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不同种族来源的新生儿致死性肉碱-酰基肉碱转位酶(CACT)缺乏症患者中的一种新型SLC25A20剪接突变。

A novel SLC25A20 splicing mutation in patients of different ethnic origin with neonatally lethal carnitine-acylcarnitine translocase (CACT) deficiency.

作者信息

Korman Stanley H, Pitt James J, Boneh Avihu, Dweikat Imad, Zater Mokhtar, Meiner Vardiella, Gutman Alisa, Brivet Michèle

机构信息

Department of Clinical Biochemistry, Hadassah - Hebrew University Medical Center, Jerusalem, Israel.

出版信息

Mol Genet Metab. 2006 Dec;89(4):332-8. doi: 10.1016/j.ymgme.2006.06.009. Epub 2006 Aug 17.

Abstract

Carnitine-acylcarnitine translocase (CACT) deficiency is a rare disorder of fatty acid oxidation associated with high mortality. Two female newborns of different ethnic origin (the first Anglo-Celtic and the second Palestinian Arab) both died after sudden collapse on day 2 of life. Both had elevated bloodspot long-chain acylcarnitines consistent with either CACT or carnitine palmitoyltransferase II (CPT2) deficiency; the latter was excluded by demonstrating normal CPT2 activity in fibroblasts. Direct sequencing of all SLC25A20 (CACT) gene exons and exon-intron boundaries revealed that Patient 1 was compound heterozygous for a novel c.609-3c>g (IVS6-3c>g) mutation on the paternal allele and a previously described c.326delG mutation on the maternal allele. Patient 2 was homozygous for the same, novel c.609-3c>g mutation. Previously reported SLC25A20 mutations have been almost exclusively confined to a single family or ethnic group. Analysis of fibroblast cDNA by RT-PCR, agarose gel electrophoresis and sequencing of extracted bands showed that both mutations produce aberrant splicing. c.609-3C>G results in exon 7 skipping leading to a frameshift with premature termination seven amino acids downstream. c.326delG was confirmed to produce skipping of exons 3 or 3 plus 4. CACT activity in both patients' fibroblasts was near-zero. For both families, prenatal diagnosis of an unaffected fetus was performed by mutation analysis on CVS tissue in a subsequent pregnancy. Due to the urgency of prenatal diagnosis in the second family, molecular diagnosis was performed prior to demonstration of CACT enzyme deficiency, illustrating that mutation analysis is a rapid and reliable approach to first-line diagnosis of CACT deficiency.

摘要

肉碱-脂酰肉碱转位酶(CACT)缺乏症是一种罕见的脂肪酸氧化障碍疾病,死亡率很高。两名不同种族的女婴(第一名是英裔凯尔特人,第二名是巴勒斯坦阿拉伯人)均在出生后第2天突然夭折。两人血斑中的长链脂酰肉碱水平均升高,这与CACT或肉碱棕榈酰转移酶II(CPT2)缺乏症相符;通过检测成纤维细胞中正常的CPT2活性排除了后者。对所有SLC25A20(CACT)基因外显子和外显子-内含子边界进行直接测序发现,患者1在父本等位基因上为一种新的c.609-3c>g(IVS6-3c>g)突变的复合杂合子,在母本等位基因上为先前报道的c.326delG突变。患者二为相同新的c.609-3c>g突变的纯合子。先前报道的SLC25A20突变几乎都局限于单个家族或种族群体。通过RT-PCR、琼脂糖凝胶电泳分析成纤维细胞cDNA并对提取条带进行测序表明,这两种突变均导致异常剪接。c.609-3C>G导致外显子7跳跃,导致移码并在下游七个氨基酸处提前终止。c.326delG被证实导致外显子3或外显子3加4跳跃。两名患者成纤维细胞中的CACT活性几乎为零。对于两个家庭,在随后的妊娠中通过对绒毛取样组织进行突变分析对未受影响的胎儿进行了产前诊断。由于第二个家庭产前诊断的紧迫性,在证实CACT酶缺乏之前就进行了分子诊断,这说明突变分析是CACT缺乏症一线诊断的快速可靠方法。

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