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由于内含子5的单个碱基替换,导致支链α-酮酸脱氢酶复合体中的E1β亚基缺乏,在一名枫糖尿症患者中产生了两种选择性剪接的mRNA。

Deficiency of the E1 beta subunit in the branched-chain alpha-keto acid dehydrogenase complex due to a single base substitution of the intron 5, resulting in two alternatively spliced mRNAs in a patient with maple syrup urine disease.

作者信息

Hayashida Y, Mitsubuchi H, Indo Y, Ohta K, Endo F, Wada Y, Matsuda I

机构信息

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

出版信息

Biochim Biophys Acta. 1994 Feb 22;1225(3):317-25. doi: 10.1016/0925-4439(94)90013-2.

Abstract

A patient with maple syrup urine disease (MSUD) associated with a E1 beta subunit deficiency of the branched-chain alpha-keto acid dehydrogenase (BCKDH) complex was investigated at the molecular level. The defect responsible for the deficiency of the E1 beta subunit protein was identified by analysis of cDNA and genomic DNA by polymerase chain reaction. Total RNA isolated from lymphoblastoid cells was transcribed into cDNA and amplified using a set of primers located within exon 3 and exon 9 of the E1 beta gene. Agarose gel electrophoresis of cDNA amplification products revealed two shortened bands as well as a faint band of normal size. Nucleotide sequencing of the shortened cDNA amplification products showed that sequences corresponding to exon 5 and both exons 5 and 6 were absent. Nucleotide sequencing of the proband's amplified genomic DNA corresponding to this region of the E1 beta gene revealed a single base substitution from G to T of the invariant GT dinucleotides at 5' splice site of the intron 5. Analysis of family members using primer-specified restriction map modification showed that the patient is homozygous for this mutation. We postulate that this mutation leads to the skipping of either exon 5 or both exons 5 and 6, thus producing two shortened E1 beta mRNA. The percentage of normal and two shortened transcripts was estimated to be 9, 71 and 20%, respectively. To our best knowledge, this is the first documented example of exon skipping in the E1 beta gene as the cause of MSUD and the novel mutation of the invariant G at the 5' splice site which results in two alternatively spliced mRNA due to the skipping of the preceding exon as well as both preceding and following exon.

摘要

对一名患有与支链α-酮酸脱氢酶(BCKDH)复合物E1β亚基缺乏相关的枫糖尿症(MSUD)的患者进行了分子水平的研究。通过聚合酶链反应分析cDNA和基因组DNA,确定了导致E1β亚基蛋白缺乏的缺陷。从淋巴母细胞中分离的总RNA被转录成cDNA,并使用位于E1β基因外显子3和外显子9内的一组引物进行扩增。cDNA扩增产物的琼脂糖凝胶电泳显示出两条缩短的条带以及一条正常大小的 faint 条带。缩短的cDNA扩增产物的核苷酸测序表明,对应于外显子5以及外显子5和6的序列缺失。对先证者对应于E1β基因该区域的扩增基因组DNA进行核苷酸测序,发现在内含子5的5'剪接位点处,不变的GT二核苷酸中的G被T单碱基取代。使用引物指定的限制性图谱修饰对家庭成员进行分析表明,该患者对此突变是纯合的。我们推测,这种突变导致外显子5或外显子5和6两者的跳跃,从而产生两种缩短的E1β mRNA。正常转录本和两种缩短转录本的百分比估计分别为9%、71%和20%。据我们所知,这是E1β基因中外显子跳跃作为MSUD病因的首个记录实例,也是5'剪接位点处不变的G发生的新突变,该突变由于前一个外显子以及前一个和后一个外显子的跳跃而导致两种选择性剪接的mRNA。

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