首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Alkylamine-ligated H93G myoglobin cavity mutant: A model system for endogenous lysine and terminal amine ligation in heme proteins such as nitrite reductase and cytochrome f
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Alkylamine-ligated H93G myoglobin cavity mutant: A model system for endogenous lysine and terminal amine ligation in heme proteins such as nitrite reductase and cytochrome f

机译:烷基胺连接的H93G肌红蛋白腔突变体:血红蛋白(如亚硝酸还原酶和细胞色素f)内源赖氨酸和末端胺连接的模型系统

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摘要

His93Gly sperm whale myoglobin (H93G Mb) has the proximal histidine ligand removed to create a cavity for exogenous ligand binding, providing a remarkably versatile template for the preparation of model heme complexes. The investigation of model heme adducts is an important way to probe the relationship between coordination structure and catalytic function in heme enzymes. In this study, we have successfully generated and spectroscopically characterized the H93G Mb cavity mutant ligated with less common alkylamine ligands (models for Lys or the amine group of N-terminal amino acids) in numerous heme iron states. All complexes have been characterized by electronic absorption and magnetic circular dichroism spectroscopy in comparison with data for parallel imidazole-ligated H93G heme iron moieties. This is the first systematic spectral study of models for alkylamine- or terminal amine-ligated heme centers in proteins. High-spin mono- and low-spin bis-amine-ligated ferrous and ferric H93G Mb adducts have been prepared together with mixed-ligand ferric heme complexes with alkylamine trans to nitrite or imidazole as heme coordination models for cytochrome c nitrite reductase or cytochrome f, respectively. Six-coordinate ferrous H93G Mb derivatives with CO, NO, and O _2 trans to the alkylamine have also been successfully formed, the latter for the first time. Finally, a novel high-valent ferryl species has been generated. The data in this study represent the first thorough investigation of the spectroscopic properties of alkylamine-ligated heme iron systems as models for naturally occurring heme proteins ligated by Lys or terminal amines.
机译:His93Gly抹香鲸肌红蛋白(H93G Mb)去除了近端的组氨酸配体,从而形成了一个外源性配体结合的腔,为制备模型血红素复合物提供了非常多用途的模板。对模型血红素加合物的研究是探讨血红素酶的配位结构与催化功能之间关系的重要途径。在这项研究中,我们成功地产生了H93G Mb腔突变体并对其进行了光谱表征,该突变体与在许多血红素铁态中较少见的烷基胺配体(Lys的模型或N末端氨基酸的胺基)连接。与平行的咪唑连接的H93G血红素铁基团的数据相比,所有络合物的特征均在于电子吸收和电磁圆二色性。这是蛋白质中烷基胺或末端胺连接的血红素中心模型的首次系统光谱研究。已制备了高旋转单胺和低旋转双胺连接的亚铁和三价铁H93G Mb加合物,以及混合配体铁血红素配合物与烷基胺的亚硝酸盐或咪唑混合物,作为细胞色素c亚硝酸盐还原酶或细胞色素f的血红素配位模型, 分别。还成功形成了带有CO,NO和O _2烷基胺的六配位亚铁H93G Mb衍生物,后者是首次。最后,已经产生了一种新型的高价的小环物种。这项研究中的数据代表了对烷基胺连接的血红素铁系统作为由Lys或末端胺连接的天然血红素蛋白模型的光谱特性的首次彻底研究。

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