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光合细菌中铁细胞色素c'的电子顺磁共振研究

Electron paramagnetic resonance studies of ferric cytochrome c' from photosynthetic bacteria.

作者信息

Fujii S, Yoshimura T, Kamada H, Yamaguchi K, Suzuki S, Shidara S, Takakuwa S

机构信息

Institute for Life Support Technology, Yamagata Technopolis Foundation, Japan.

出版信息

Biochim Biophys Acta. 1995 Sep 6;1251(2):161-9. doi: 10.1016/0167-4838(95)00092-9.

Abstract

Electronic ground nature of ferric cytochromes c' isolated from five photosynthetic bacteria. Chromatium vinosum ATCC 17899, Rhodobacter capsulatus ATCC 11166, Rhodopseudomonas palustris ATCC 17001, Rhodospirillum molischianum ATCC 14031, and Rhodospirillum rubrum ATCC 11170 has been investigated by electron paramagnetic resonance (EPR) spectroscopy. EPR spectra indicate that the electronic ground state of five ferric cytochromes c' is a quantum mechanical admixed-spin state of a high spin (S = 5/2) and an intermediate spin (S = 3/2) at pH 7.2 and is high-spin state at pH 11.0. At physiological pH, however, the content of an intermediate spin state differs with the bacterial source of the protein: approximately 50%, Chromatium vinosum; approximately 40%, Rhodobacter capsulatus and Rhodopseudomonas palustris; approximately 10%, Rhodospirillum molischianum and Rhodospirillum rubrum. Computer simulation of the spectra supports this diversity of the contribution of an intermediate spin state. Model studies of the ferric porphyrin complexes suggest that the correlation between content of an intermediate spin state and heme iron displacement from the mean heme plane. Therefore, the variation of the content of an intermediate spin state observed in the present study reflects the subtle difference in the degree of heme iron displacement among the proteins.

摘要

从五种光合细菌中分离出的铁细胞色素c'的电子基态性质。利用电子顺磁共振(EPR)光谱对嗜硫红假单胞菌ATCC 17899、荚膜红细菌ATCC 11166、沼泽红假单胞菌ATCC 17001、莫氏红螺菌ATCC 14031和深红红螺菌ATCC 11170进行了研究。EPR光谱表明,在pH 7.2时,五种铁细胞色素c'的电子基态是高自旋(S = 5/2)和中间自旋(S = 3/2)的量子力学混合自旋态,在pH 11.0时是高自旋态。然而,在生理pH值下,中间自旋态的含量因蛋白质的细菌来源而异:嗜硫红假单胞菌约为50%;荚膜红细菌和沼泽红假单胞菌约为40%;莫氏红螺菌和深红红螺菌约为10%。光谱的计算机模拟支持了中间自旋态贡献的这种多样性。铁卟啉配合物的模型研究表明,中间自旋态的含量与血红素铁偏离平均血红素平面之间存在相关性。因此,本研究中观察到的中间自旋态含量的变化反映了这些蛋白质中血红素铁位移程度的细微差异。

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