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大鼠棕色脂肪组织线粒体中冷适应和必需脂肪酸缺乏引起的能量激发参数和质子传导的变化。

Variations in energization parameters and proton conductance induced by cold adaptation and essential fatty acid deficiency in mitochondria of brown adipose tissue in the rat.

作者信息

Goubern M, Yazbeck J, Chapey M F, Diolez P, Moreau F

机构信息

Laboratoire d'Adaptation Energétique à l'Environnement, E.P.H.E., Paris, France.

出版信息

Biochim Biophys Acta. 1990 Feb 2;1015(2):334-40. doi: 10.1016/0005-2728(90)90038-6.

Abstract

Male weanling Long-Evans rats were fed on a low-fat semipurified diet (control diet, 2% sunflower oil; essential fatty acid (EFA) deficient diet, 2% hydrogenated coconut oil) for 9 weeks. In order to modulate need for non-shivering thermogenesis, groups of rats on each diet were exposed at 28 degrees C (thermoneutrality) and at 5 degrees C (cold acclimation) for the last 5 weeks. In brown adipose tissue (BAT) mitochondria, several parameters of mitochondrial energization, protonmotive force (delta p) and its components delta pH and membrane potential, delta psi, were investigated. Simultaneous measurement of oxygen consumption and delta psi (the main component of delta p) was performed by varying alpha-glycerophosphate concentration and the force/flux relationship of the mitochondria was established by comparison of proton conductance, CmH+, over the whole range of protonmotive force. delta p. In the absence of GDP, at 28 degrees C, EFA deficiency induced a marked increase in CmH+. Cold acclimation led to comparable enhanced CmH+ in control and EFA-deficient mitochondria. In the presence of GDP which binds and inhibits the BAT 32 kDa uncoupling protein, CmH+ was the same in 28 degrees C and 5 degrees C control mitochondria, but EFA deficiency led to an enhanced GDP independent CmH+ at 28 degrees C and to a lesser extent at 5 degrees C. These results are discussed with reference to substantial changes in mitochondrial lipid composition induced by the deficiency.

摘要

雄性断乳Long-Evans大鼠被喂食低脂半纯化饮食(对照饮食,2%向日葵油;必需脂肪酸(EFA)缺乏饮食,2%氢化椰子油)9周。为了调节对非寒战产热的需求,每种饮食的大鼠组在最后5周分别暴露于28℃(热中性)和5℃(冷适应)环境中。对棕色脂肪组织(BAT)线粒体中的线粒体能量化、质子动力(Δp)及其组分ΔpH和膜电位(Δψ)的几个参数进行了研究。通过改变α-甘油磷酸浓度同时测量氧气消耗和Δψ(Δp的主要组分),并通过比较整个质子动力范围内的质子电导率(CmH+)来建立线粒体的力/通量关系。在28℃且不存在GDP的情况下,EFA缺乏导致CmH+显著增加。冷适应使对照和EFA缺乏的线粒体中的CmH+有类似程度的增强。在存在结合并抑制BAT 32 kDa解偶联蛋白的GDP时,28℃和5℃的对照线粒体中的CmH+相同,但EFA缺乏导致28℃时GDP非依赖性的CmH+增强,在5℃时增强程度较小。结合缺乏所诱导的线粒体脂质组成的实质性变化对这些结果进行了讨论。

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