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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Insight into the preferential N-binding versus O-binding of nitrosoarenes to ferrous and ferric heme centers
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Insight into the preferential N-binding versus O-binding of nitrosoarenes to ferrous and ferric heme centers

机译:深入了解亚硝基甲苯的优选N结合与亚硝基血管和血红素中心的结合

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Nitrosoarenes (ArNOs) are toxic metabolic intermediates that bind to heme proteins to inhibit their functions. Although much of their biological functions involve coordination to the Fe centers of hemes, the factors that determine N-binding or O-binding of these ArNOs have not been determined. We utilize X-ray crystallography and density functional theory (DFT) analyses of new representative ferrous and ferric ArNO compounds to provide the first theoretical insight into preferential N-binding versus O-binding of ArNOs to hemes. Our X-ray structural results favored N-binding of ArNO to ferrous heme centers, and O-binding to ferric hemes. Results of the DFT calculations rationalize this preferential binding on the basis of the energies of associated spin-states, and reveal that the dominant stabilization forces in the observed ferrous N-coordination and ferric O-coordination are dp-pp* and ds-pp*, respectively. Our results provide, for the first time, an explanation why in situ oxidation of the ferrous-ArNO compound to its ferric state results in the observed subsequent dissociation of the ligand.
机译:亚硝基鸟嘌呤(ArNOs)是有毒的代谢中间产物,与血红素蛋白结合以抑制其功能。尽管它们的许多生物学功能涉及与血红素铁中心的配位,但决定这些ArNOs的N-结合或O-结合的因素尚未确定。我们利用X射线晶体学和密度泛函理论(DFT)分析了新的具有代表性的亚铁和铁ArNO化合物,首次从理论上洞察了ArNOs与血红素的优先N结合与O结合。我们的X射线结构结果支持ArNO与亚铁血红素中心的N-结合,以及与亚铁血红素中心的O-结合。DFT计算结果根据相关自旋态的能量合理化了这种优先结合,并揭示了观察到的亚铁N配位和铁O配位中的主要稳定力分别为dp-pp*和ds-pp*。我们的结果首次解释了为什么亚铁ArNO化合物原位氧化到其铁状态会导致随后观察到的配体离解。

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