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低温下处于高铁静止状态的细胞色素P450nor及其突变体(Ser286→Val、Thr)的晶体结构:与单加氧酶细胞色素P450的比较分析

Crystal structures of cytochrome P450nor and its mutants (Ser286-->Val, Thr) in the ferric resting state at cryogenic temperature: a comparative analysis with monooxygenase cytochrome P450s.

作者信息

Shimizu H, Park S, Lee D, Shoun H, Shiro Y

机构信息

The Faculty of Science, Gakushuin University, Tokyo, Japan.

出版信息

J Inorg Biochem. 2000 Aug 31;81(3):191-205. doi: 10.1016/s0162-0134(00)00103-3.

Abstract

Cytochrome P450nor (P450nor) is a heme enzyme isolated from the denitrifying fungus Fusarium oxysporum and catalyzes the NO reduction to N2O. Crystal structures of the wild type and two Ser286 mutants (Ser286-->Val, Ser286-->Thr) of P450nor have been determined for the ferric resting forms at a 1.7 A resolution at cryogenic temperature (100 K). We carried out three comparative analyses: (1) between the structures of P450nor at room temperature and cryogenic temperature, (2) between the structures of P450nor and four monooxygenase P450s, and (3) between the structures of the WT and the Ser286 mutant enzymes of P450nor. Comparison of the charge distribution on the protein surface suggests that proton and electron flow to the heme site is quite different in P450nor than in monooxygenase P450s. On the basis of the mutant structures, it was found that a special hydrogen-bonding network, Wat99-Ser286-Wat39-Asp393-solvent, acts as a proton delivery pathway in NO reduction by P450nor. In addition, the positively charged cluster located beneath the B'-helix is suggested as possible NADH binding site in P450nor, from which the direct two-electron transfer to the heme site allows to generate the characteristic intermediate in the NO reduction. These structural characteristics were not observed in structures of monooxygenase P450s, implying that these are factors determining the unique NO reduction activity of P450nor.

摘要

细胞色素P450nor(P450nor)是一种从反硝化真菌尖孢镰刀菌中分离得到的血红素酶,可催化一氧化氮还原为一氧化二氮。已在低温(100K)下以1.7埃的分辨率测定了P450nor野生型和两个Ser286突变体(Ser286→Val、Ser286→Thr)的铁静止形式的晶体结构。我们进行了三项比较分析:(1)P450nor在室温与低温下的结构之间;(2)P450nor与四种单加氧酶P450的结构之间;(3)P450nor野生型和Ser286突变体酶的结构之间。蛋白质表面电荷分布的比较表明,P450nor中质子和电子向血红素位点的流动与单加氧酶P450中的情况有很大不同。基于突变体结构,发现一个特殊的氢键网络Wat99-Ser286-Wat39-Asp393-溶剂,在P450nor还原NO的过程中作为质子传递途径。此外,位于B'-螺旋下方的带正电荷簇被认为是P450nor中可能的NADH结合位点,从该位点向血红素位点的直接双电子转移允许在NO还原过程中产生特征性中间体。这些结构特征在单加氧酶P450的结构中未观察到,这意味着这些是决定P450nor独特的NO还原活性的因素。

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