Kelly Tamara L J, Neaga Oana R, Schwahn Bernd C, Rozen Rima, Trasler Jacquetta M
Department of Pediatrics, McGill University and the Montreal Children's Hospital Research Institute, Montreal, Quebec, Canada.
Biol Reprod. 2005 Mar;72(3):667-77. doi: 10.1095/biolreprod.104.035238. Epub 2004 Nov 17.
Metabolism of folate is essential for proper cellular function. Within the folate pathway, methylenetetrahydrofolate reductase (MTHFR) reduces 5,10-methylenetetrahydrofolate to 5-methyltetrahydrofolate, a methyl donor for remethylation of homocysteine to methionine, the precursor of S-adenosylmethionine. S-adenosylmethionine is the methyl donor for numerous cellular reactions. In adult male mice, MTHFR levels are highest in the testis; this finding, in conjunction with recent clinical evidence, suggest an important role for MTHFR in spermatogenesis. Indeed, we show here that severe MTHFR deficiency in male mice results in abnormal spermatogenesis and infertility. Maternal oral administration of betaine, an alternative methyl donor, throughout pregnancy and nursing, resulted in improved testicular histology in Mthfr-/- offspring at Postnatal Day 6, but not at 8 mo of age. However, when betaine supplementation was maintained postweaning, testicular histology improved, and sperm numbers and fertility increased significantly. We postulate that the adverse effects of MTHFR deficiency on spermatogenesis, may, in part, be mediated by alterations in the transmethylation pathway and suggest that betaine supplementation may provide a means to bypass MTHFR deficiency and its adverse effects on spermatogenesis by maintaining normal methylation levels within male germ cells.
叶酸代谢对于细胞的正常功能至关重要。在叶酸代谢途径中,亚甲基四氢叶酸还原酶(MTHFR)将5,10-亚甲基四氢叶酸还原为5-甲基四氢叶酸,后者作为甲基供体参与同型半胱氨酸再甲基化生成蛋氨酸,而蛋氨酸是S-腺苷甲硫氨酸的前体。S-腺苷甲硫氨酸是众多细胞反应的甲基供体。在成年雄性小鼠中,睾丸中的MTHFR水平最高;这一发现与近期临床证据相结合,提示MTHFR在精子发生过程中发挥重要作用。事实上,我们在此表明,雄性小鼠中严重的MTHFR缺乏会导致精子发生异常和不育。在整个怀孕和哺乳期间,母体口服甜菜碱(一种替代甲基供体),可使Mthfr-/-后代在出生后第6天的睾丸组织学得到改善,但在8月龄时并无改善。然而,若在断奶后持续补充甜菜碱,睾丸组织学则会改善,精子数量和生育能力也会显著增加。我们推测,MTHFR缺乏对精子发生的不利影响可能部分由转甲基途径的改变介导,并表明补充甜菜碱可能通过维持雄性生殖细胞内正常的甲基化水平,提供一种绕过MTHFR缺乏及其对精子发生不利影响的方法。