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首页> 外文期刊>Archives of Biochemistry and Biophysics >Effect of double bond geometry in sphingosine base on the antioxidant function of sphingomyelin
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Effect of double bond geometry in sphingosine base on the antioxidant function of sphingomyelin

机译:鞘氨醇中双键几何结构对鞘磷脂抗氧化功能的影响

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We previously showed that sphingomyelin (SM) inhibits peroxidation of phosphatidylcholine (PC) and cholesterol. Since SM uniquely has a trans unsaturation in its sphingosine base, we investigated whether this feature is important for its antioxidant function. Substitution of the natural trans Δ~4-double bond with a cis double bond (cis-SM), however, increased SM's ability to inhibit Cu~(2+)-mediated 16:0-18:2 PC oxidation by up to eightfold. Dihydro-SM, which lacks the double bond, was equally effective as trans-SM. In contrast to its effect in the sphingosine base, the presence of a cis double bond in the N-acyl group of trans-SM was not protective. cis-SM also inhibited the oxidation of cholesterol by FeSO_4/ascorbate more efficiently than the trans isomer. The enhanced protective effect of cis-SM is selective for metal ion-promoted oxidation, and appears to arise from a decrease in the effective concentration of metal ions. These studies show that the trans double bond of SM is not essential for its antioxidant effects.
机译:我们以前显示鞘磷脂(SM)抑制磷脂酰胆碱(PC)和胆固醇的过氧化。由于SM在其鞘氨醇碱基中独特地具有反式不饱和键,因此我们研究了该功能对其抗氧化功能是否重要。但是,将天然反式Δ〜4-双键替换为顺式双键(cis-SM),使SM抑制Cu〜(2+)介导的16:0-18:2 PC氧化的能力提高了八倍。 。缺少双键的二氢SM与反式SM同样有效。与它在鞘氨醇碱中的作用相反,反式-SM的N-酰基中顺式双键的存在不是保护性的。顺式-SM还比反式异构体更有效地抑制FeSO_4 /抗坏血酸对胆固醇的氧化。顺式-SM的增强保护作用对金属离子促进的氧化具有选择性,并且似乎是由于金属离子有效浓度的降低而引起的。这些研究表明SM的反式双键对其抗氧化作用不是必需的。

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