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膜脂流动性及其对膜相关酶活化能的影响。

Membrane lipid fluidity and its effect on the activation energy of membrane-associated enzymes.

作者信息

McMurchie E J, Raison J K

出版信息

Biochim Biophys Acta. 1979 Jul 5;554(2):364-74. doi: 10.1016/0005-2736(79)90377-8.

Abstract
  1. The fatty acid composition of mitochondrial membranes from sheep and rats was altered by feeding these animals diets which were rich in unsaturated fatty acids. Changes in membrane lipid fluidity resulting from the altered membrane lipid composition were assessed by determining the upper temperature limit of the disorder-order transition (Tf) and the Arrhenius activation energy (Ea) of succinate oxidase. 2. After feeding the unsaturated fatty acid-rich diet to sheep the Ea, in the temperature range above Tf, increased from 8 to 63 kJ . mol-1 while Tf decreased from 32 to 15 degrees C. Rats fed an unsaturated fatty acid-rich diet exhibited an increase in Ea from 17 to 63 kJ . mol-1 and a decrease in Tf from 23 to 4 degrees C. 3. This decrease in Tf was related to an increase in the ratio of linoleic acid to stearic acid in the membrane lipid. Tf was not related to the proportion of unsaturated fatty acids in the membrane lipids, although an increase in unsaturation usually led to a decrease in Tf. 4. The results show that membrane lipid fluidity has a direct influence on the conformation of the active site of some membrane-associated enzymes, with the result that such enzymes display a higher Ea when the membrane lipids are comparatively more fluid. The increase in Ea of membrane-associated enzymes which accompanies changes in the physical state of membrane suggests that some proteins may phase separate with the more fluid lipids at low temperatures.
摘要
  1. 通过给绵羊和大鼠喂食富含不饱和脂肪酸的日粮,改变了它们线粒体膜的脂肪酸组成。通过测定无序 - 有序转变的上限温度(Tf)和琥珀酸氧化酶的阿累尼乌斯活化能(Ea),评估了由膜脂组成改变导致的膜脂流动性变化。2. 给绵羊喂食富含不饱和脂肪酸的日粮后,在高于Tf的温度范围内,Ea从8 kJ·mol-1增加到63 kJ·mol-1,而Tf从32℃降至15℃。喂食富含不饱和脂肪酸日粮的大鼠,Ea从17 kJ·mol-1增加到63 kJ·mol-1,Tf从23℃降至4℃。3. Tf的降低与膜脂中亚油酸与硬脂酸的比例增加有关。Tf与膜脂中不饱和脂肪酸的比例无关,尽管不饱和度增加通常会导致Tf降低。4. 结果表明,膜脂流动性对一些膜相关酶活性位点的构象有直接影响,结果是当膜脂相对更具流动性时,这些酶表现出更高的Ea。膜相关酶的Ea随膜物理状态变化而增加,这表明一些蛋白质在低温下可能会与流动性更强的脂质发生相分离。

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