Dedukhova V I, Mokhova E N, Skulachev V P, Starkov A A, Arrigoni-Martelli E, Bobyleva V A
Department of Bioenergetics, A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, USSR.
FEBS Lett. 1991 Dec 16;295(1-3):51-4. doi: 10.1016/0014-5793(91)81382-i.
The effect of ATP/ADP-antiporter inhibitors on palmitate-induced uncoupling was studied in heart muscle mitochondria and inside-out submitochondrial particles. In both systems palmitate is found to decrease the respiration-generated membrane potential. In mitochondria, this effect is specifically abolished by carboxyatractylate (CAtr) a non-penetrating inhibitor of antiporter. In submitochondrial particles, CAtr does not abolish the palmitate-induced potential decrease. At the same time, bongkrekic acid, a penetrating inhibitor of the antiporter, suppresses the palmitate effect on the potential both in mitochondria and particles. Palmitoyl-CoA which is known to inhibit the antiporter in mitochondria as well as in particles decreases the palmitate uncoupling efficiency in both these systems. These data are in agreement with the hypothesis that the ATP/ADP-antiporter is involved in the action of free fatty acids as natural uncouplers of oxidative phosphorylation.
在心肌线粒体和外翻的亚线粒体颗粒中研究了ATP/ADP反向转运体抑制剂对棕榈酸酯诱导的解偶联作用的影响。在这两个系统中,均发现棕榈酸酯会降低呼吸产生的膜电位。在线粒体中,这种作用可被反向转运体的非穿透性抑制剂羧基苍术苷(CAtr)特异性消除。在亚线粒体颗粒中,CAtr不能消除棕榈酸酯诱导的电位降低。同时,反向转运体的穿透性抑制剂缬氨霉素,可抑制线粒体和颗粒中棕榈酸酯对电位的影响。已知棕榈酰辅酶A可抑制线粒体和颗粒中的反向转运体,它在这两个系统中均会降低棕榈酸酯的解偶联效率。这些数据与ATP/ADP反向转运体参与游离脂肪酸作为氧化磷酸化解偶联剂的作用这一假说相符。