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血红素-亚硝基烷烃配合物与它们的 HNO 类似物的振动性质比较,以及对一氧化氮和路易斯酸的反应性研究。

Vibrational properties of heme-nitrosoalkane complexes in comparison with those of their HNO analogs, and reactivity studies towards nitric oxide and Lewis acids.

机构信息

Department of Chemistry and Department of Biophysics, University of Michigan, Ann Arbor, MI 48109, USA.

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, USA.

出版信息

Dalton Trans. 2024 Aug 20;53(33):13906-13924. doi: 10.1039/d4dt01632g.

Abstract

-Nitroso compounds (RNO, R = alkyl and aryl) are byproducts of drug metabolism and bind to heme proteins, and their heme-RNO adducts are isoelectronic to ferrous nitroxyl (NO/HNO) complexes. Importantly, heme-HNO compounds are key intermediates in the reduction of NO to NO and nitrite to ammonium in the nitrogen cycle. Ferrous heme-RNO complexes act as stable analogs of these species, potentially allowing for the investigation of the vibrational and electronic properties of unstable heme-HNO intermediates. In this paper, a series of six-coordinate ferrous heme-RNO complexes (where R = iPr and Ph) were prepared using the TPP and 3,5-Me-BAFP co-ligands, and tetrahydrofuran, pyridine, and 1-methylimidazole as the axial ligands (bound to RNO). These complexes were characterized using different spectroscopic methods and X-ray crystallography. The complex [Fe(TPP)(THF)(iPrNO)] was further utilized for nuclear resonance vibrational spectroscopy (NRVS), allowing for the detailed assignment of the Fe-N(R)O vibrations of a heme-RNO complex for the first time. The vibrational properties of these species were then correlated with those of their HNO analogs, using DFT calculations. Our studies support previous findings that RNO ligands in ferrous heme complexes do not elicit a significant effect. In addition, the complexes are air-stable, and do not show any reactivity of their RNO ligands towards NO. So although ferrous heme-RNO complexes are suitable structural and electronic models for their HNO analogs, they are unsuitable to model the reactivity of heme-HNO complexes. We further investigated the reaction of our heme-RNO complexes with different Lewis acids. Here, [Fe(TPP)(THF)(iPrNO)] was found to be unreactive towards Lewis acids. In contrast, [Fe(3,5-Me-BAFP)(iPrNO)] is reactive towards all of the Lewis acids investigated here, but in most cases the iron center is simply oxidized, resulting in the loss of the iPrNO ligand. In the case of the Lewis acid B(pin), the reduced product [Fe(3,5-Me-BAFP)(iPrNH)(iPrNO)] was identified by X-ray crystallography.

摘要
  • 亚硝基化合物(RNO,R 为烷基和芳基)是药物代谢的副产物,与血红素蛋白结合,其血红素-RNO 加合物与亚铁亚硝酰基(NO/HNO)复合物等电子。重要的是,血红素-HNO 化合物是氮循环中 NO 还原为 NO 和亚硝酸盐还原为铵的关键中间体。亚铁血红素-RNO 配合物作为这些物种的稳定类似物,可能允许研究不稳定的血红素-HNO 中间体的振动和电子性质。在本文中,使用 TPP 和 3,5-Me-BAFP 共配体以及四氢呋喃、吡啶和 1-甲基咪唑作为轴向配体(与 RNO 结合),制备了一系列六配位亚铁血红素-RNO 配合物(其中 R = iPr 和 Ph)。这些配合物使用不同的光谱方法和 X 射线晶体学进行了表征。进一步将配合物 [Fe(TPP)(THF)(iPrNO)] 用于核共振振动光谱(NRVS),首次详细分配了血红素-RNO 配合物的 Fe-N(R)O 振动。然后使用 DFT 计算将这些物种的振动性质与其 HNO 类似物的振动性质相关联。我们的研究支持先前的发现,即亚铁血红素配合物中的 RNO 配体不会产生显着影响。此外,这些配合物在空气中稳定,并且其 RNO 配体对 NO 没有任何反应性。因此,尽管亚铁血红素-RNO 配合物是其 HNO 类似物的合适结构和电子模型,但它们不适合模拟血红素-HNO 配合物的反应性。我们进一步研究了我们的血红素-RNO 配合物与不同路易斯酸的反应。在这里,发现 [Fe(TPP)(THF)(iPrNO)] 对路易斯酸没有反应性。相比之下,[Fe(3,5-Me-BAFP)(iPrNO)] 对这里研究的所有路易斯酸都有反应性,但在大多数情况下,铁中心只是被氧化,导致 iPrNO 配体丢失。在路易斯酸 B(pin)的情况下,通过 X 射线晶体学鉴定了还原产物 [Fe(3,5-Me-BAFP)(iPrNH)(iPrNO)]。

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