Department of Biochemistry, Gifu University School of Medicine, Tsukasa-cho 40, Gifu 500, Japan.
Mycotoxin Res. 1997 Mar;13(1):35-42. doi: 10.1007/BF02945060.
Rubroskyrin, a modified bisanthraquinone pigment from an yellow rice moldPenicillium islandicum Sopp, was examined for its redox-interaction with the mitochondrial respiratory chain by using rat liver submitochondrial particles (SMP) and was compared with luteoskyrin and rugulosin.Rubroskyrin showed a redox interaction with the NAD-linked respiratory chain of SMP, promoting NADH oxidase in the presence of rotenone, a specific inhibitor to coupling site I of the respiratory chain. Rubroskyrin-mediated NADH oxidase was not inhibited by antimycin A and cyanide, inhibitors to coupling sites II and III, respectively, indicating a generation of an electron transport shunt from a rotenone-insensitive site of NADH dehydrogenase (complex I) to dissolved oxygen. An electrontransport shunt to cytochromec oxidase from complex I was also observed in the experiment with cytochromec and antimycin A. Rubroskyrin did not interact with succinate-linked respiratory chain.Such enzymatic redox response which generates electron transport shunt was not detected for luteoskyrin and rugulosin in the present study.
从黄色米曲霉 Penicillium islandicum Sopp 中提取的修饰双蒽醌色素红曲菌素,与大鼠肝亚线粒体颗粒(SMP)的线粒体呼吸链的氧化还原相互作用进行了研究,并与叶黄素和柔毛菌素进行了比较。红曲菌素与 SMP 的 NAD 连接呼吸链发生氧化还原相互作用,在鱼藤酮存在下促进 NADH 氧化酶,鱼藤酮是呼吸链偶联部位 I 的特异性抑制剂。红曲菌素介导的 NADH 氧化酶不受抗霉素 A 和氰化物抑制,抗霉素 A 和氰化物分别是偶联部位 II 和 III 的抑制剂,表明从 NADH 脱氢酶(复合物 I)的鱼藤酮不敏感部位到溶解氧产生电子传递分流。在含有细胞色素 c 和抗霉素 A 的实验中也观察到从复合物 I 到细胞色素 c 氧化酶的电子传递分流。在本研究中,叶黄素和柔毛菌素没有与琥珀酸连接的呼吸链相互作用。目前的研究未检测到产生电子传递分流的这种酶促氧化还原反应。