Dursun A, Henneke M, Ozgül K, Gartner J, Coşkun T, Tokatli A, Kalkanoğlu H S, Demirkol M, Wendel U, Ozalp I
Hacettepe University School of Medicine, Department of Pediatrics, Ankara, Turkey.
J Inherit Metab Dis. 2002 May;25(2):89-97. doi: 10.1023/a:1015668425004.
Maple syrup urine disease (MSUD), the most frequently occurring organic acidaemia in Turkey, is caused by a deficiency of the activity of branched-chain keto acid dehydrogenase enzyme (BCKAD) complex. Mutation analysis of the E1alpha, E1beta, and E2 genes of the BCKAD complex in 12 Turkish MSUD patients yielded three disease-specific mutations and a polymorphism in the E1alpha gene, none in the E1beta gene and one mutation in the E2 gene. Among them, three missense mutations (Q80E, C213Y, T106M) and the F280F polymorphism occurring in the E1alpha gene and the splice site mutation (IVS3 - 1G>A) in the E2 gene were novel. Three of the missense mutations and the splicing mutation occurred homozygously and caused classical MSUD. One patient carried the splicing mutation homozygously and the T106M mutation in the heterozygous state; this patient is the first case having simultaneously two different mutations in two different genes in the BCKAD complex. IVS3 - IG>A splicing mutation detected on the E2 gene causes deletion of the first 14 bp of exon 3 in the mutant mRNA extending between 190 and 204 nt. The deletion spans the cleavage point between mitochondrial targeting and lipoyl-bearing site of the E2 protein.
枫糖尿症(MSUD)是土耳其最常见的有机酸血症,由支链酮酸脱氢酶(BCKAD)复合体活性缺乏引起。对12名土耳其MSUD患者的BCKAD复合体的E1α、E1β和E2基因进行突变分析,在E1α基因中发现了三种疾病特异性突变和一种多态性,E1β基因中未发现突变,E2基因中有一个突变。其中,E1α基因中出现的三种错义突变(Q80E、C213Y、T106M)和F280F多态性以及E2基因中的剪接位点突变(IVS3 - 1G>A)是新发现的。三种错义突变和剪接突变以纯合子形式出现,导致典型的MSUD。一名患者携带剪接突变纯合子和杂合状态的T106M突变;该患者是首例在BCKAD复合体的两个不同基因中同时存在两种不同突变的病例。在E2基因上检测到的IVS3 - IG>A剪接突变导致突变mRNA中外显子3的前14个碱基缺失,该mRNA在190至204 nt之间延伸。该缺失跨越E2蛋白线粒体靶向和含硫辛酰位点之间的切割点。