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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Models of the cytochromes: Crystal structures and EPR spectral characterization of low-spin bis-imidazole complexes of (OETPP)Fe-III having intermediate ligand plane dihedral angles
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Models of the cytochromes: Crystal structures and EPR spectral characterization of low-spin bis-imidazole complexes of (OETPP)Fe-III having intermediate ligand plane dihedral angles

机译:细胞色素的模型:具有中间配体平面二面角的(OETPP)Fe-III低旋双咪唑配合物的晶体结构和EPR光谱表征

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The preparation, EPR spectra, and crystal structures of octaethyltetraphenylporphyrinatoiron(III) having two imidazole, N-benzylimidazole, and N-methylimidazole axial ligands are reported, [(OETPP)Fe(HLm)2]Cl, [(OETPP)Fe(N-Bzlm)(2)]-Cl, and [(OETPP)Fe(N-Melm)(2)]Cl. Despite large variation in axial ligand size, the unit cell parameters for all complexes are very similar; each structure has the same basic motif, with large voids formed by the extended porphyrin framework ( filled by ordered or disordered axial ligands and disordered solvent), which allows differently sized ligands to fit within the same cell dimensions. Each porphyrin core adopts a saddled conformation with vertical bar Delta C-beta vertical bar = 1.13-1.15 angstrom. The dihedral angles between axial ligand planes, Delta phi, are far from being either ideal parallel or perpendicular: 30.1 degrees, 57.2 degrees for [(OETPP)Fe(Hlm)(2)]Cl (molecules 1 and 2), 56.8 for [(OETPP)Fe(N-Bzlm)(2)]Cl, and 16.0 degrees, 44.6 degrees, 59.6 degrees, and 88.1 degrees for [(OETPP)Fe(N-Melm)(2)]Cl, which has disordered axial ligands. Among the complexes of this study, an axial ligand Delta phi of 56.8 degrees is found to be the largest "parallel" angle (as defined by the observation of a normal rhombic or Type II EPR signal (N-Bzlm, g = 3.08, 2.19, 1.31)), while 57.2 degrees is found to be the smallest "perpendicular" Delta phi (as defined by the observation of a "large g(max)" or Type I EPR signal (Hlm, g(max) = 3.24)). From the results of this study, it is clear that the size of the largest g for Types I and II complexes varies continuously, with no break between the two. While the switch in EPR signal type, from Type II to Type I, appears to be very sharp in this study, this may be somewhat artificial based upon limited numbers of examples and the required saddle distortion of the (OETPP)Fe-III complexes. However, in comparison to several proteins with dihedral angles near 60 degrees and Type II EPR spectra, we may conclude that the switch in EPR signal type occurs near 57 degrees +/- 3-5 degrees.
机译:报道了具有两个咪唑,N-苄基咪唑和N-甲基咪唑轴向配体的八乙基四苯基卟啉铁(III)的制备,EPR光谱和晶体结构,[(OETPP)Fe(HLm)2] Cl,[(OETPP)Fe(N -Bzlm)(2)]-Cl和[(OETPP)Fe(N-Melm)(2)] Cl。尽管轴向配体的大小变化很大,但所有配合物的晶胞参数非常相似。每个结构具有相同的基本基序,并具有延伸的卟啉骨架(由有序或无序的轴向配体和无序的溶剂填充)形成的大空隙,从而允许大小不同的配体适合相同的细胞尺寸。每个卟啉核均采用鞍形构型,其竖线Delta C-beta竖线= 1.13-1.15埃。轴向配体平面之间的二面角Delta phi远非理想的平行或垂直方向:[(OETPP)Fe(Hlm)(2)] Cl(分子1和2)为30.1度,57.2度,[[OETPP] Fe(Hlm)(2)] Cl为56.8。 (OETPP)Fe(N-Bzlm)(2)] Cl,以及[(OETPP)Fe(N-Melm)(2)] Cl的轴向分布为无序的16.0度,44.6度,59.6度和88.1度。在该研究的复合物中,发现56.8度的轴向配体Delta phi是最大的“平行”角(通过观察正常的菱形或II型EPR信号来定义(N-Bzlm,g = 3.08,2.19) (1.31)),而57.2度是最小的“垂直” Delta phi(如观察到的“大g(max)”或I型EPR信号所定义(Hlm,g(max)= 3.24)) 。从这项研究的结果来看,很明显,I型和II型复合物的最大g的大小连续变化,两者之间没有间断。虽然本研究中从II型到I型的EPR信号类型切换非常尖锐,但由于实例数量有限以及(OETPP)Fe-III配合物的鞍形失真,这在某种程度上是人为的。但是,与几种具有二面角接近60度且具有II型EPR光谱的蛋白质相比,我们可以得出结论,EPR信号类型的转换发生在57度+/- 3-5度附近。

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