首页> 美国卫生研究院文献>Frontiers in Physiology >Membrane Lipid Microenvironment Modulates Thermodynamic Properties of the Na+-K+-ATPase in Branchial and Intestinal Epithelia in Euryhaline Fish In vivo
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Membrane Lipid Microenvironment Modulates Thermodynamic Properties of the Na+-K+-ATPase in Branchial and Intestinal Epithelia in Euryhaline Fish In vivo

机译:膜脂质微环境调节体内Euryhaline鱼的分支和肠上皮中Na + -K + -ATPase的热力学性质。

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摘要

We have analyzed the effects of different native membrane lipid composition on the thermodynamic properties of the Na+-K+-ATPase in different epithelia from the gilthead seabream Sparus aurata. Thermodynamic parameters of activation for the Na+-K+-ATPase, as well as contents of lipid classes and fatty acids from polar lipids were determined for gill epithelia and enterocytes isolated from pyloric caeca, anterior intestine and posterior intestine. Arrhenius analyses of control animals revealed differences in thermal discontinuity values (Td) and activation energies determined at both sides of Td between intestinal and gill epithelia. Eyring plots disclosed important differences in enthalpy of activation (ΔH) and entropy of activation (ΔS) between enterocytes and branchial cells. Induction of n-3 LCPUFA deficiency dramatically altered membrane lipid composition in enterocytes, being the most dramatic changes the increase in 18:1n-9 (oleic acid) and the reduction of n-3 LCPUFA (mainly DHA, docosahexaenoic acid). Strikingly, branchial cells were much more resistant to diet-induced lipid alterations than enterocytes, indicating the existence of potent lipostatic mechanisms preserving membrane lipid matrix in gill epithelia. Paralleling lipid alterations, values of Ea1, ΔH and ΔS for the Na+-K+-ATPase were all increased, while Td values vanished, in LCPUFA deficient enterocytes. In turn, Differences in thermodynamic parameters were highly correlated with specific changes in fatty acids, but not with individual lipid classes including cholesterol in vivo. Thus, Td was positively related to 18:1n-9 and negatively to DHA. Td, Ea1 and ΔH were exponentially related to DHA/18:1n-9 ratio. The exponential nature of these relationships highlights the strong impact of subtle changes in the contents of oleic acid and DHA in setting the thermodynamic properties of epithelial Na+-K+-ATPase in vivo. The effects are consistent with physical effects on the lipid membrane surrounding the enzyme as well as with direct interactions with the Na+-K+-ATPase.
机译:我们已经分析了不同的天然膜脂质组成对金头鲷鲷鱼不同上皮中Na + -K + -ATPase热力学性质的影响。测定g的上皮和肠上皮细胞的Na + -K + -ATPase活化的热力学参数以及极性脂质的脂质类别和脂肪酸含量幽门盲肠,前肠和后肠。阿雷尼乌斯(Arrhenius)对对照动物的分析显示,肠和g上皮之间的热不连续性值(Td)和活化能在Td两侧均不同。 Eyring图显示肠上皮细胞和分支细胞之间的激活焓(ΔH)和激活熵(ΔS)有重要差异。 n-3 LCPUFA缺乏的诱导显着改变了肠细胞中的膜脂质组成,最显着的变化是18:1n-9(油酸)的增加和n-3 LCPUFA(主要是DHA,二十二碳六烯酸)的减少。引人注目的是,与肠细胞相比,分支细胞对饮食诱导的脂质改变的抵抗力强得多,这表明在g上皮细胞中存在有效的降脂机制,可以维持膜脂质基质。 Na + -K + -ATPase的平行脂质变化,Ea1,ΔH和ΔS的值LCPUFA缺乏的肠上皮细胞中Td均增加,而Td值消失。反过来,热力学参数的差异与脂肪酸的特定变化高度相关,但与体内包括胆固醇在内的单个脂质类别却没有高度相关。因此,Td与18:1n-9正相关,与DHA负相关。 Td,Ea1和ΔH与DHA / 18:1n-9比例呈指数关系。这些关系的指数性质突显了油酸和DHA含量的细微变化对设置上皮Na + -K + -ATPase的热力学性质的强烈影响。体内。这种作用与对酶周围脂质膜的物理作用以及与Na + -K + -ATPase的直接相互作用是一致的。

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