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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >5,10-Methylenetetrahydrofolate Reductase (MTHFR) Assay in the Forward Direction: Residual Activity in MTHFR Deficiency
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5,10-Methylenetetrahydrofolate Reductase (MTHFR) Assay in the Forward Direction: Residual Activity in MTHFR Deficiency

机译:正向5,10-亚甲基四氢叶酸还原酶(MTHFR)分析:MTHFR缺乏症中的残留活性

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Background: Assay of methylenetetrahydrofolate reductase (MTHFR), a key enzyme in homocysteine metabolism, is important for the study of severe and mild deficiency states. Because the conventional assay measures in the reverse direction, lacks sensitivity, and uses nonphysiologic substrates, the exact measurement and characterization of residual activity in easily accessible tissues have been difficult.Methods: To measure MTHFR in the physiologic direction, we determined the NADPH-dependent conversion of 5,10-methylenetetrahydrofolate to 5-methyltetrahydrofolate by use of HPLC with fluorescence detection.Results: MTHFR activity in control fibroblast in the presence of FAD was maximal between pH 6.3 and 6.9, increased linearly up to 40 min and 80 μg protein/assay, and showed K ms of 30 μmol/L for NADPH and 26 μmol/L for 5,10-methylenetetrahydrofolate. Intraassay variation (CV) was 10%, interassay variation was 7.2%, and variation among 10 subcultures of the same cell line was 18%. Mean (SD) control activity was 431 (150) μU/mg protein (range, 242–910; n = 75), which is 2.5-fold higher than that with the reverse assay. After heat treatment (46 °C for 5 min), the activity showed a trimodal distribution corresponding to the 677TT (thermolabile; 15%), 677CT (35%), and 677CC (51%) genotypes. We found clearly measurable activity ranging from 2.6% to 25.6% of the mean control value in 15 patients with MTHFR deficiency, including 11 cell lines with zero activity in the reverse assay. Ten patients had complete enzyme deficiency.Conclusion: This assay allows reliable determination of residual activity in mutant fibroblasts and characterization of kinetic parameters for natural substrates.
机译:背景:亚甲基四氢叶酸还原酶(MTHFR)的测定是高半胱氨酸代谢的关键酶,对于研究严重和轻度缺乏状态非常重要。由于常规测定法的测定方向相反,灵敏度低且使用非生理底物,因此难以准确测量和表征易于接近的组织中残留活性的方法。结果:在FAD存在下,对照成纤维细胞中MTHFR活性在pH 6.3和6.9之间最大,在40分钟和80μg蛋白质/下线性增加分析表明,对于NADPH,K ms为30μmol/ L,对于5,10-亚甲基四氢叶酸,K ms为26μmol/ L。批内变异(CV)为10%,批间变异为7.2%,同一细胞系的10个继代培养之间的变异为18%。平均(SD)对照活性为431(150)μU/ mg蛋白(范围242–910; n = 75),比反向测定法高2.5倍。热处理(46°C,5分钟)后,活性显示三峰分布,分别对应于677TT(热不稳定; 15%),677CT(35%)和677CC(51%)基因型。我们清楚地发现,在15名MTHFR缺乏症患者中,可测量的活性为平均对照值的2.6%至25.6%,其中包括11种在反向测定中活性为零的细胞系。十名患者完全缺乏酶。结论:该试验可可靠地测定突变型成纤维细胞中的残留活性,并鉴定天然底物的动力学参数。

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