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Nuclear resonance vibrational spectroscopic and computational study of high-valent diiron complexes relevant to enzyme intermediates

机译:与酶中间体有关的高价二铁配合物的核共振振动光谱和计算研究

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摘要

High-valent intermediates of binuclear nonheme iron enzymes are structurally unknown despite their importance for understanding enzyme reactivity. Nuclear resonance vibrational spectroscopy combined with density functional theory calculations has been applied to structurally well-characterized high-valent mono- and di-oxo bridged binuclear Fe model complexes. Low-frequency vibrational modes of these high-valent diiron complexes involving Fe motion have been observed and assigned. These are independent of Fe oxidation state and show a strong dependence on spin state. It is important to note that they are sensitive to the nature of the Fe2 core bridges and provide the basis for interpreting parallel nuclear resonance vibrational spectroscopy data on the high-valent oxo intermediates in the binuclear nonheme iron enzymes.
机译:尽管双核非血红素铁酶对于理解酶反应性很重要,但其高价中间体在结构上尚不清楚。核磁共振振动光谱结合密度泛函理论计算已应用于结构良好表征的高价单价和二氧代桥联双核Fe模型复合物。这些涉及铁运动的高价二价铁络合物的低频振动模式已经观察到并确定。它们与铁的氧化态无关,并显示出对自旋态的强烈依赖性。重要的是要注意它们对Fe2核心桥的性质敏感,并为解释双核非血红素铁酶中高价含氧中间体的平行核共振振动光谱数据提供了基础。

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