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Expression of Genes Encoding Enzymes Involved in the One Carbon Cycle in Rat Placenta is Determined by Maternal Micronutrients (Folic Acid Vitamin B12) and Omega-3 Fatty Acids

机译:母体微量营养素(叶酸维生素B12)和Omega-3脂肪酸确定大鼠胎盘中一个碳循环涉及的编码酶的基因的表达

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摘要

We have reported that folic acid, vitamin B12, and omega-3 fatty acids are interlinked in the one carbon cycle and have implications for fetal programming. Our earlier studies demonstrate that an imbalance in maternal micronutrients influence long chain polyunsaturated fatty acid metabolism and global methylation in rat placenta. We hypothesize that these changes are mediated through micronutrient dependent regulation of enzymes in one carbon cycle. Pregnant dams were assigned to six dietary groups with varying folic acid and vitamin B12 levels. Vitamin B12 deficient groups were supplemented with omega-3 fatty acid. Placental mRNA levels of enzymes, levels of phospholipids, and glutathione were determined. Results suggest that maternal micronutrient imbalance (excess folic acid with vitamin B12 deficiency) leads to lower mRNA levels of methylene tetrahydrofolate reductase (MTHFR) and methionine synthase , but higher cystathionine b-synthase (CBS) and Phosphatidylethanolamine-N-methyltransferase (PEMT) as compared to control. Omega-3 supplementation normalized CBS and MTHFR mRNA levels. Increased placental phosphatidylethanolamine (PE), phosphatidylcholine (PC), in the same group was also observed. Our data suggests that adverse effects of a maternal micronutrient imbalanced diet may be due to differential regulation of key genes encoding enzymes in one carbon cycle and omega-3 supplementation may ameliorate most of these changes.
机译:我们已经报道,叶酸,维生素B12和omega-3脂肪酸在一个碳循环中相互关联,对胎儿的程序设计有影响。我们较早的研究表明,母体微量营养素的失衡会影响大鼠胎盘中的长链多不饱和脂肪酸代谢和整体甲基化。我们假设这些变化是通过一个碳循环中酶的微量营养素依赖性调节介导的。孕妇水坝被分为六个饮食组,它们的叶酸和维生素B12含量各不相同。维生素B12缺乏症组补充了omega-3脂肪酸。测定胎盘酶的mRNA水平,磷脂水平和谷胱甘肽。结果表明,孕妇微量营养素失衡(过量的叶酸和维生素B12缺乏症)会导致亚甲基四氢叶酸还原酶(MTHFR)和蛋氨酸合酶的mRNA水平降低,但胱硫醚b-合酶(CBS)和磷脂酰乙醇胺-N-甲基转移酶(PEMT)的水平更高与对照相比。补充Omega-3使CBS和MTHFR mRNA水平正常化。在同一组中也观察到胎盘磷脂酰乙醇胺(PE),磷脂酰胆碱(PC)增加。我们的数据表明,母亲微量营养素饮食不均衡的不利影响可能是由于一个碳循环中编码酶的关键基因的差异性调节,而补充omega-3可能会改善大多数这些变化。

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