Barak A J, Beckenhauer H C, Tuma D J
Liver Study Unit, VA Alcohol Research Center, Omaha, NE 68105, USA.
Alcohol. 1996 Sep-Oct;13(5):483-6. doi: 10.1016/0741-8329(96)00040-7.
Previous studies in this laboratory have shown that feeding of ethanol to rats produces prompt inhibition of methionine synthetase (MS) as well as a subsequent increase in activity of betaine homocysteine methyltransferase (BHMT). Further studies have shown that supplemental dietary betaine enhanced methionine metabolism and S-adenosylmethionine (SAM) generation in control and ethanol-fed rats. Because MS and BHMT are both involved in the formation of SAM, this study was conducted to determine early effects of ethanol on hepatic SAM levels and the influence of betaine supplementation on parameters of methionine metabolism during the early periods of MS inhibition and enhanced BHMT activity. Results showed that ethanol feeding produced a significant loss in SAM in the first week with a return to normal SAM levels in the second week. Betaine feeding enhanced hepatic betaine pools in control as well as ethanol-fed animals. This feeding attenuated the early loss of SAM in ethanol-fed animals, produced an early increase in BHMT activity, and generated increased levels of SAM in both control and ethanol-fed groups. Furthermore, betaine lowered significantly the accumulation of hepatic triglyceride produced by ethanol after 2 weeks of ingestion.
本实验室之前的研究表明,给大鼠喂食乙醇会迅速抑制甲硫氨酸合成酶(MS),随后甜菜碱同型半胱氨酸甲基转移酶(BHMT)的活性会增加。进一步的研究表明,补充膳食甜菜碱可增强对照大鼠和乙醇喂养大鼠的甲硫氨酸代谢及S-腺苷甲硫氨酸(SAM)的生成。由于MS和BHMT都参与SAM的形成,本研究旨在确定乙醇对肝脏SAM水平的早期影响,以及在MS受到抑制和BHMT活性增强的早期阶段,补充甜菜碱对甲硫氨酸代谢参数的影响。结果显示,喂食乙醇在第一周使SAM显著减少,第二周SAM水平恢复正常。喂食甜菜碱可增加对照动物以及乙醇喂养动物肝脏中的甜菜碱储备。这种喂食方式减轻了乙醇喂养动物早期SAM的损失,使BHMT活性早期增加,并使对照和乙醇喂养组的SAM水平都有所升高。此外,在摄入乙醇2周后,甜菜碱显著降低了乙醇导致的肝脏甘油三酯积累。