首页> 外文期刊>The Journal of biological chemistry >Mouse Betaine-Homocysteine S-Methyltransferase Deficiency Reduces Body Fat via Increasing Energy Expenditure and Impairing Lipid Synthesis and Enhancing Glucose Oxidation in White Adipose Tissue
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Mouse Betaine-Homocysteine S-Methyltransferase Deficiency Reduces Body Fat via Increasing Energy Expenditure and Impairing Lipid Synthesis and Enhancing Glucose Oxidation in White Adipose Tissue

机译:小鼠甜菜碱 - 同型半胱氨酸S-甲基转移酶缺乏通过增加能量消耗和脂质合成损害脂质合成和增强白色脂肪组织中的葡萄糖氧化来减少体脂

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Betaine-homocysteine S-methyltransferase (BHMT) catalyzes the synthesis of methionine from homocysteine. In our initial report, we observed a reduced body weight in Bhmt?/? mice. We initiated this study to investigate the potential role of BHMT in energy metabolism. Compared with the controls (Bhmt+/+), Bhmt?/? mice had less fat mass, smaller adipocytes, and better glucose and insulin sensitivities. Compared with the controls, Bhmt?/? mice had increased energy expenditure, with no changes in food intake, fat uptake or absorption, or in locomotor activity. The reduced adiposity in Bhmt?/? mice was not due to hyperthermogenesis. Bhmt?/? mice failed to maintain a normal body temperature upon cold exposure because of limited fuel supplies. In vivo and ex vivo tests showed that Bhmt?/? mice had normal lipolytic function. The rate of 14C-labeled fatty acid incorporated into [14C]triacylglycerol was the same in Bhmt+/+ and Bhmt?/? gonadal fat depots (GWAT), but it was 62% lower in Bhmt?/? inguinal fat depots (IWAT) compared with that of Bhmt+/+ mice. The rate of 14C-labeled fatty acid oxidation was the same in both GWAT and IWAT from Bhmt+/+ and Bhmt?/? mice. At basal level, Bhmt?/? GWAT had the same [14C]glucose oxidation as did the controls. When stimulated with insulin, Bhmt?/? GWAT oxidized 2.4-fold more glucose than did the controls. Compared with the controls, the rate of [14C]glucose oxidation was 2.4- and 1.8-fold higher, respectively, in Bhmt?/? IWAT without or with insulin stimulus. Our results show for the first time a role for BHMT in energy homeostasis.
机译:甜菜碱 - 同型半胱氨酸S-甲基转移酶(BHMT)催化来自同型半胱氨酸的蛋氨酸的合成。在我们的初步报告中,我们在BHMT中观察到体重减轻?/?老鼠。我们启动了本研究以研究BHMT在能量代谢中的潜在作用。与对照(BHMT + / +),BHMT相比?/?小鼠的脂肪量小,脂肪细胞较小,更好的葡萄糖和胰岛素敏感性。与对照相比,BHMT?/?小鼠的能量消耗增加,食物摄入量,脂肪吸收或吸收或运动活性没有变化。在Bhmt中的肥胖降低?/?小鼠不是由于超热性发生。 bhmt?/?由于有限的燃料供应,小鼠未能在冷曝光时保持正常体温。在体内和前体内测试表明bhmt?/?小鼠具有正常的脂肪溶解功能。掺入[14C]三酰基甘油中的14℃标记的脂肪酸的速率在BHMT + / +和BHMT中相同吗?/? gonadal脂肪仓库(gwat),但在bhmt中较62%?/?与BHMT + / +小鼠相比,腹股沟脂肪料(IWAT)。来自BHMT + / +和BHMT的GWAT和IWAT的14℃标记的脂肪酸氧化的速率相同?/?老鼠。在基础水平,Bhmt?/? GWAT具有相同的[14C]葡萄糖氧化和对照组一样。当用胰岛素刺激时,BHMT?/? Gwat氧化比对照更高的葡萄糖2.4倍。与对照相比,在BHMT中,[14C]葡萄糖氧化的速率分别为2.4-和1.8倍。 Iwat没有或胰岛素刺激。我们的结果首次表明了BHMT在能量稳态中的作用。

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