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在一种预催化酶复合物中,双氧以端基配位的方式与单核铜结合。

Dioxygen binds end-on to mononuclear copper in a precatalytic enzyme complex.

作者信息

Prigge Sean T, Eipper Betty A, Mains Richard E, Amzel L Mario

机构信息

Department of Microbiology and Molecular Immunology, The Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD, USA.

出版信息

Science. 2004 May 7;304(5672):864-7. doi: 10.1126/science.1094583.

Abstract

Copper active sites play a major role in enzymatic activation of dioxygen. We trapped the copper-dioxygen complex in the enzyme peptidylglycine-alphahydroxylating monooxygenase (PHM) by freezing protein crystals that had been soaked with a slow substrate and ascorbate in the presence of oxygen. The x-ray crystal structure of this precatalytic complex, determined to 1.85-angstrom resolution, shows that oxygen binds to one of the coppers in the enzyme with an end-on geometry. Given this structure, it is likely that dioxygen is directly involved in the electron transfer and hydrogen abstraction steps of the PHM reaction. These insights may apply to other copper oxygen-activating enzymes, such as dopamine beta-monooxygenase, and to the design of biomimetic complexes.

摘要

铜活性位点在双氧酶的激活过程中起着主要作用。我们通过冷冻在氧气存在下用缓慢底物和抗坏血酸浸泡过的蛋白质晶体,捕获了肽基甘氨酸α-羟化单加氧酶(PHM)中的铜-双氧复合物。该预催化复合物的X射线晶体结构分辨率达到1.85埃,结果表明氧气以端对端的几何构型与酶中的一个铜原子结合。基于此结构,双氧很可能直接参与了PHM反应的电子转移和氢提取步骤。这些见解可能适用于其他铜激活氧的酶,如多巴胺β-单加氧酶,也适用于仿生复合物的设计。

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