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作为肌红蛋白中生色团-蛋白质相互作用探针的光激发三重态。

The photoexcited triplet state as a probe of chromophore-protein interaction in myoglobin.

作者信息

Angiolillo P J, Vanderkooi J M

机构信息

Department of Physics, Mathematics and Computer Science, University of the Sciences in Philadelphia, Pennsylvania 19104-4495, USA.

出版信息

Biophys J. 1998 Sep;75(3):1491-502. doi: 10.1016/S0006-3495(98)74068-8.

Abstract

The photoexcited metastable triplet state of Mg(2+)-mesoporphyrin IX (MgMPIX) or Mg(2+)-protoporphyrin IX (MgPPIX) located in the heme pocket of horse myoglobin (Mb) was investigated by optical and electron paramagnetic resonance (EPR) spectroscopy, and its properties were compared with the model complexes, MgMPIX, MgPPIX, and Mg2+ etioporphyrin I (MgETIOI), in noncoordinating and coordinating organic glasses. Zero-field splitting parameters, line shape, and Jahn-Teller distortion in the temperature range of 3.8-110 K are discussed in terms of porphyrin-protein interactions. The triplet line shapes for MgMPIXMb and MGPPIXMb show no temperature-dependent spectral line shape changes suggestive of Jahn-Teller dynamics, and it is concluded that the energy splitting is >> 150 cm-1, suggesting symmetry breaking from the anisotropy of intermal electric fields of the protein, and consistent with previous predictions (Geissinger et al. 1995. J. Phys. Chem. 99:16527-16529). Both MgMPIXMb and MgPPIXMb demonstrate electron spin polarization at low temperature, and from the polarization pattern it can be concluded that intersystem crossing occurs predominantly into in-plane spin sublevels of the triplet state. The splitting in the Q0.0 absorption band and the temperature dependence and splitting of the photoexcited triplet state of myoglobin in which the iron was replaced by Mg2+ are interpreted in terms of effects produced by electric field asymmetry in the heme pocket.

摘要

利用光学和电子顺磁共振(EPR)光谱研究了位于马肌红蛋白(Mb)血红素口袋中的Mg(2+) - 中卟啉IX(MgMPIX)或Mg(2+) - 原卟啉IX(MgPPIX)的光激发亚稳态三重态,并将其性质与非配位和配位有机玻璃中的模型配合物MgMPIX、MgPPIX和Mg2+ 初卟啉I(MgETIOI)进行了比较。根据卟啉 - 蛋白质相互作用讨论了3.8 - 110 K温度范围内的零场分裂参数、线形和 Jahn - Teller 畸变。MgMPIXMb和MGPPIXMb的三重态线形没有显示出表明 Jahn - Teller 动力学的温度依赖性光谱线形变化,得出的结论是能量分裂>> 150 cm-1,这表明蛋白质内部电场的各向异性导致对称性破坏,与先前的预测一致(Geissinger等人,1995年。《物理化学杂志》99:16527 - 16529)。MgMPIXMb和MgPPIXMb在低温下均表现出电子自旋极化,从极化模式可以得出结论,系间窜越主要发生在三重态的面内自旋子能级。根据血红素口袋中电场不对称产生的效应,解释了Q0.0吸收带中的分裂以及铁被Mg2+取代的肌红蛋白光激发三重态的温度依赖性和分裂。

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