首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Oleic and linoleic acids are active principles in Nigella sativa and stabilize an E(2)P conformation of the Na,K-ATPase. Fatty acids differentially regulate cardiac glycoside interaction with the pump.
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Oleic and linoleic acids are active principles in Nigella sativa and stabilize an E(2)P conformation of the Na,K-ATPase. Fatty acids differentially regulate cardiac glycoside interaction with the pump.

机译:油酸和亚油酸是苜蓿中的活性成分,可稳定Na,K-ATPase的E(2)P构象。脂肪酸差异调节心脏糖苷与泵的相互作用。

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摘要

Nigella sativa seed oil was found to contain a modulator of Na,K-ATPase. Separation analyses combined with (1)H NMR and GCMS identified the inhibitory fraction as a mixture of oleic and linoleic acids. These two fatty acids are specifically concentrated in several medicinal plant oils, and have particularly been implicated in decreasing high blood pressure. The ouabain binding site on Na,K-ATPase has also been implicated in blood pressure regulation. Thus, we aimed to determine how these two molecules modify pig kidney Na,K-ATPase. Oleic and linoleic acids did not modify reactions involving the E(1) (Na(+)) conformations of the Na,K-ATPase. In contrast, K(+) dependent reactions were strongly modified after treatment. Oleic and linoleic acids were found to stabilize a pump conformation that binds ouabain with high affinity, i.e., an ion free E(2)P form. Time-resolved binding assays using anthroylouabain, a fluorescent ouabain analog, revealed that the increased ouabain affinity is unique to oleic and linoleic acids, as compared with gamma-linolenic acid, which decreased pump-mediated ATP hydrolysis but did not equally increase ouabain interaction with the pump. Thus, the dynamic changes in plasma levels of oleic and linoleic acids are important in the modulation of the sensitivity of the sodium pump to cardiac glycosides. Given the possible involvement of the cardiac glycoside binding site on Na,K-ATPase in the regulation of hypertension, we suggest oleic acid to be a specific chaperon that modulates interaction of cardiac glycosides with the sodium pump.
机译:发现黑变种种子油含有Na,K-ATP酶的调节剂。分离分析与(1)H NMR和GCMS相结合,确定抑制性部分为油酸和亚油酸的混合物。这两种脂肪酸特别浓缩在几种药用植物油中,尤其与降低高血压有关。 Na,K-ATPase上的哇巴因结合位点也与血压调节有关。因此,我们旨在确定这两个分子如何修饰猪肾Na,K-ATPase。油酸和亚油酸不会修改涉及Na,K-ATPase的E(1)(Na(+))构象的反应。相比之下,K(+)依赖反应在治疗后被强烈修饰。发现油酸和亚油酸稳定了以高亲和力结合哇巴因的泵构象,即无离子的E(2)P形式。使用荧光哇巴因类似物蒽蒽酮的时间分辨结合分析表明,与γ-亚麻酸相比,增加的哇巴因亲和力是油酸和亚油酸所特有的,后者减少了泵介导的ATP水解,但没有同等地增加哇巴因与泵。因此,油酸和亚油酸血浆水平的动态变化在调节钠泵对强心苷的敏感性中很重要。考虑到Na,K-ATPase上强心苷结合位点可能参与高血压的调节,我们建议油酸是一种特定的伴侣分子,可调节强心苷与钠泵的相互作用。

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