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细胞色素P450 BM3的393位苯丙氨酸突变体具有修饰的血红素氧化还原电位,其血红素乙烯基和丙酸酯构象发生了改变。

Phe393 mutants of cytochrome P450 BM3 with modified heme redox potentials have altered heme vinyl and propionate conformations.

作者信息

Chen Zhucheng, Ost Tobias W B, Schelvis Johannes P M

机构信息

Department of Chemistry, New York University, 31 Washington Place, Room 1001, New York, New York 10003, USA.

出版信息

Biochemistry. 2004 Feb 24;43(7):1798-808. doi: 10.1021/bi034920g.

Abstract

It has been well established that the heme redox potential is affected by many different factors. Among others, it is sensitive to the proximal heme ligand and the conformation of the propionate and vinyl groups. In the cytochrome P450 BM3 heme domain, substitution of the highly conserved phenylalanine 393 results in a dramatic change in the heme redox potential [Ost, T. W. B., Miles, C. S., Munro, A. W., Murdoch, J., Reid, G. A., and Chapman, S. K. (2001) Biochemistry 40, 13421-13429]. We have used resonance Raman spectroscopy to characterize heme structural changes and modification of heme interactions with the protein matrix that are induced by the F393 substitutions and to determine their correlation with the heme redox potential. Our results show that the Fe-S stretching frequency of the 5-coordinated, high-spin ferric heme is not affected by the mutations, suggesting that the electron density in the Fe-S bond in this state is not affected by the F393 mutation and is not a good indicator of the heme redox potential. Substrate binding perturbs the hydrogen bonding between one propionate group and the protein matrix and correlates to both the size of residue 393 and the heme redox potential. However, heme reduction does not affect the conformation of the propionate groups. Although the conformation of the vinyl groups is not affected much by substrate binding, their conformation changes from mainly out-of-plane to predominantly in-plane upon heme reduction. The extent of these conformational changes correlates strongly with the size of the 393 residue and the heme redox potential, suggesting that steric interaction between this residue and the vinyl groups may be of importance in regulating the heme redox potential in the P450 BM3 heme domain. Further implications of our findings for the change in redox potential upon mutation of F393 will be discussed.

摘要

血红素氧化还原电位受多种不同因素影响,这一点已得到充分证实。其中,它对近端血红素配体以及丙酸酯基和乙烯基的构象敏感。在细胞色素P450 BM3血红素结构域中,高度保守的苯丙氨酸393被取代会导致血红素氧化还原电位发生显著变化[奥斯特,T. W. B.,迈尔斯,C. S.,芒罗,A. W.,默多克,J.,里德,G. A.,以及查普曼,S. K.(2001年)《生物化学》40卷,13421 - 13429页]。我们利用共振拉曼光谱来表征由F393取代引发的血红素结构变化以及血红素与蛋白质基质相互作用的改变,并确定它们与血红素氧化还原电位的相关性。我们的结果表明,五配位高自旋铁血红素的Fe - S伸缩频率不受这些突变影响,这表明该状态下Fe - S键中的电子密度不受F393突变影响,且不是血红素氧化还原电位的良好指标。底物结合扰乱了一个丙酸酯基团与蛋白质基质之间的氢键,并且与393位残基的大小以及血红素氧化还原电位都相关。然而,血红素还原并不影响丙酸酯基团的构象。虽然乙烯基的构象受底物结合影响不大,但在血红素还原时,它们的构象从主要的面外形式转变为主要的面内形式。这些构象变化的程度与393位残基的大小以及血红素氧化还原电位密切相关,这表明该残基与乙烯基之间的空间相互作用可能在调节P450 BM3血红素结构域中的血红素氧化还原电位方面具有重要作用。将讨论我们的发现对F393突变时氧化还原电位变化的进一步影响。

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