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先天性乳酸性酸中毒女性患者丙酮酸脱氢酶缺乏症的DNA诊断

DNA diagnosis of pyruvate dehydrogenase deficiency in female patients with congenital lactic acidaemia.

作者信息

Matsuda J, Ito M, Naito E, Yokota I, Kuroda Y

机构信息

Department of Pediatrics, School of Medicine, University of Tokushima, Japan.

出版信息

J Inherit Metab Dis. 1995;18(5):534-46. doi: 10.1007/BF02435998.

Abstract

The diagnosis of pyruvate dehydrogenase (PDH) E1 alpha deficiency, which is an X-linked inborn error of metabolism, is usually established by the measurement of PDH complex activity in cultured cells. However, heterozygous female patients with PDH E1 alpha deficiency may be misdiagnosed when the normal X chromosome is predominantly expressed in the cultured cells. Therefore, in female patients with convincing clinical presentations of PDH E1 alpha deficiency and the normal enzyme activity, the X-inactivation pattern should be analysed and the PDH E1 alpha gene screened for mutations. For this screening, we applied the method of single-strand conformational polymorphism (SSCP) and DNA sequencing and examined 11 female patients with congenital lactic acidaemia whose PDH complex activity was normal in cultured cells. In 2 of the 11 female patients, we found distinct pathogenic missense mutations in the PDH E1 alpha gene (G89S and G291R). Both affected patients showed a similar clinical presentation and had been diagnosed as West syndrome. In 3 of the 11 patients, we found a polymorphic base-pair substitution in exon 9 of the PDH E1 alpha gene which resulted in a changed amino acid residue (M282L). We conclude that PCR-SSCP analysis of the PDH E1 alpha gene, followed by DNA sequencing, is a useful method to screen for mutations of the PDH E1 alpha gene in female patients with congenital lactic acidaemia who have normal enzyme activities in available samples, normal ratio of lactate to pyruvate, and predominantly raised lactate concentration in cerebrospinal fluid.

摘要

丙酮酸脱氢酶(PDH)E1α缺乏症是一种X连锁的先天性代谢缺陷,其诊断通常通过测量培养细胞中的PDH复合物活性来确定。然而,当正常X染色体在培养细胞中占主导表达时,患有PDH E1α缺乏症的杂合子女性患者可能会被误诊。因此,对于临床表现符合PDH E1α缺乏症且酶活性正常的女性患者,应分析其X染色体失活模式并筛查PDH E1α基因的突变。为了进行这种筛查,我们应用了单链构象多态性(SSCP)方法和DNA测序,并检查了11名先天性乳酸性酸中毒的女性患者,她们培养细胞中的PDH复合物活性正常。在这11名女性患者中的2名中,我们在PDH E1α基因中发现了明显的致病性错义突变(G89S和G291R)。两名受影响的患者表现出相似的临床表现,并被诊断为韦斯特综合征。在11名患者中的3名中,我们在PDH E1α基因的外显子9中发现了一个多态性碱基对替换,这导致了一个氨基酸残基的改变(M282L)。我们得出结论,对PDH E1α基因进行PCR-SSCP分析,随后进行DNA测序,是一种有用的方法,可用于筛查先天性乳酸性酸中毒且现有样本中酶活性正常、乳酸与丙酮酸比值正常且脑脊液中乳酸浓度主要升高的女性患者的PDH E1α基因突变。

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