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细胞色素 P450 反应中间体的光谱特征。

Spectroscopic features of cytochrome P450 reaction intermediates.

机构信息

Department of Biochemistry, School of Molecular and Cellular Biology, University of Illinois, Urbana, IL 61801, USA.

出版信息

Arch Biochem Biophys. 2011 Mar 1;507(1):26-35. doi: 10.1016/j.abb.2010.12.008. Epub 2010 Dec 16.

Abstract

Cytochromes P450 constitute a broad class of heme monooxygenase enzymes with more than 11,500 isozymes which have been identified in organisms from all biological kingdoms [1]. These enzymes are responsible for catalyzing dozens chemical oxidative transformations such as hydroxylation, epoxidation, N-demethylation, etc., with very broad range of substrates [2,3]. Historically these enzymes received their name from 'pigment 450' due to the unusual position of the Soret band in UV-vis absorption spectra of the reduced CO-saturated state [4,5]. Despite detailed biochemical characterization of many isozymes, as well as later discoveries of other 'P450-like heme enzymes' such as nitric oxide synthase and chloroperoxidase, the phenomenological term 'cytochrome P450' is still commonly used as indicating an essential spectroscopic feature of the functionally active protein which is now known to be due to the presence of a thiolate ligand to the heme iron [6]. Heme proteins with an imidazole ligand such as myoglobin and hemoglobin as well as an inactive form of P450 are characterized by Soret maxima at 420nm [7]. This historical perspective highlights the importance of spectroscopic methods for biochemical studies in general, and especially for heme enzymes, where the presence of the heme iron and porphyrin macrocycle provides rich variety of specific spectroscopic markers available for monitoring chemical transformations and transitions between active intermediates of catalytic cycle.

摘要

细胞色素 P450 构成了一类广泛的血红素单加氧酶,在所有生物王国的生物中已经鉴定出超过 11500 种同工酶[1]。这些酶负责催化数十种化学氧化转化,如羟化、环氧化、N-脱甲基化等,具有非常广泛的底物范围[2,3]。历史上,这些酶因其还原态 CO 饱和状态下的紫外可见吸收光谱中 Soret 带的异常位置而被命名为“色素 450”[4,5]。尽管对许多同工酶进行了详细的生化特征分析,以及后来发现了其他“P450 样血红素酶”,如一氧化氮合酶和氯过氧化物酶,但“细胞色素 P450”这一术语仍然被广泛使用,以表示功能活性蛋白的一个基本光谱特征,现在已知这是由于硫醇配体与血红素铁的存在[6]。具有咪唑配体的血红素蛋白,如肌红蛋白和血红蛋白,以及 P450 的无活性形式,其 Soret 最大值在 420nm[7]。这一历史视角强调了光谱方法在一般生化研究中的重要性,特别是在血红素酶中,血红素铁和卟啉大环的存在提供了丰富的特定光谱标记,可用于监测化学转化和催化循环中活性中间体之间的转变。

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