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细胞色素 b₅ 还原酶-细胞色素 b₅ 作为黄孢原毛平革菌中一种活性的 P450 氧化还原酶系统:向 CYP63A2 转移电子能力的非典型性质和体内证据。

Cytochrome b₅ reductase-cytochrome b₅ as an active P450 redox enzyme system in Phanerochaete chrysosporium: atypical properties and in vivo evidence of electron transfer capability to CYP63A2.

机构信息

Environmental Genetics and Molecular Toxicology Division, Department of Environmental Health, University of Cincinnati College of Medicine, Cincinnati, OH 45267-0056, USA.

出版信息

Arch Biochem Biophys. 2011 May 1;509(1):26-32. doi: 10.1016/j.abb.2011.02.023. Epub 2011 Mar 2.

Abstract

Two central redox enzyme systems exist to reduce eukaryotic P450 enzymes, the P450 oxidoreductase (POR) and the cyt b₅ reductase-cyt b₅. In fungi, limited information is available for the cyt b(5) reductase-cyt b(5) system. Here we characterized the kinetic mechanism of (cyt b₅r)-cyt b₅ redox system from the model white-rot fungus Phanerochaete chrysosporium (Pc) and made a quantitative comparison to the POR system. We determined that Pc-cyt b₅r followed a "ping-pong" mechanism and could directly reduce cytochrome c. However, unlike other cyt b₅ reductases, Pc-cyt b₅r lacked the typical ferricyanide reduction activity, a standard for cyt b₅ reductases. Through co-expression in yeast, we demonstrated that the Pc-cyt b₅r-cyt b₅ complex is capable of transferring electrons to Pc-P450 CYP63A2 for its benzo(a)pyrene monooxygenation activity and that the efficiency was comparable to POR. In fact, both redox systems supported oxidation of an estimated one-third of the added benzo(a)pyrene amount. To our knowledge, this is the first report to indicate that the cyt b₅r-cyt b₅ complex of fungi is capable of transferring electrons to a P450 monooxygenase. Furthermore, this is the first eukaryotic quantitative comparison of the two P450 redox enzyme systems (POR and cyt b₅r-cyt b₅) in terms of supporting a P450 monooxygenase activity.

摘要

有两种主要的氧化还原酶系统可以还原真核 P450 酶,即 P450 氧化还原酶 (POR) 和细胞色素 b₅ 还原酶-细胞色素 b₅。在真菌中,关于细胞色素 b(5)还原酶-细胞色素 b(5)系统的信息有限。在这里,我们对模型白腐真菌黄孢原毛平革菌 (Pc) 的 (cyt b₅r)-细胞色素 b₅ 氧化还原系统的动力学机制进行了表征,并与 POR 系统进行了定量比较。我们确定 Pc-cyt b₅r 遵循“乒乓”机制,并且可以直接还原细胞色素 c。然而,与其他细胞色素 b₅ 还原酶不同,Pc-cyt b₅r 缺乏典型的铁氰化物还原活性,这是细胞色素 b₅ 还原酶的一个标准。通过在酵母中的共表达,我们证明了 Pc-cyt b₅r-cyt b₅ 复合物能够将电子转移到 Pc-P450 CYP63A2,用于其苯并(a)芘单加氧酶活性,并且效率可与 POR 相媲美。事实上,两种氧化还原系统都支持估计三分之一的添加苯并(a)芘的氧化。据我们所知,这是第一个表明真菌的细胞色素 b₅r-细胞色素 b₅ 复合物能够将电子转移到 P450 单加氧酶的报告。此外,这是第一个在支持 P450 单加氧酶活性方面对两种 P450 氧化还原酶系统 (POR 和 cyt b₅r-cyt b₅) 进行的真核定量比较。

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