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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >~(19)F NMR study of protein-induced rhombic perturbations on the electronic structure of the active site of myoglobin
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~(19)F NMR study of protein-induced rhombic perturbations on the electronic structure of the active site of myoglobin

机译:蛋白质诱发的菱形微扰对肌红蛋白活性位点电子结构的〜(19)F NMR研究

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摘要

A novel C_2-symmetric ring-fluorinated hemin, 13,17-bis(2-carboxyethyl)-2,8,12,18-tetramethyl-3,7-difluoroporphyrinatoiron(III), has been synthesized and was incorporated into sperm whale apomyoglobin to investigate protein-induced rhombic perturbations on the electronic structure of the active site of myoglobin (Mb) using ~(19)F NMR spectroscopy. NMR signals for ~(19)F atoms introduced as substituents on the present heme in ferrous low-spin and high-spin and ferric low-spin complexes have been observed and their shifts sharply reflect not only the electronic nature of the heme iron, but also in-plane asymmetry of the heme electronic structure. The two-fold symmetric electronic structure of the ring-fluorinated hemin is clearly manifested in the ~(19)F and ~1H NMR spectra of its dicyano complex. The chemical equivalence of the two fluorine atoms of the heme is removed in the active site of myoglobin and the splitting of the two ~(19)F NMR signals provides a quantitative probe for characterizing the rhombic perturbation of the heme electronic structure induced by the heme-protein interaction. The in-plane asymmetry of heme electronic structures in carbonmonoxy and deoxy Mbs have been analyzed for the first time on the basis of the shift difference between the two ~(19)F NMR signals of the heme and is interpreted in terms of iron-ligand binding and/or the orbital ground state of the heme. A potential utility of ~(19)F NMR, combined with the use of a symmetric fluorinated hemin, in characterizing the heme electronic structure of myoglobin in a variety of iron oxidation, spin, and ligation states, is presented.
机译:合成了一种新型的C_2对称环氟化血红素,13,17-双(2-羧乙基)-2,8,12,18-四甲基-3,7-二氟卟啉铁(III),并将其掺入抹香鲸脂蛋白中使用〜(19)F NMR光谱研究蛋白质诱导的肌红蛋白(Mb)活性位点电子结构上的菱形摄动。已观察到在亚铁低旋和高旋及低旋铁络合物中作为当前血红素的取代基引入的〜(19)F原子的NMR信号,其位移明显不仅反映了血红素铁的电子性质,而且血红素电子结构的面内不对称性。在其双氰基配合物的〜(19)F和〜1H NMR光谱中清楚地表明了环氟化血红素的两对称电子结构。血红素的两个氟原子的化学当量在肌红蛋白的活性位点被去除,两个〜(19)F NMR信号的分裂提供了定量探针,用于表征血红素引起的血红素电子结构的菱形扰动-蛋白质相互作用。首次根据血红素的两个〜(19)F NMR信号之间的位移差分析了碳氧和脱氧Mb中血红素电子结构的面内不对称性,并用铁配体来解释血红素的结合和/或轨道基态。提出了〜(19)F NMR与对称氟化血红素结合使用的潜在效用,用于表征各种铁氧化,自旋和连接状态下的肌红蛋白的血红素电子结构。

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