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首页> 外文期刊>Molecular Nutrition and Food Research >Blood biomarkers of methylation in Down syndrome and metabolic simulations using a mathematical model.
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Blood biomarkers of methylation in Down syndrome and metabolic simulations using a mathematical model.

机译:唐氏综合症中的甲基化血液生物标志物和使用数学模型进行的代谢模拟。

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摘要

Scope: The study tests the metabolites of the methylation cycle in individuals with Down syndrome (DS) and applies a mathematical model in order to change this cycle by nutritional factors. Methods and results: We measured concentrations of the metabolites related to the methylation cycle in the blood of 35 young individuals with DS and 47 controls of comparable age. Moreover, we applied a mathematical model to learn more about the regulation of the methylation cycle in DS. Concentrations of cystathionine, cysteine, betaine, choline, dimethylglycine, S-adenosylhomocysteine (SAH), S-adenosylmethionine (SAM), and holotranscobalamin were significantly higher in DS compared to the controls. The median SAM/SAH ratio was lower in DS and that of methionine and reduced glutathione did not differ significantly between the groups. The mathematical model showed that enhanced methionine turnover and accelerated Hcy-remethylation might explain the shift in the methylation cycle in DS. Conclusion: In addition to the DS-related excess of cystathionine beta synthase (CBS) activity, increases in the activities of MS and betaine homocysteine methyl transferase, and in methionine input were necessary to account for the changes in metabolite levels observed in DS. A low-methionine diet might offer a perspective for reversing the metabolic imbalance in DS, but this awaits clinical investigations.
机译:范围:该研究测试患有唐氏综合症(DS)的个体的甲基化周期的代谢物,并应用数学模型以通过营养因素改变该周期。方法和结果:我们测量了35位DS患病的年轻个体和47位年龄相仿的对照组的血液中与甲基化周期相关的代谢物浓度。此外,我们应用了数学模型来了解有关DS中甲基化循环调控的更多信息。与对照组相比,DS中的胱硫醚,半胱氨酸,甜菜碱,胆碱,二甲基甘氨酸,S-腺苷同型半胱氨酸(SAH),S-腺苷甲硫氨酸(SAM)和全反钴钴胺的浓度均显着较高。在DS中,中值SAM / SAH比较低,而蛋氨酸和还原型谷胱甘肽的中值在两组之间没有显着差异。数学模型表明,提高的蛋氨酸周转率和加速的Hcy-再甲基化可能解释了DS中甲基化周期的变化。结论:除了DS相关的胱硫醚β合酶(CBS)活性过剩外,MS和甜菜碱同型半胱氨酸甲基转移酶的活性增加以及蛋氨酸的输入对于解释DS中观察到的代谢物水平的变化也是必要的。低甲硫氨酸饮食可能为逆转DS的代谢失衡提供了前景,但这尚待临床研究。

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