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细胞色素P450酶系有多相似?它们的差异能给我们带来什么启示?

How similar are P450s and what can their differences teach us?

作者信息

Graham S E, Peterson J A

机构信息

Department of Biochemistry, University of Texas Southwestern Medical Center at Dallas, 5323 Harry Hines Boulevard, Dallas, Texas, 75235-9038, USA.

出版信息

Arch Biochem Biophys. 1999 Sep 1;369(1):24-9. doi: 10.1006/abbi.1999.1350.

Abstract

Cytochromes P450 form a very large superfamily of proteins which metabolize substrates from steroids to fatty acids to drugs and are found in organisms from protists to mammals. P450s all appear to take on a similar structural fold, yet frequently having less than 20% sequence identity and having vastly different substrates. Within the structural fold there appears to be a highly conserved core, as determined from the comparison of the structures of the six crystallized, soluble P450s. There are also variable regions which by and large appear to be associated with substrate recognition, substrate binding, and redox partner binding. Molecular dynamics simulations of motion in P450cam and P450BM-3 indicate that substrate binding and product release require substantial motion around the "substrate access channel." Additionally, at the 11th International Conference on Cytochrome P450 Biochemistry, Biophysics, and Molecular Biology and briefly here, the first structure of a microsomal eukaryotic P450 will be presented and compared to the already determined structures by Drs. Johnson and McRee. Finally, with a better understanding of the structure/function relationship of P450s, one will be better able to modify P450s to metabolize the substrates of choice or produce needed valuable chemicals.

摘要

细胞色素P450构成了一个非常庞大的蛋白质超家族,其可代谢从类固醇到脂肪酸再到药物等各种底物,并且在从原生生物到哺乳动物的各类生物体中均有发现。细胞色素P450似乎都具有相似的结构折叠,但序列同一性常常低于20%,且底物差异极大。从六种已结晶的可溶性细胞色素P450的结构比较来看,在其结构折叠中似乎存在一个高度保守的核心。此外,还存在一些可变区域,总体上似乎与底物识别、底物结合以及氧化还原伴侣结合相关。对细胞色素P450cam和细胞色素P450BM - 3中运动的分子动力学模拟表明,底物结合和产物释放需要围绕“底物进入通道”进行大量运动。此外,在第11届细胞色素P450生物化学、生物物理学与分子生物学国际会议上以及在此简要提及,将展示一种微粒体真核细胞色素P450的首个结构,并与约翰逊博士和麦克里博士已确定的结构进行比较。最后,随着对细胞色素P450结构/功能关系有了更深入的了解,人们将更有能力对细胞色素P450进行改造,使其代谢所需的底物或生产所需的有价值化学品。

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