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具有前所未有的细胞色素P450血红素铁配体组的细胞色素P450 BM3突变体的结构和光谱表征。新的血红素连接状态影响细胞色素P450 BM3中的构象平衡。

Structural and spectroscopic characterization of P450 BM3 mutants with unprecedented P450 heme iron ligand sets. New heme ligation states influence conformational equilibria in P450 BM3.

作者信息

Girvan Hazel M, Seward Harriet E, Toogood Helen S, Cheesman Myles R, Leys David, Munro Andrew W

机构信息

School of Chemical Engineering and Analytical Science, Manchester Interdisciplinary Biocentre, University of Manchester, Manchester M1 7DN, UK.

出版信息

J Biol Chem. 2007 Jan 5;282(1):564-72. doi: 10.1074/jbc.M607949200. Epub 2006 Oct 31.

Abstract

Two novel P450 heme iron ligand sets were generated by directed mutagenesis of the flavocytochrome P450 BM3 heme domain. The A264H and A264K variants produce Cys-Fe-His and Cys-Fe-Lys axial ligand sets, which were validated structurally and characterized by spectroscopic analysis. EPR and magnetic circular dichroism (MCD) provided fingerprints defining these P450 ligand sets. Near IR MCD spectra identified ferric low spin charge-transfer bands diagnostic of the novel ligands. For the A264K mutant, this is the first report of a Cys-Fe-Lys near-IR MCD band. Crystal structure determination showed that substrate-free A264H and A264K proteins crystallize in distinct conformations, as observed previously in substrate-free and fatty acid-bound wild-type P450 forms, respectively. This, in turn, likely reflects the positioning of the I alpha helix section of the protein that is required for optimal configuration of the ligands to the heme iron. One of the monomers in the asymmetric unit of the A264H crystals was in a novel conformation with a more open substrate access route to the active site. The same species was isolated for the wildtype heme domain and represents a novel conformational state of BM3 (termed SF2). The "locking" of these distinct conformations is evident from the fact that the endogenous ligands cannot be displaced by substrate or exogenous ligands. The consequent reduction of heme domain conformational heterogeneity will be important in attempts to determine atomic structure of the full-length, multidomain flavocytochrome, and thus to understand in atomic detail interactions between its heme and reductase domains.

摘要

通过对黄素细胞色素P450 BM3血红素结构域进行定向诱变,生成了两种新型的细胞色素P450血红素铁配体组。A264H和A264K变体产生了半胱氨酸-铁-组氨酸和半胱氨酸-铁-赖氨酸轴向配体组,这些配体组通过结构验证和光谱分析进行了表征。电子顺磁共振(EPR)和磁圆二色性(MCD)提供了定义这些P450配体组的指纹图谱。近红外MCD光谱确定了诊断新型配体的铁低自旋电荷转移带。对于A264K突变体,这是半胱氨酸-铁-赖氨酸近红外MCD带的首次报道。晶体结构测定表明,无底物的A264H和A264K蛋白分别以不同的构象结晶,这与之前在无底物和脂肪酸结合的野生型P450形式中观察到的情况一致。反过来,这可能反映了蛋白质Iα螺旋部分的定位,这是配体与血红素铁最佳构型所必需的。A264H晶体不对称单元中的一个单体处于一种新的构象,具有更开放的底物进入活性位点的途径。野生型血红素结构域也分离出了相同的物种,它代表了BM3的一种新的构象状态(称为SF2)。这些不同构象的“锁定”从内源性配体不能被底物或外源性配体取代这一事实中显而易见。血红素结构域构象异质性的降低对于确定全长多结构域黄素细胞色素的原子结构以及从而详细了解其血红素和还原酶结构域之间的原子相互作用至关重要。

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