首页> 外文OA文献 >Impaired functioning of thermolabile methylenetetrahydrofolate reductase is dependent on riboflavin status: implications for riboflavin requirements.
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Impaired functioning of thermolabile methylenetetrahydrofolate reductase is dependent on riboflavin status: implications for riboflavin requirements.

机译:热不稳定的亚甲基四氢叶酸还原酶的功能受损取决于核黄素状态:对核黄素需求的影响。

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摘要

BACKGROUND: Methylenetetrahydrofolate reductase (MTHFR; EC 1.7.99.5) supplies the folate needed for the metabolism of homocysteine. A reduction in MTHFR activity, as occurs in the homozygous state for the 677C--T (so-called thermolabile) enzyme variant (TT genotype), is associated with an increase in plasma total homocysteine (tHcy). OBJECTIVE: In vitro studies suggest that the reduced activity of thermolabile MTHFR is due to the inappropriate loss of its riboflavin cofactor. We investigated the hypothesis that MTHFR activity in the TT genotype group is particularly sensitive to riboflavin status. DESIGN: We studied tHcy and relevant B-vitamin status by MTHFR genotype in a cross-sectional study of 286 healthy subjects aged 19-63 y (median: 27 y). The effect of riboflavin status was examined by dividing the sample into tertiles of erythrocyte glutathionine reductase activation coefficient, a functional index of riboflavin status. RESULTS: Lower red blood cell folate (P = 0.0001) and higher tHcy (P = 0.0082) concentrations were found in the TT group than in the heterozygous (CT) or wild-type (CC) groups. However, these expected relations in the total sample were driven by the TT group with the lowest riboflavin status, whose mean tHcy concentration (18.09 micromol/L) was almost twice that of the CC or CT group. By contrast, adequate riboflavin status rendered the TT group neutral with respect to tHcy metabolism. CONCLUSIONS: The high tHcy concentration typically associated with homozygosity for the 677C--T variant of MTHFR occurs only with poor riboflavin status. This may have important implications for governments considering new fortification policies aimed at the prevention of diseases for which this genotype is associated with increased risk.
机译:背景:亚甲基四氢叶酸还原酶(MTHFR; EC 1.7.99.5)提供高半胱氨酸代谢所需的叶酸。 MTHFR活性的降低(如677C→T(所谓的不耐热)酶变体(TT基因型)的纯合状态)与血浆总同型半胱氨酸(tHcy)的增加有关。目的:体外研究表明,热不稳定的MTHFR活性降低是由于其核黄素辅因子的不适当损失。我们调查了TT基因型组中MTHFR活性对核黄素状态特别敏感的假设。设计:我们在286名年龄在19-63岁(中位数:27岁)的健康受试者的横断面研究中,通过MTHFR基因型研究了tHcy和相关的B维生素状态。通过将样品分为红细胞谷胱甘肽还原酶激活系数三分位数,核黄素状态的功能指标来检验核黄素状态的影响。结果:与杂合子(CT)或野生型(CC)组相比,TT组发现较低的红细胞叶酸(P = 0.0001)和较高的tHcy(P = 0.0082)浓度。然而,总样本中的这些预期关系是由核黄素状态最低的TT组驱动的,该组的平均tHcy浓度(18.09 micromol / L)几乎是CC或CT组的两倍。相反,适当的核黄素状态使TT组在tHcy代谢方面保持中性。结论:高THcy浓度通常与MTHFR 677C-> T变体的纯合性有关,仅在核黄素状态不佳时发生。这对于考虑采取新的防御措施以预防这种基因型与增加的风险相关的疾病的政府而言可能具有重要的意义。

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