首页> 外文期刊>Journal of Lipid Research >Effects of docosahexaenoic acid on annular lipid fluidity of the rat bile canalicular plasma membrane.
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Effects of docosahexaenoic acid on annular lipid fluidity of the rat bile canalicular plasma membrane.

机译:二十二碳六烯酸对大鼠胆管质膜环形脂质流动性的影响。

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The role of docosahexaenoic acid (DHA) in the fluidity of the annular lipid regions and their associated membrane-bound proteins is still not as well understood as that in the global (bulk) lipid regions. We therefore studied the effects of dietary DHA on the relationship between annular and global lipid fluidity and membrane-bound enzymes such as 5'-nucleotidase and Mg(2)+-ATPase in the rat bile canalicular membrane. Dietary DHA caused significant increases in 5'-nucleotidase and Mg(2)+-ATPase activity and in global and annular lipid fluidity, a higher increase in fluidity in the annular lipids than the global lipids, and a decrease in the cholesterol-to-phospholipid molar ratio in the canalicular membrane. Plasma total cholesterol and LDL cholesterol decreased, and fecal cholesterol increased in the DHA-fed rats. No changes were observed in oxidative markers, but glutathione peroxidase increased in the liver with DHA feeding. Annular lipid fluidity, but not global lipid fluidity, correlated remarkably well with DHA, synchronously with the activities of 5'-nucleotidase and Mg(2)+-ATPase. The data indicate that the DHA-induced increase in annular lipid fluidity is responsible for the increases observed in the enzyme activity. We therefore concluded that the increased activity of membrane-bound enzymes and transporters induced by DHA and the concomitant increase in annular lipid fluidity comprise one of the mechanisms involved in DHA-induced clearance of plasma cholesterol.
机译:二十二碳六烯酸(DHA)在环状脂质区域及其相关的膜结合蛋白的流动性中的作用仍不如在整体(散装)脂质区域中的作用那么好。因此,我们研究了膳食DHA对大鼠胆管膜中环状和全局脂质流动性与膜结合酶(如5'-核苷酸酶和Mg(2)+-ATPase)之间关系的影响。饮食中的DHA导致5'-核苷酸酶和Mg(2)+-ATPase活性以及整体和环状脂质流动性显着增加,环状脂质中流动性的增加高于全局脂质,并且胆固醇转化为胆固醇的下降小管膜中的磷脂摩尔比。在DHA喂养的大鼠中,血浆总胆固醇和LDL胆固醇降低,而粪便胆固醇升高。氧化标记物未见变化,但饲喂DHA的肝脏中谷胱甘肽过氧化物酶增加。环状脂质流动性,而不是整体脂质流动性,与DHA显着相关,并且与5'-核苷酸酶和Mg(2)+-ATPase的活性同步。数据表明,DHA诱导的环状脂质流动性增加是造成酶活性增加的原因。因此,我们得出的结论是,DHA诱导的膜结合酶和转运蛋白的活性增加以及环状脂质流动性的同时增加,是DHA诱导的血浆胆固醇清除的机制之一。

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