Ueno H, Miyoshi H, Ebisui K, Iwamura H
Department of Agricultural Chemistry, Kyoto University, Japan.
Eur J Biochem. 1994 Oct 1;225(1):411-7. doi: 10.1111/j.1432-1033.1994.00411.x.
Two stereoisomers of natural rotenone (5'alpha-epirotenone and 5'beta-epirotenone) were synthesized to identify the stereochemical factor of rotenone required for the inhibition and also to probe the structure of the rotenone binding site. The inhibitory action of the stereoisomers was compared with that of rotenone using NADH-ubiquinone reductases from bovine heart submitochondrial particles (SMP), potato tubers (Solanum tuberosum L.) SMP and Escherichia coli (GR19N) membranes. With respect to bovine heart SMP, it was found that the bent form of rotenone is essential for the activity. The modification of the E-ring moiety also affected both the inhibitory potency and the pattern of inhibition. These results indicated that the rotenone-binding site recognizes the whole molecular structure (or shape) of rotenone in a strict sense. Rotenone and 5'beta-epirotenone inhibited the NADH-ubiquinone reductase of bovine heart SMP in a noncompetitive manner against exogenous quinones. In contrast, the inhibition pattern of 5'alpha-epirotenone varied from noncompetitive to competitive as the concentration of quinone increased. These results suggest that rotenone binds close to, but not at a site identical to, the location for ubiquinone in the ubiquinone-catalytic reaction site, whereas the 5'alpha-epirotenone-binding site overlaps that for ubiquinone due to a structural modification of E-ring moiety. Furthermore, the complex inhibition pattern of 5'alpha-epirotenone suggests that there are two quinone-binding sites in NADH-ubiquinone reductase. In contrast, the order of the inhibitory potencies of the three inhibitors with proton-pumping NADH-ubiquinone reductase of potato SMP was the same as that observed for the bovine enzyme. This suggests that the structure of rotenone-binding sites (or ubiquinone-binding sites) of these enzymes are similar. It was further demonstrated that 5'alpha-epirotenone inhibits quinone binding to both proton-pumping and non-proton-pumping NADH-ubiquinone reductases of potato SMP in a competitive manner. With respect to the proton-pumping NADH-ubiquinone reductase of the E. coli membrane, the sensitivity of the enzyme to the inhibitor was remarkably decreased and the difference in the inhibitory potencies of the three inhibitors became ambiguous. In addition, the inhibition pattern of the three inhibitors was competitive against quinone. These results indicated that, contrary to the mammalian enzyme, only part of the rotenone molecule is recognized by the quinone-binding site of this enzyme.
合成了天然鱼藤酮的两种立体异构体(5'α-表鱼藤酮和5'β-表鱼藤酮),以确定鱼藤酮抑制作用所需的立体化学因素,并探究鱼藤酮结合位点的结构。使用来自牛心亚线粒体颗粒(SMP)、马铃薯块茎(茄属植物)SMP和大肠杆菌(GR19N)膜的NADH-泛醌还原酶,将这些立体异构体的抑制作用与鱼藤酮的抑制作用进行了比较。对于牛心SMP,发现鱼藤酮的弯曲形式对活性至关重要。E环部分的修饰也影响了抑制效力和抑制模式。这些结果表明,严格意义上讲,鱼藤酮结合位点识别鱼藤酮的整个分子结构(或形状)。鱼藤酮和5'β-表鱼藤酮以非竞争性方式抑制牛心SMP的NADH-泛醌还原酶对外源醌的作用。相反,随着醌浓度的增加,5'α-表鱼藤酮的抑制模式从非竞争性变为竞争性。这些结果表明,鱼藤酮在泛醌催化反应位点结合于靠近泛醌的位置,但并非与之相同的位点,而5'α-表鱼藤酮的结合位点由于E环部分的结构修饰与泛醌的结合位点重叠。此外,5'α-表鱼藤酮复杂的抑制模式表明,NADH-泛醌还原酶中有两个醌结合位点。相比之下,三种抑制剂对马铃薯SMP质子泵NADH-泛醌还原酶的抑制效力顺序与对牛酶观察到的顺序相同。这表明这些酶的鱼藤酮结合位点(或泛醌结合位点)结构相似。进一步证明,5'α-表鱼藤酮以竞争性方式抑制醌与马铃薯SMP质子泵和非质子泵NADH-泛醌还原酶的结合。对于大肠杆菌膜的质子泵NADH-泛醌还原酶,该酶对抑制剂的敏感性显著降低,三种抑制剂抑制效力的差异变得不明显。此外,三种抑制剂的抑制模式对醌具有竞争性。这些结果表明,与哺乳动物酶相反,该酶的醌结合位点仅识别鱼藤酮分子的一部分。