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细胞色素P450cam在原子分辨率下的催化途径。

The catalytic pathway of cytochrome p450cam at atomic resolution.

作者信息

Schlichting I, Berendzen J, Chu K, Stock A M, Maves S A, Benson D E, Sweet R M, Ringe D, Petsko G A, Sligar S G

机构信息

Max Planck Institute for Molecular Physiology, Department of Physical Biochemistry, Otto Hahn Strasse 11, 44227 Dortmund, Germany.

出版信息

Science. 2000 Mar 3;287(5458):1615-22. doi: 10.1126/science.287.5458.1615.

Abstract

Members of the cytochrome P450 superfamily catalyze the addition of molecular oxygen to nonactivated hydrocarbons at physiological temperature-a reaction that requires high temperature to proceed in the absence of a catalyst. Structures were obtained for three intermediates in the hydroxylation reaction of camphor by P450cam with trapping techniques and cryocrystallography. The structure of the ferrous dioxygen adduct of P450cam was determined with 0.91 angstrom wavelength x-rays; irradiation with 1.5 angstrom x-rays results in breakdown of the dioxygen molecule to an intermediate that would be consistent with an oxyferryl species. The structures show conformational changes in several important residues and reveal a network of bound water molecules that may provide the protons needed for the reaction.

摘要

细胞色素P450超家族的成员在生理温度下催化分子氧加成到未活化的碳氢化合物上——该反应在没有催化剂时需要高温才能进行。利用捕获技术和低温晶体学获得了细胞色素P450cam催化樟脑羟基化反应中三种中间体的结构。细胞色素P450cam的亚铁双氧加合物的结构是用波长为0.91埃的X射线测定的;用波长为1.5埃的X射线照射会导致双氧分子分解成一种与氧铁物种一致的中间体。这些结构显示了几个重要残基的构象变化,并揭示了一个结合水分子网络,该网络可能提供反应所需的质子。

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