Insights into Severe 5,10-Methylenetetrahydrofolate Reductase Deficiency: Molecular Genetic and Enzymatic Characterization of 76 Patients

亚甲基四氢叶酸还原酶 错义突变 生物 黄素腺嘌呤二核苷酸 还原酶 突变 等位基因 遗传学 点突变 生物化学 烟酰胺腺嘌呤二核苷酸磷酸 辅因子 分子生物学 基因 氧化酶试验
作者
Patricie Burda,Alexandra Schäfer,Terttu Suormala,Till Rummel,Céline Bürer,Dorothea M. Heuberger,Michele Frapolli,Cecilia Giunta,Jitka Sokolová,Hana Vlášková,Viktor Kožich,Hans Georg Koch,Brian Fowler,D. Sean Froese,Matthias R. Baumgartner
出处
期刊:Human Mutation [Wiley]
卷期号:36 (6): 611-621 被引量:78
标识
DOI:10.1002/humu.22779
摘要

5,10-Methylenetetrahydrofolate reductase (MTHFR) deficiency is the most common inherited disorder of folate metabolism and causes severe hyperhomocysteinaemia. To better understand the relationship between mutation and function, we performed molecular genetic analysis of 76 MTHFR deficient patients, followed by extensive enzymatic characterization of fibroblasts from 72 of these. A deleterious mutation was detected on each of the 152 patient alleles, with one allele harboring two mutations. Sixty five different mutations (42 novel) were detected, including a common splicing mutation (c.1542G>A) found in 21 alleles. Using an enzyme assay in the physiological direction, we found residual activity (1.7%-42% of control) in 42 cell lines, of which 28 showed reduced affinity for nicotinamide adenine dinucleotide phosphate (NADPH), one reduced affinity for methylenetetrahydrofolate, five flavin adenine dinucleotide-responsiveness, and 24 abnormal kinetics of S-adenosylmethionine inhibition. Missense mutations causing virtually absent activity were found exclusively in the N-terminal catalytic domain, whereas missense mutations in the C-terminal regulatory domain caused decreased NADPH binding and disturbed inhibition by S-adenosylmethionine. Characterization of patients in this way provides a basis for improved diagnosis using expanded enzymatic criteria, increases understanding of the molecular basis of MTHFR dysfunction, and points to the possible role of cofactor or substrate in the treatment of patients with specific mutations.
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