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底物对亚铁野生型和T252A细胞色素P450-CAM光谱特性的影响。

The influence of substrate on the spectral properties of oxyferrous wild-type and T252A cytochrome P450-CAM.

作者信息

Sono Masanori, Perera Roshan, Jin Shengxi, Makris Thomas M, Sligar Stephen G, Bryson Thomas A, Dawson John H

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Arch Biochem Biophys. 2005 Apr 1;436(1):40-9. doi: 10.1016/j.abb.2004.12.026.

Abstract

To probe whether the nature of the substrate can directly influence the spectral properties of oxyferrous cytochrome P450-CAM, the complex has been investigated in the absence and in the presence of the natural substrate (1R)-camphor (camphor) and of several camphor analogs. The oxyferrous complex of T252A P450-CAM, a mutant lacking the hydroxyl group that forms a hydrogen bond to the heme iron-coordinated dioxygen, has also been studied to gauge the influence of this hydrogen bond. UV-visible absorption and magnetic circular dichroism (MCD) spectra of these oxyferrous adducts prepared and stabilized at -40 degrees C in 60% (v/v) ethylene glycol are generally similar, exhibiting absorption bands at approximately 355, approximately 420, approximately 554, and approximately 585 nm (shoulder) and a characteristic MCD trough at approximately 585 nm. The MCD spectrum of camphor-bound oxyferrous P450-CAM is similar to that of the substrate-free oxyferrous enzyme, but the spectrum of the oxyferrous enzyme differs detectably in the presence of substrate analogs. The spectra of the oxyferrous T252A mutant and wild-type enzyme are overall similar except for Soret band position blue shifts by 2-6 nm for the mutant. 5-Methylenylcamphor (epoxidation substrate) appears to have an anomalous binding mode for the mutant compared with that for the wild-type enzyme. The present results indicate that the structures of the camphor analogs can sensitively influence the physical (spectroscopic) properties of the P450 dioxygen complex and could also affect its reactivity. The ability of substrate to modulate the reactivity of P450 intermediates could be a relevant factor in explaining the remarkable diversity of reactions catalyzed by the enzyme.

摘要

为探究底物的性质是否能直接影响亚铁血红素细胞色素P450-CAM的光谱特性,已在不存在和存在天然底物(1R)-樟脑(樟脑)及几种樟脑类似物的情况下对该复合物进行了研究。还研究了T252A P450-CAM的亚铁复合物,该突变体缺乏与血红素铁配位的双氧形成氢键的羟基,以评估这种氢键的影响。这些在-40℃下于60%(v/v)乙二醇中制备并稳定的亚铁加合物的紫外可见吸收光谱和磁圆二色性(MCD)光谱通常相似,在约355、约420、约554和约585nm(肩峰)处有吸收带,在约585nm处有特征性的MCD谷。樟脑结合的亚铁P450-CAM的MCD光谱与无底物的亚铁酶相似,但在存在底物类似物时,亚铁酶的光谱有明显差异。亚铁T252A突变体和野生型酶的光谱总体相似,只是突变体的Soret带位置蓝移了2 - 6nm。与野生型酶相比,5-亚甲基樟脑(环氧化底物)对突变体似乎具有异常的结合模式。目前的结果表明,樟脑类似物的结构可敏感地影响P450双氧复合物的物理(光谱)性质,也可能影响其反应性。底物调节P450中间体反应性的能力可能是解释该酶催化反应显著多样性的一个相关因素。

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