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枫糖尿症是由于异常剪接导致支链α-酮酸脱氢酶复合体的E2核心结构域内部部分缺失所致。E2基因一个内含子的5'-剪接供体位点处的单个碱基缺失破坏了该区域的共有序列。

Maple syrup urine disease caused by a partial deletion in the inner E2 core domain of the branched chain alpha-keto acid dehydrogenase complex due to aberrant splicing. A single base deletion at a 5'-splice donor site of an intron of the E2 gene disrupts the consensus sequence in this region.

作者信息

Mitsubuchi H, Nobukuni Y, Akaboshi I, Indo Y, Endo F, Matsuda I

机构信息

Department of Pediatrics, Kumamoto University Medical School, Japan.

出版信息

J Clin Invest. 1991 Apr;87(4):1207-11. doi: 10.1172/JCI115120.

Abstract

We have studied the molecular bases of maple syrup urine disease by analyzing the activity, subunit structure, mRNA sequence, and the genome of the affected enzyme. The branched chain alpha-keto acid dehydrogenase (BCKDH) activity in the patient was 4.2-4.5% of the control level. Immunoblot analysis revealed that the E2 subunit of BCKDH (Mr 52,000) was absent and another protein band with an Mr of 49,000 was present. We amplified the cDNA of the E2 subunit obtained from the patient's cell using the polymerase chain reaction method, then sequenced the amplified cDNA, in which a 78-bp deletion was identified. The consanguineous parents and a sister had two species of mRNA; the one corresponding to the normal E2 subunit and the other with a 78-bp deletion, whereas findings in a brother were normal. The molecular size of the translation products as deduced from the abnormal mRNA sequence was compatible with an abnormal protein band (Mr 49,000) detected in the patient's cells by immunoblot analysis. Analysis of genomic DNA of BCKDH-E2 subunit revealed that the 78-bp deletion in the mRNA was caused by an exon skipping due to a single base deletion in the 5'-splice donor site. As a result of the mutation, part of the inner E2 core domain was omitted. The specified region of the inner E2 core domain was highly homologous to the region of the E2 subunit of pyruvate dehydrogenase and alpha-ketoglutarate dehydrogenase. These observations imply the biological importance of the region in the inner E2 core domain of BCKDH to maintain normal function of the activity.

摘要

我们通过分析患病酶的活性、亚基结构、mRNA序列和基因组,研究了枫糖尿症的分子基础。患者体内的支链α-酮酸脱氢酶(BCKDH)活性为对照水平的4.2 - 4.5%。免疫印迹分析显示,BCKDH的E2亚基(分子量52,000)缺失,出现了一条分子量为49,000的蛋白条带。我们使用聚合酶链反应方法扩增了从患者细胞中获得的E2亚基的cDNA,然后对扩增的cDNA进行测序,发现其中有一个78 bp的缺失。近亲结婚的父母和一个妹妹有两种mRNA;一种对应正常的E2亚基,另一种有78 bp的缺失,而一个弟弟的检测结果正常。从异常mRNA序列推导的翻译产物的分子大小与免疫印迹分析在患者细胞中检测到的异常蛋白条带(分子量49,000)相符。对BCKDH - E2亚基的基因组DNA分析表明,mRNA中的78 bp缺失是由于5'-剪接供体位点的单个碱基缺失导致外显子跳跃所致。由于该突变,E2核心结构域内部的一部分被遗漏。E2核心结构域内部指定区域与丙酮酸脱氢酶和α-酮戊二酸脱氢酶的E2亚基区域高度同源。这些观察结果表明,BCKDH的E2核心结构域内部的该区域对于维持活性的正常功能具有生物学重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d58/295137/846c7978d648/jcinvest00058-0082-a.jpg

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