CO与低自旋[Fe(II)(Por)L2]复合物结合的研究:有助于理解CO与血红蛋白和肌红蛋白的结合

IF 2.7 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY JBIC Journal of Biological Inorganic Chemistry Pub Date : 2022-12-07 DOI:10.1007/s00775-022-01969-w
Jack Silver, Golzar al-Jaff, Jehad A. Taies, Michael T. Wilson, Daniel den Engelsen, George R. Fern, Terry G. Ireland
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引用次数: 1

摘要

可见和M?[Fe(II)(Por)L2]和[Fe(II)(Por)L(CO)]配合物的斯堡尔光谱(其中Por?=?)原卟啉IX (PPIX)或四(对巯基)卟啉(TPPS)和L?=?脂肪族或芳香族含氮碱)的报道和讨论。结果与先前报道的[Fe(II)(Por)L(CO)]配合物(其中Por?=?PPIX、TPPS、PMXPP、TPP、OMTBP、OEP;L = ?一种含氮芳香配体)和HbCO (Hb =血红蛋白)和MyCO (MyCO =肌红蛋白)。一种从M?通过绘制相同配体的[Fe(II)(Por)L2]配合物与[Fe(II)(Por)L(CO)]配合物的配合物的参数,得到了一系列的趋势线,这些趋势线表明卟啉的性质和含氮配体的性质都有很大的依赖性。芳族氮配体与脂肪族氮配体的变化趋势线不同,表明随着L配体的变化,卟啉可以给Fe(II)阳离子提供不同数量的电荷,从而表现出电子吸收特性。从图中可以看出,与本文研究的模型复合物相比,血红蛋白和肌红蛋白都能很强地结合一氧化碳。使用报告的结构和M?[Fe(II)(Por)L2]和[Fe(II)(Por)L(CO)]配合物的ssbauer数据,证明了绘制M?ssbauer参数与Fe(II)阳离子周围的一些键长有关。对结果趋势线的解释支持并促进了我们的发现的扩展,从而进一步理解CO血红蛋白和CO肌红蛋白的键合几何。图形抽象
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Studies on the binding of CO to low-spin [Fe(II)(Por)L2] complexes: an aid to understanding the binding of CO to haemoglobin and myoglobin

The visible and M?ssbauer spectra of [Fe(II)(Por)L2] and [Fe(II)(Por)L(CO)] complexes (where Por?=?protoporphyrin IX (PPIX) or tetra(p-sulfophenyl)porphyrin (TPPS) and L?=?an aliphatic or aromatic nitrogenous base) are reported and discussed. The results are compared to those of previously reported [Fe(II)(Por)L(CO)] complexes (where Por?=?PPIX, TPPS, PMXPP, TPP, OMTBP and OEP; L?=?a nitrogenous aromatic ligand) and HbCO (where Hb?=?haemoglobin) and MyCO (where My?=?myoglobin). A new approach, to extracting information from the M?ssbauer parameters has been developed by plotting those of the [Fe(II)(Por)L2] complexes against those of [Fe(II)(Por)L(CO)] complexes for the same ligands, has yielded a series of trend lines that show a significant dependence on both the nature of the porphyrin and also of the nitrogenous ligand. Different trend lines were found for aromatic nitrogenous ligands to aliphatic nitrogenous ligands showing that the porphyrins could donate different amounts of charge to the Fe(II) cations as the L ligand changed, and hence, they display electron sink properties. From the plots, it was shown that haemoglobin and myoglobin both bind CO very strongly compared to the model complexes studied herein. Using the reported structural and M?ssbauer data for the [Fe(II)(Por)L2] and [Fe(II)(Por)L(CO)] complexes, it proved possible and instructive to plot the M?ssbauer parameters against a number of the bond lengths around the Fe(II) cations. The interpretation of the resulting trend lines both supported and facilitated the extension of our findings enabling further understanding of the geometry of the bonding in CO haemoglobin and CO myoglobin.

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来源期刊
JBIC Journal of Biological Inorganic Chemistry
JBIC Journal of Biological Inorganic Chemistry 化学-生化与分子生物学
CiteScore
5.90
自引率
3.30%
发文量
49
审稿时长
3 months
期刊介绍: Biological inorganic chemistry is a growing field of science that embraces the principles of biology and inorganic chemistry and impacts other fields ranging from medicine to the environment. JBIC (Journal of Biological Inorganic Chemistry) seeks to promote this field internationally. The Journal is primarily concerned with advances in understanding the role of metal ions within a biological matrix—be it a protein, DNA/RNA, or a cell, as well as appropriate model studies. Manuscripts describing high-quality original research on the above topics in English are invited for submission to this Journal. The Journal publishes original articles, minireviews, and commentaries on debated issues.
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