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氧化还原效应对超结构铁卟啉双(N-甲基咪唑)配合物的配位几何和血红素构象的影响。光谱研究。

Redox effects on the coordination geometry and heme conformation of bis(N-methylimidazole) complexes of superstructured Fe-porphyrins. A spectroscopic study.

机构信息

Service de Bioénergétique, Biologie Structurale et Mécanismes (SB2SM) et URA CNRS 2096, Institut de Biologie et Technologie de Saclay (iBiTec-S), CEA/Saclay, F-91191 Gif-sur-Yvette Cedex, France.

出版信息

Inorg Chem. 2009 Nov 2;48(21):10084-92. doi: 10.1021/ic9010604.

Abstract

Electronic absorption, electron paramagnetic resonance (EPR), and Soret-excited resonance Raman (RR) spectra are reported for bis(N-alkylimidazole) complexes of various iron(III)-"basket-handle" (Fe(III)BHP(+)) and "picket-fence" (Fe(III)PFP(+)) porphyrins in methylene chloride. The Fe(III)BHP(+) derivatives consist of four cross-trans (CT) and two adjacent-cis (AC) -linked in which the composition and the length of the handles are variable (CT Fe(III)[(C(11)Im)(2)(+)], CT and AC Fe(III)((C(4))(2)phi)(2), CT Fe(III)((C(3))(2)phi)(C(12)), CT and AC Fe(III)((C(3))(2)phi)(2)). The meso-alphaalpha betabeta and meso-alphabeta alphabeta atropisomers of Fe(III)-tetrakis(o-pivalamidophenyl)-porphyrins represents the Fe(III)PFP(+) derivatives (Fe(III)alphaalpha betabeta-T(piv)PP(+) and Fe(III)alphabeta alphabeta-T(piv)PP(+), respectively). The absorption and RR data obtained for these ferric compounds were compared to those previously published for the homologous ferrous complexes (Picaud, T., Le Moigne, C., Loock, B., Momenteau, M. and Desbois, A. J. Am. Chem. Soc. 2003, 125, 11616 and Le Moigne, C., Picaud, T., Boussac, A., Loock, B., Momenteau, M. and Desbois, A. Inorg. Chem. 2003, 42, 6081). The Soret band position of the eight investigated ferric compounds is observed between 417 and 424 nm, indicating that none of the complexes possesses a planar heme. The EPR spectra show that most of the Fe(III)BHP(+) complexes and all the Fe(III)PFP(+) complexes are rhombic B-type hemichromes (g(max) = 2.86-2.96). Notable exceptions concern the bis(N-methylimidazole) complexes of two CT Fe(III)BHP(+). The Fe(III)BHP(+) with the shortest handles (Fe(III)((C(3))(2)phi)(2)) exhibits a g value at 2.80. When the handles are lengthened by two methylene units (Fe(III)((C(3))(2)phi)(2)), the EPR spectrum corresponds to a mixture of two "highly anisotropic low-spin " or "large g(max)" type I EPR signals, a major species at g = 3.17 and a minor species at g = 3.77. All these EPR data were converted in terms of dihedral angle formed by the rings of the axial ligands. The RR spectra of the Fe(III)BHP(+) and Fe(III)PFP(+) complexes exhibited variable frequencies for the structure-sensitive nu(2) and nu(8) lines (1558-1563 cm(-1) and 386-401 cm(-1), respectively). In considering the ability of the different superstructures to stabilize particular out-of-plane distortions, this vibrational information was analyzed in terms of heme structure through changes in core size and Fe-N(pyrrole) bond length, in relation to changes in coordination geometry. The bis(N-methylimidazole) complex of Fe(III)((C(3))(2)phi)(2) was found to be the most distorted with a strongly ruffled tetrapyrrole. Because of a handle asymmetry, the heme conformation of the bis(N-methylimidazole) complex of Fe(III)((C(3))(2)phi)(C(12)) was deduced to be a composition of ruffled and domed structures. The heme structure of the other complexes is a mixture of ruffled and saddled or ruffled and waved conformations. Taking into account our previous data on the ferrous series, this investigation provides information about the reorganization of the heme structure upon iron oxidation. The general trend is a decrease of either the core-size, or the Fe-N(pyrrole) bond length, or both. However, we demonstrated that the heme superstructures precisely control the nature and the extent of the tetrapyrrole reshaping. These results point out similar possible effect in the heme proteins, considering both an analogy between porphyrin superstructures and amino acids forming the heme sites and the diversity of the heme environments in the proteins.

