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首页> 外文期刊>Angewandte Chemie >Quantum Refinement Does Not Support Dinuclear Copper Sites in Crystal Structures of Particulate Methane Monooxygenase
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Quantum Refinement Does Not Support Dinuclear Copper Sites in Crystal Structures of Particulate Methane Monooxygenase

机译:量子细化不支持颗粒状甲烷单氧化酶的晶体结构中的金核铜位点

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摘要

Particulate methane monooxygenase (pMMO) is one of the few enzymes that can activate methane. The metal content of this enzyme has been highly controversial, with suggestions of a dinuclear Fe site or mono-, di-, or trinuclear Cu sites. Crystal structures have shown a mono- or dinuclear Cu site, but the resolution was low and the geometry of the dinuclear site unusual. We have employed quantum refinement (crystallographic refinement enhanced with quantum-mechanical calculations) to improve the structure of the active site. We compared a number of different mono- and dinuclear geometries, in some cases enhanced with more protein ligands or one or two water molecules, to determine which structure fits two sets of crystallographic raw data best. In all cases, the best results were obtained with mononuclear Cu sites, occasionally with an extra water molecule. Thus, we conclude that there is no crystallographic support for a dinuclear Cu site in pMMO.
机译:颗粒状甲烷单氧基酶(PMMO)是可激活甲烷的少数酶之一。 该酶的金属含量具有高度争议的争议性,具有二核Fe位点或单核,二 - 或三核Cu位点的建议。 晶体结构显示了单颗粒或铁核酸核景,但分辨率低,二核位点的几何形状不寻常。 我们采用量子细化(用量子机械计算增强了晶体细化)以改善活性位点的结构。 我们比较了许多不同的单核和核几何形状,在某些情况下,用更多的蛋白质配体或一个或两个水分子增强,以确定哪种结构适合两组晶体原料数据。 在所有情况下,用单核Cu位点获得最佳结果,偶尔将含有额外的水分子。 因此,我们得出结论,在PMMO中没有对硫核Cu位点的结晶支持。

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