McCurley J P, Miki T, Yu L, Yu C A
Department of Biochemistry, OAES, Oklahoma State University, Stillwater 74078.
Biochim Biophys Acta. 1990 Nov 5;1020(2):176-86. doi: 10.1016/0005-2728(90)90049-a.
EPR characteristics of cytochrome c1, cytochromes b-565 and b-562, the iron-sulfur cluster, and an antimycin-sensitive ubisemiquinone radical of purified cytochrome b-c1 complex of Rhodobacter sphaeroides have been studied. The EPR specra of cytochrome c1 shows a signal at g = 3.36 flanked with shoulders. The oxidized form of cytochrome b-562 shows a broad EPR signal at g = 3.49, while oxidized cytochrome b-565 shows a signal at g = 3.76, similar to those of two b cytochromes in the mitochondrial complex. The distribution of cytochromes b-565 and b-562 in the isolated complex is 44 and 56%, respectively. Antimycin and 2,5-dibromo-3-methyl-6-isopropyl-1,4-benzoquinone (DBMIB) have little effect on the g = 3.76 signal, but they cause a slight downfield and upfield shifts of the g = 3.49 signal, respectively. 5-Undecyl-6-hydroxyl-4,7-dioxobenzothiazole (UHDBT) shifts the g = 3.49 signal downfield to g = 3.56 and sharpens the g = 3.76 signal slightly. Myxothiazol causes an upfield shift of both g = 3.49 and g = 3.76 signals. EPR characteristics of the reduced iron-sulfur cluster in bacterial cytochrome b-c1 complex are: gx = 1.8 with a small shoulder at g = 1.76, gy = 1.89 and gz = 2.02, similar to those observed with the mitochondrial enzyme. The gx = 1.8 signal decreased and the shoulder increased concurrently as the redox potential decreased, indicating that the environment of the iron-sulfur cluster is sensitive to the redox state of the complex. UHDBT sharpens the gz and and shifts it downfield from g = 2.02 to 2.03, and shifts gx upfield from g = 1.80 to 1.78. UHDBT also causes an upfield shift of gy but to a much lesser extent compared to the other two signals. Addition of DBMIB causes a downfield shift of the gy from 1.89 to 1.94 and broadens the gx signal with an upfield to g = 1.75. Myxothiazol and antimycin show little effect on the gy and gz signals, but they broaden and shift the gx signal upfield to g = 1.74. However, the myxothiazol effect is partially reversed by UHDBT. An antimycin-sensitive ubisemiquinone radical was detected in the cytochrome b-c1 complex. At pH 8.4, the antimycin-sensitive ubisemiquinone radical has a maximal concentration of 0.66 mol per mol complex at 100 mV.(ABSTRACT TRUNCATED AT 400 WORDS)
对球形红细菌纯化的细胞色素b-c1复合物中的细胞色素c1、细胞色素b-565和b-562、铁硫簇以及抗霉素敏感的泛半醌自由基的电子顺磁共振(EPR)特性进行了研究。细胞色素c1的EPR谱在g = 3.36处显示一个伴有肩部的信号。细胞色素b-562的氧化形式在g = 3.49处显示一个宽的EPR信号,而氧化的细胞色素b-565在g = 3.76处显示一个信号,类似于线粒体复合物中两个b细胞色素的信号。分离复合物中细胞色素b-565和b-562的分布分别为44%和56%。抗霉素和2,5-二溴-3-甲基-6-异丙基-1,4-苯醌(DBMIB)对g = 3.76信号影响很小,但它们分别使g = 3.49信号轻微向低场和高场移动。5-十一烷基-6-羟基-4,7-二氧苯并噻唑(UHDBT)将g = 3.49信号向低场移动至g = 3.56,并使g = 3.76信号略有锐化。粘噻唑使g = 3.49和g = 3.76信号均向高场移动。细菌细胞色素b-c1复合物中还原态铁硫簇的EPR特性为:gx = 1.8,在g = 1.76处有一个小肩部,gy = 1.89,gz = 2.02,类似于在线粒体酶中观察到的情况。随着氧化还原电位降低,gx = 1.8信号减弱,肩部同时增强,表明铁硫簇的环境对复合物的氧化还原状态敏感。UHDBT使gz锐化并使其从g = 2.02向低场移动至g = 2.03,使gx从g = 1.80向高场移动至1.78。UHDBT也使gy向高场移动,但与其他两个信号相比程度要小得多。添加DBMIB使gy从1.89向低场移动至1.94,并使gx信号变宽,高场至g = 1.75。粘噻唑和抗霉素对gy和gz信号影响很小,但它们使gx信号变宽并向高场移动至g = 1.74。然而,粘噻唑的作用部分被UHDBT逆转。在细胞色素b-c1复合物中检测到一个抗霉素敏感的泛半醌自由基。在pH 8.4时,抗霉素敏感的泛半醌自由基在100 mV时每摩尔复合物的最大浓度为0.66摩尔。(摘要截于400字)