摘要

双(N- 烷基咪唑)配合物的电子吸收、电子顺磁共振(EPR)和 Soret 激发共振拉曼(RR)光谱报告了各种铁(III)-“篮柄”(Fe(III)BHP(+))和“尖桩篱笆”(Fe(III)PFP(+))卟啉的铁(III)BHP(+)衍生物由四个交叉转移(CT)和两个相邻顺式(AC)-连接组成,其中手柄的组成和长度是可变的(CT Fe(III)[(C(11)Im)(2)+],CT 和 AC Fe(III)[((C(4))(2)phi)(2)]+),CT Fe(III)[((C(3))(2)phi)(C(12))]+),CT 和 AC Fe(III)[((C(3))(2)phi)(2)]+))。Fe(III)-四(邻-对-戊基酰胺基苯基)卟啉的 meso-alphaalpha betabeta 和 meso-alphabeta alphabeta 对映异构体代表 Fe(III)PFP(+)衍生物(Fe(III)alphaalpha betabeta-T(piv)PP(+)和 Fe(III)alphabeta alphabeta-T(piv)PP(+),分别)。这些铁配合物的吸收和 RR 数据与先前发表的同源亚铁配合物的吸收和 RR 数据进行了比较(Picaud,T.,Le Moigne,C.,Loock,B.,Momenteau,M.和 Desbois,A. J. Am. Chem. Soc. 2003,125,11616 和 Le Moigne,C.,Picaud,T.,Boussac,A.,Loock,B.,Momenteau,M.和 Desbois,A. Inorg. Chem. 2003,42,6081))。八个研究的铁配合物的 Soret 带位置在 417 和 424nm 之间,表明没有一个配合物具有平面血红素。EPR 谱表明,大多数 Fe(III)BHP(+)配合物和所有 Fe(III)PFP(+)配合物都是菱形 B 型半血(g(max)= 2.86-2.96)。值得注意的例外是两个 CT Fe(III)BHP(+)的双(N-甲基咪唑)配合物。具有最短手柄的 Fe(III)[(C(3))(2)phi)(2)]+)表现出 g 值为 2.80。当手柄通过两个亚甲基单元延长时(Fe(III)[(C(3))(2)phi)(2)]+),EPR 谱对应于两种“高各向异性低自旋”或“大 g(max)”型 I EPR 信号的混合物,主要物种在 g = 3.17,次要物种在 g = 3.77。所有这些 EPR 数据都转换为轴向配体环形成的二面角。Fe(III)BHP(+)和 Fe(III)PFP(+)配合物的 RR 光谱表现出结构敏感的 nu(2)和 nu(8)线(1558-1563cm(-1)和 386-401cm(-1))的可变频率。考虑到不同超结构稳定特定平面外畸变的能力,通过核心大小和 Fe-N(吡咯)键长的变化,根据配位几何形状,对这种振动信息进行了血红素结构的分析。发现 Fe(III)[(C(3))(2)phi)(2)]+)的双(N-甲基咪唑)配合物变形最大,具有强烈的褶皱四吡咯。由于手柄不对称,Fe(III)[(C(3))(2)phi)(C(12))]+)的双(N-甲基咪唑)配合物的血红素构象被推断为褶皱和穹顶结构的组合。其他配合物的血红素结构是褶皱和马鞍或褶皱和波浪构象的混合物。考虑到我们之前关于亚铁系列的数据,这项研究提供了铁氧化时血红素结构重排的信息。总的趋势是要么核心大小减小,要么 Fe-N(吡咯)键长减小,要么两者都减小。然而,我们证明了血红素超结构精确控制四吡咯重塑的性质和程度。这些结果表明,在血红素蛋白中可能存在类似的可能影响,考虑到卟啉超结构与形成血红素部位的氨基酸之间的类似性以及蛋白质中血红素环境的多样性。

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