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硫原子位于偶数或奇数位置的这些脂肪酸对脂肪酸分解代谢具有相反的作用。

Thia fatty acids with the sulfur atom in even or odd positions have opposite effects on fatty acid catabolism.

作者信息

Dyroy Endre, Wergedahl Hege, Skorve Jon, Gudbrandsen Oddrun A, Songstad Jon, Berge Rolf K

机构信息

The Lipid Research Group, Institute of Medicine, Medical Biochemistry Section, University of Bergen, Haukeland University Hospital, N-5021 Bergen, Norway.

出版信息

Lipids. 2006 Feb;41(2):169-77. doi: 10.1007/s11745-006-5085-7.

Abstract

As tools for mechanistic studies on lipid metabolism, with the long-term goal of developing a drug for the treatment of lipid disorders, thia FA with the sulfur atom inserted at positions 3-9 from the carboxyl group were fed to male Wistar rats for 1 wk to determine their impact on key parameters in lipid metabolism and hepatic levels of thia FA metabolites. Thia FA with the sulfur atom in even positions decreased hepatic and cardiac mitochondrial beta-oxidation and profoundly increased hepatic and cardiac TAG levels. The plasma TAG level was unchanged and the hepatic acyl-CoA oxidase activity increased. In contrast, thia FA with the sulfur atom in odd positions, especially 3-thia FA, tended to increase hepatic and cardiac FA oxidation and acyl-CoA oxidase and carnitine palmitoyltransferase-II activities, and decreased the plasma TAG levels. The effects seem to be related to differences in the catabolic rate of the thia FA. Differences between the two groups of acids were also observed with respect to the regulation of genes involved in FA transport and catabolism. Feeding experiments with 3- and 4-thia FA in combination indicated that the 4-thia FA partly attenuated the effects of the 3-thia FA on mitochondrial FA oxidation and the hepatic TAG level. In summary, the position of the sulfur atom in the alkyl chain, especially whether it is placed in the even or odd position, is crucial for the biological effect of the thia FA.

摘要

作为脂质代谢机制研究的工具,长期目标是开发一种治疗脂质紊乱的药物,将硫原子插入羧基第3至9位的硫代脂肪酸(thia FA)喂给雄性Wistar大鼠1周,以确定它们对脂质代谢关键参数和硫代脂肪酸代谢产物肝脏水平的影响。硫原子位于偶数位的硫代脂肪酸降低了肝脏和心脏线粒体的β-氧化,并显著提高了肝脏和心脏的甘油三酯(TAG)水平。血浆TAG水平未变,肝脏酰基辅酶A氧化酶活性增加。相比之下,硫原子位于奇数位的硫代脂肪酸,尤其是3-硫代脂肪酸,倾向于增加肝脏和心脏脂肪酸氧化以及酰基辅酶A氧化酶和肉碱棕榈酰转移酶-II的活性,并降低血浆TAG水平。这些作用似乎与硫代脂肪酸分解代谢速率的差异有关。在参与脂肪酸转运和分解代谢的基因调控方面,也观察到了两组酸之间的差异。3-硫代脂肪酸和4-硫代脂肪酸联合喂养实验表明,4-硫代脂肪酸部分减弱了3-硫代脂肪酸对线粒体脂肪酸氧化和肝脏TAG水平的影响。总之,烷基链中硫原子的位置,尤其是它位于偶数位还是奇数位,对硫代脂肪酸的生物学效应至关重要。

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