Fontaine E M, Moussa M, Devin A, Garcia J, Ghisolfi J, Rigoulet M, Leverve X M
Laboratoire de Bioénergétique Fondamentale et Appliquée, Université Joseph Fourier, Grenoble, France.
Biochim Biophys Acta. 1996 Sep 30;1276(3):181-7. doi: 10.1016/0005-2728(96)00075-8.
Liver mitochondria isolated from controls or polyunsaturated fatty acid (PUFA) deficient rats were studied for oxidative phosphorylation. A PUFA-deficient diet led to a dramatic change in the fatty acid composition of mitochondrial lipid content, similar to that reported in the literature. Besides the changes in lipid composition, mitochondrial volume was enlarged (+45% in state 4 and two-fold in state 3). State 4 respiration was increased together with a decrease in protonmotive force. The non-ohmicity of the relationship between non-phosphorylating respiration and protonmotive force was more pronounced in the PUFA-deficient group. State 3 oxygen consumption as well as the rate of ATP synthesis showed no difference between the two groups, whereas the protonmotive force decreased substantially in mitochondria from PUFA-deficient animals. In contrast, ATP/O ratios were decreased in the PUFA-deficient group when determined at subsaturating ADP concentration. Taken together, these results are in agreement with both an increased non-ohmic proton leak and an increased redox slipping. The relative importance of these two effects on the overall efficiency of oxidative phosphorylation depends on both the rate of oxidative phosphorylation and the maintained protonmotive force. Hence, in isolated mitochondria the respective role of each effect may vary between state 4 and state 3.
对从对照组或多不饱和脂肪酸(PUFA)缺乏的大鼠中分离出的肝脏线粒体进行了氧化磷酸化研究。与文献报道相似,PUFA缺乏的饮食导致线粒体脂质含量的脂肪酸组成发生显著变化。除了脂质组成的变化外,线粒体体积增大(状态4时增加45%,状态3时增加两倍)。状态4呼吸增加,同时质子动力势降低。PUFA缺乏组中,非磷酸化呼吸与质子动力势之间关系的非欧姆性更为明显。两组之间状态3的耗氧量以及ATP合成速率没有差异,而PUFA缺乏动物的线粒体中质子动力势大幅降低。相反,在亚饱和ADP浓度下测定时,PUFA缺乏组的ATP/O比值降低。综上所述,这些结果与非欧姆质子泄漏增加和氧化还原滑移增加均相符。这两种效应对氧化磷酸化总体效率的相对重要性取决于氧化磷酸化速率和维持的质子动力势。因此,在分离的线粒体中,每种效应的各自作用在状态4和状态3之间可能有所不同。