Terada H, Fukui Y, Shinohara Y, Ju-ichi M
Faculty of Pharmaceutical Sciences, University of Tokushima, Japan.
Biochim Biophys Acta. 1988 Mar 30;933(1):193-9. doi: 10.1016/0005-2728(88)90070-9.
The potent weakly acidic uncoupler SF 6847 was modified by methylation of its phenolic OH group, and the effect of the resulting derivative, with no acid-dissociable group, on oxidative phosphorylation in rat liver mitochondria was examined. The methylated SF 6847 did not induce uncoupling at up to 40 microM, while SF 6847 uncoupled oxidative phosphorylation completely at about 20 nM, indicating that the acid-dissociable group is essential for uncoupling. The O-methylated SF 6847 at 20 microM did, however, inhibit state 3 respiration of mitochondria, although it did not inhibit electron-flow through the respiratory chain, ATPase activated by weakly acidic uncouplers or Pi-ATP exchange. At the same concentration, it also inhibited ATP synthesis in submitochondrial particles. These features are different from those of known inhibitors of oxidative phosphorylation. Thus, O-methylated SF 6847 is a unique inhibitor of oxidative phosphorylation. The possible identity of the uncoupler binding protein is discussed on the basis of these results.
强效弱酸性解偶联剂SF 6847通过其酚羟基的甲基化进行修饰,并研究了所得无酸解离基团的衍生物对大鼠肝脏线粒体氧化磷酸化的影响。甲基化的SF 6847在高达40μM时不会诱导解偶联,而SF 6847在约20 nM时会完全解偶联氧化磷酸化,表明酸解离基团对于解偶联至关重要。然而,20μM的O-甲基化SF 6847确实会抑制线粒体的状态3呼吸,尽管它不会抑制通过呼吸链的电子流、弱酸性解偶联剂激活的ATP酶或Pi-ATP交换。在相同浓度下,它也会抑制亚线粒体颗粒中的ATP合成。这些特性与已知的氧化磷酸化抑制剂不同。因此,O-甲基化SF 6847是一种独特的氧化磷酸化抑制剂。基于这些结果讨论了解偶联剂结合蛋白可能的身份。