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关于氰化物与大肠杆菌细胞色素bo型泛醇氧化酶的血红素-铜双核中心结合的红外和电子顺磁共振研究。部分还原状态下CuB-氰配合物的释放。

Infrared and EPR studies on cyanide binding to the heme-copper binuclear center of cytochrome bo-type ubiquinol oxidase from Escherichia coli. Release of a CuB-cyano complex in the partially reduced state.

作者信息

Tsubaki M, Mogi T, Hori H, Sato-Watanabe M, Anraku Y

机构信息

Department of Life Science, Faculty of Science, Himeji Institute of Technology, Kamigoori-cho, Akou-gun, Hyogo 678-12, Japan.

出版信息

J Biol Chem. 1996 Feb 23;271(8):4017-22. doi: 10.1074/jbc.271.8.4017.

Abstract

Cyanide-binding to the heme-copper binuclear center of bo-type ubiquinol oxidase from Escherichia coli was investigated with Fourier transform-infrared and EPR spectroscopies. Upon treatment of the air-oxidized CN-inhibited enzyme with excess sodium dithionite, a 12C-14N stretching vibration at 2146 cm-1 characteristic of the FeO3+ C=N CuB2+ bridging structure was quickly replaced with another stretching mode at 2034.5 cm-1 derived from the FeO2+ C=N moiety. The presence of ubiquinone-8 or ubiquinone-1 caused a gradual autoreduction of the metal center(s) of the air-oxidized CN-inhibited enzyme and a concomitant appearance of a strong cyanide stretching band at 2169 cm-1. This 2169 cm-1 species could not be retained with a membrane filter (molecular weight cutoff = 10,000) and showed unusual cyanide isotope shifts and a D2O shift. These observations together with metal content analyses indicate that the 2169 cm-1 band is due to a CuB.CN complex released from the enzyme. The same species could be produced by anaerobic partial reduction of the CN-inhibited ubiquinol oxidase and, furthermore, of the CN-inhibited cytochrome c oxidase; but not at all from the fully reduced CN-inhibited enzymes. These findings suggest that there is a common intermediate structure at the binuclear center of heme-copper respiratory enzymes in the partially reduced state from which the CuB center can be easily released upon cyanide-binding.

摘要

运用傅里叶变换红外光谱和电子顺磁共振光谱,研究了氰化物与来自大肠杆菌的 bo 型泛醇氧化酶的血红素 - 铜双核中心的结合情况。用过量连二亚硫酸钠处理空气氧化的、被氰化物抑制的酶后,在 2146 cm-1 处出现的具有 FeO3+ C=N CuB2+ 桥连结构特征的 12C-14N 伸缩振动,迅速被源自 FeO2+ C=N 部分的 2034.5 cm-1 处的另一种伸缩模式所取代。泛醌 -8 或泛醌 -1 的存在会导致空气氧化的、被氰化物抑制的酶的金属中心逐渐自动还原,并伴随在 2169 cm-1 处出现强氰化物伸缩带。这种 2169 cm-1 的物质不能被分子量截留值为 10,000 的膜过滤器保留,并且显示出异常的氰化物同位素位移和 D2O 位移。这些观察结果与金属含量分析表明,2169 cm-1 处的谱带是由于从酶中释放出的 CuB.CN 复合物所致。通过对被氰化物抑制的泛醇氧化酶进行厌氧部分还原,进而对被氰化物抑制的细胞色素 c 氧化酶进行厌氧部分还原,也能产生相同的物质;但完全还原的、被氰化物抑制的酶则完全不会产生。这些发现表明,在部分还原状态下,血红素 - 铜呼吸酶的双核中心存在一种共同的中间结构,氰化物结合后,CuB 中心可轻易从中释放出来。

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