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血红蛋白的血红素-肽模型。2. N-乙酰微过氧化物酶-8:使用分子激子理论的改进版本对高离子强度下形成的π-π二聚体的研究。

Heme-Peptide Models for Hemoproteins. 2. N-Acetylmicroperoxidase-8: Study of the pi-pi Dimers Formed at High Ionic Strength Using a Modified Version of Molecular Exciton Theory.

作者信息

Munro Orde Q., Marques Helder M.

机构信息

Centre for Molecular Design, Department of Chemistry, University of the Witwatersrand, Wits 2050, Johannesburg, South Africa.

出版信息

Inorg Chem. 1996 Jun 19;35(13):3768-3779. doi: 10.1021/ic950285u.

Abstract

AcMP8 is the Cys-14-acetylated water-soluble heme-octapeptide fragment obtained proteolytically from cytochrome c. Two successive dimerization equilibria are observed with increasing ionic strength in aqueous solution at neutral pH (part 1, preceding article). The electronic spectra of the two pi-pi dimers were extracted from the absorption envelopes at 2.01 and 4.02 M ionic strength and resolved by Gaussian analysis. The principal transitions were assigned using a tailored version of molecular exciton theory based on coupling of the main x- and y-polarized transition dipole moments of the interacting heme groups. The spectra of both pi-pi dimers indicate that the y-polarized exciton states are blue-shifted relative to the excited states of the monomer, while the x-polarized exciton states exhibit a red shift. These shifts were correctly predicted by a simple dipole-dipole coupling model. From an analysis of the resultant transition dipole moments to the exciton states with B(x)()(0,0) and B(y)()(0,0) character and the magnitudes of their red and blue exciton shifts, respectively, we have determined the dipole-dipole interaction geometries for both dimers. The principal difference between the interaction geometry in the first dimer and that in the second is a stronger interaction for the y-polarized transition dipoles and somewhat weakened interaction for the x-polarized transition dipoles. From an analysis of available crystallographic data for porphyrin and metalloporphyrin pi-pi dimers (Scheidt, W. R.; Lee, Y. J. Struct. Bonding 1987, 64, 1) and the results of our exciton model, we conclude that the origin of the coordinate system for the Soret transition dipole moments of AcMP8 is not metal-centered. Furthermore, since the true directions of the x- and y-axes of the low-symmetry heme chromophore in AcMP8 are unknown, we have not been able to determine the structures of the pi-pi dimers from a knowledge of their transition dipole-dipole interaction geometries. This study therefore highlights one of the shortfalls of molecular exciton theory.

摘要

AcMP8是通过对细胞色素c进行蛋白水解获得的半胱氨酸-14-乙酰化水溶性血红素八肽片段。在中性pH值的水溶液中,随着离子强度的增加,观察到两个连续的二聚化平衡(第1部分,前文)。在2.01和4.02 M离子强度下,从吸收包络中提取了两个π-π二聚体的电子光谱,并通过高斯分析进行了解析。基于相互作用的血红素基团的主要x和y偏振跃迁偶极矩的耦合,使用分子激子理论的定制版本对主要跃迁进行了归属。两个π-π二聚体的光谱表明,y偏振激子态相对于单体的激发态发生蓝移,而x偏振激子态则表现出红移。这些位移由一个简单的偶极-偶极耦合模型正确预测。通过分别分析具有B(x)(0,0)和B(y)(0,0)特征的激子态的合成跃迁偶极矩以及它们的红移和蓝移幅度,我们确定了两个二聚体的偶极-偶极相互作用几何结构。第一个二聚体和第二个二聚体相互作用几何结构的主要区别在于,y偏振跃迁偶极的相互作用更强,而x偏振跃迁偶极的相互作用有所减弱。通过对卟啉和金属卟啉π-π二聚体的现有晶体学数据(Scheidt, W. R.; Lee, Y. J. Struct. Bonding 1987, 64, 1)以及我们的激子模型结果进行分析,我们得出结论,AcMP8的Soret跃迁偶极矩坐标系的原点不是以金属为中心的。此外,由于AcMP8中低对称性血红素发色团的x轴和y轴的真实方向未知,我们无法根据其跃迁偶极-偶极相互作用几何结构来确定π-π二聚体的结构。因此,这项研究突出了分子激子理论的一个不足之处。

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