首页> 外文期刊>Biochemical and Biophysical Research Communications >Alleviation of hepatic fat accumulation by betaine involves reduction of homocysteine via up-regulation of betaine-homocysteine methyltransferase (BHMT)
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Alleviation of hepatic fat accumulation by betaine involves reduction of homocysteine via up-regulation of betaine-homocysteine methyltransferase (BHMT)

机译:甜菜碱减轻肝脏脂肪积累涉及通过上调甜菜碱-高半胱氨酸甲基转移酶(BHMT)减少同型半胱氨酸

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We investigated the anti-lipogenic effect of betaine in rats fed methionine and choline-deficient diet (MCD). Intake of MCD for 3 wk resulted in a significant accumulation of hepatic lipids, which was prevented by betaine supplementation in drinking water (1%). Phosphorylation of AMP-activated protein kinase (AMPK), acetyl-CoA carboxylase (ACC), sterol regulatory element-binding protein-1c (SREBP-1c), and liver kinase B1 (LKB1) was inhibited by MCD intake, and these changes were all inhibited by betaine feeding. Meanwhile, betaine supplementation reversed the reduction of methionine and S-adenosylmethionine (SAM), and the elevation of homocysteine levels in the liver, which could be attributable to the induction of betaine-homocysteine methyltransferase (BHMT) and methionine adenosyltransferase (MAT). Different cell lines were used to clarify the role of homocysteine on activation of the AMPK pathway. Homocysteine treatment decreased pAMPK, pACC, pSREBP-1c and pLKB1 in HepG2 cells. Metformin-induced activation of AMPK was also inhibited by homocysteine. Treatment with hydroxyl amine, a cystathionine beta-synthase inhibitor, resulted in a reduction of pAMPK, pACC and pSREBP-1c, accompanied by an elevation of intracellular homocysteine. Betaine treatment prevented the homocysteine-induced reduction of pAMPK, pACC, pSREBP-1c and pLKB1 in H4IIE cells, but not in HepG2 cells. Also the elevation of cellular homocysteine and inhibition of protein expression of BHMT were prevented by betaine only in H4IIE cells which express BHMT. The results suggest that the beneficial effect of betaine against hepatic lipid accumulation may be attributed, at least in part, to the depletion of homocysteine via up-regulation of BHMT in hepatocytes. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们调查了甜菜碱在喂蛋氨酸和胆碱缺乏饮食(MCD)的大鼠中的抗脂肪生成作用。连续3周摄入MCD会导致肝脏脂质的大量积累,这可以通过在饮用水中补充甜菜碱来防止(1%)。 MCD的摄入抑制了AMP激活的蛋白激酶(AMPK),乙酰辅酶A羧化酶(ACC),固醇调节元素结合蛋白1c(SREBP-1c)和肝激酶B1(LKB1)的磷酸化,这些变化是均受甜菜碱喂养的抑制。同时,补充甜菜碱逆转了蛋氨酸和S-腺苷蛋氨酸(SAM)的减少,以及肝脏中同型半胱氨酸水平的升高,这可能归因于甜菜碱-高半胱氨酸甲基转移酶(BHMT)和蛋氨酸腺苷基转移酶(MAT)的诱导。使用不同的细胞系来阐明高半胱氨酸在AMPK途径激活中的作用。同型半胱氨酸治疗可降低HepG2细胞中的pAMPK,pACC,pSREBP-1c和pLKB1。高半胱氨酸也抑制二甲双胍诱导的AMPK活化。用胱硫醚β合酶抑制剂羟胺处理可导致pAMPK,pACC和pSREBP-1c减少,并伴有细胞内同型半胱氨酸升高。甜菜碱治疗阻止了同型半胱氨酸诱导的H4IIE细胞中pAMPK,pACC,pSREBP-1c和pLKB1的减少,但在HepG2细胞中却没有。甜菜碱也仅在表达BHMT的H4IIE细胞中阻止细胞同型半胱氨酸的升高和BHMT蛋白表达的抑制。结果表明,甜菜碱对抗肝脂质蓄积的有益作用可能至少部分归因于通过上调肝细胞中BHMT的同型半胱氨酸的消耗。 (C)2016 Elsevier Inc.保留所有权利。

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