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脂肪酸诱导的大鼠钠钾ATP酶同工型哇巴因反应性的调节

Fatty acid-induced modulation of ouabain responsiveness of rat Na, K-ATPase isoforms.

作者信息

Gerbi A, Maixent J M

机构信息

Laboratoire de Recherche Cardiologique, Faculté de Médecine, 15 Bd Pierre Dramard 13015, Marseille, France.

出版信息

J Membr Biol. 1999 Mar 1;168(1):19-27. doi: 10.1007/s002329900494.

Abstract

Membrane phospholipids represent a potential influence on the enzymatic properties of the Na,K-ATPase. Little is known concerning the effects of the fatty acid environment surrounding the enzyme on the kinetic properties of the Na,K-ATPase. We used the most obvious difference among the alpha isoforms of rat, their affinities for digitalis glycosides, to examine the relationship between the lipid environment and the Na,K-ATPase. Specific membrane environments that differ in their fatty acid composition were produced by drug-induced diabetes, as well as variations in diet. The alpha1 isoforms in various tissues were then characterized by their resistance to ouabain in Na,K-ATPase-enriched membrane microsomal fractions. The Na,K-ATPase activity in nerves and hearts were altered by diabetes and partially restored in nerves after a fish oil diet. Evaluation of enzyme kinetics (dose-response curves for ouabain) in membrane preparations allowed us to correlate the ouabain affinity of alpha1 isoform with fatty acid composition. The affinity of the alpha1 isoform for ouabain was significantly increased with accretions in the total amount of fatty acids of the n-6 series (P < 0.0001). Our observations provide a partial explanation for the observed difference in isoform properties among tissues. Moreover, these results underline the interaction between membrane fatty acids and the glycoside binding site of the Na,K-ATPase alpha1 subunit.

摘要

膜磷脂对钠钾-ATP酶的酶学性质可能存在影响。关于酶周围脂肪酸环境对钠钾-ATP酶动力学性质的影响,目前所知甚少。我们利用大鼠α同工型之间最明显的差异,即它们对洋地黄糖苷的亲和力,来研究脂质环境与钠钾-ATP酶之间的关系。通过药物诱导的糖尿病以及饮食变化,产生了脂肪酸组成不同的特定膜环境。然后,通过富含钠钾-ATP酶的膜微粒体组分中各组织α1同工型对哇巴因的抗性来对其进行表征。糖尿病改变了神经和心脏中的钠钾-ATP酶活性,而鱼油饮食后神经中的该活性部分恢复。对膜制剂中酶动力学(哇巴因剂量-反应曲线)的评估使我们能够将α1同工型对哇巴因的亲和力与脂肪酸组成相关联。随着n-6系列脂肪酸总量的增加,α1同工型对哇巴因的亲和力显著增加(P < 0.0001)。我们的观察结果为各组织中同工型性质的差异提供了部分解释。此外,这些结果强调了膜脂肪酸与钠钾-ATP酶α1亚基糖苷结合位点之间的相互作用。

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