺乏症  串联质谱  SLC22A5基因  基因突变  新生儿  
收稿时间:2017-07-07
修稿时间:2017-08-07

Genetic diagnosis of 10 neonates with primary carnitine deficiency
TAN Jian-Qiang,CHEN Da-Yu,LI Zhe-Tao,YAN Ti-Zhen,HUANG Ji-Wei,CAI Ren. Genetic diagnosis of 10 neonates with primary carnitine deficiency[J]. Chinese journal of contemporary pediatrics, 2017, 19(11): 1150-1154. DOI: 10.7499/j.issn.1008-8830.2017.11.005
Authors:TAN Jian-Qiang  CHEN Da-Yu  LI Zhe-Tao  YAN Ti-Zhen  HUANG Ji-Wei  CAI Ren
Affiliation:TAN Jian-Qiang, CHEN Da-Yu, LI Zhe-Tao, YAN Ti-Zhen, HUANG Ji-Wei, CAI Ren
Abstract:Objective To study the gene mutation profile of primary carnitine deficiency (PCD) in neonates, and to provide a theoretical basis for early diagnosis and treatment, genetic counseling, and prenatal diagnosis of PCD. Methods Acylcarnitine profile analysis was performed by tandem mass spectrometry using 34167 dry blood spots on filter paper. The SLC22A5 gene was sequenced and analyzed in neonates with free carnitine (C0) levels lower than 10 μmol/L as well as their parents. Results In the acylcarnitine profile analysis, a C0 level lower than 10 μmol/L was found in 10 neonates, but C0 level was not reduced in their mothers. The 10 neonates had 10 types of mutations at 20 different sites in the SLC22A5 gene, which included 4 previously unreported mutations: c.976C>T, c.919delG, c.517delC, and c.338G>A. Bioinformatics analysis showed that the four new mutations were associated with a risk of high pathogenicity. Conclusions Tandem mass spectrometry combined with SLC22A5 gene sequencing may be useful for the early diagnosis of PCD. Identification of new mutations enriches the SLC22A5 gene mutation profile.
Keywords:Primary carnitine deficiency  Tandem mass spectrometry  SLC22A5 gene  Gene mutation  Neonate
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