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直接 O 介导的 Ni(II)NO 结构模型配合物的氧化反应,该模型配合物模拟了镍酰还原二加氧酶(Ni-ARD)活性部位:表征、模拟生物反应性和酶学意义。

Direct O mediated oxidation of a Ni(II)NO structural model complex for the active site of nickel acireductone dioxygenase (Ni-ARD): characterization, biomimetic reactivity, and enzymatic implications.

机构信息

Department of Chemistry, American University, 4400 Massachusetts Ave NW, Washington, DC, 20016, USA.

Department of Chemistry, St Edward's University, 3001 South Congress Ave, Austin, Texas 78704, USA.

出版信息

Dalton Trans. 2024 Nov 12;53(44):17852-17863. doi: 10.1039/d4dt02538e.

DOI:10.1039/d4dt02538e
PMID:39421893
Abstract

A new biomimetic model complex of the active site of acireductone dioxygenase (ARD) was synthesized and crystallographically characterized (ii1). 1 displays carbon-carbon oxidative cleavage activity in the presence of O towards the substrate 2-hydroxyacetophenone. This reactivity was monitored UV-Visible and NMR spectroscopy. We postulate that the reactivity of 1 with O leads to the formation of a putative Ni(III)-superoxo transient species resulting from the direct activation of O the nickel center during the oxidative reaction. This proposed intermediate and reaction mechanism were studied in detail using DFT calculations. 1 and its substrate bound derivatives display reactivity toward mild outer sphere oxidants, suggesting ease of access to high valent Ni coordination complexes, consistent with our calculations. If confirmed, the direct activation of O at a nickel center could have implications for the mechanism of action of ARD and other nickel-based dioxygenases and their respective non-traditional, enzymatic moonlighting functions, as well as contribute to a general understanding of direct oxidation of nickel(II) coordination complexes by O.

摘要

一种新的活性位点仿生模型复杂的还原酮双加氧酶 (ARD) 被合成并进行了晶体学表征 (ii1)。1 在存在 O 的情况下对底物 2-羟基苯乙酮显示出碳-碳氧化裂解活性。这种反应性通过 UV-可见和 NMR 光谱进行监测。我们假设 1 与 O 的反应导致形成一个假定的 Ni(III)-过氧瞬态物种,这是由于在氧化反应过程中镍中心的直接活化。使用 DFT 计算详细研究了该中间体和反应机制。1 及其与底物结合的衍生物对外界氧化剂具有反应性,这表明很容易进入高价 Ni 配合物,这与我们的计算结果一致。如果得到证实,镍中心的 O 的直接活化可能对 ARD 和其他基于镍的双加氧酶及其各自的非传统、酶性备用功能的作用机制产生影响,并有助于对 O 直接氧化镍(II)配合物的一般理解。

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