Structure analysis and characterization of the cytochrome c-554 from thermophilic green sulfur photosynthetic bacterium Chlorobaculum tepidum

被引:0
|
作者
Long-Jiang Yu
Masaki Unno
Yukihiro Kimura
Kasumi Yanagimoto
Hirozo Oh-oka
Zheng-Yu Wang-Otomo
机构
[1] Ibaraki University,Faculty of Science
[2] Ibaraki University,Frontier Research Center for Applied Atomic Science
[3] Ibaraki University,Graduate School of Science and Engineering
[4] Kobe University,Organization of Advanced Science and Technology
[5] Osaka University,Department of Biological Sciences, Graduate School of Science
来源
Photosynthesis Research | 2013年 / 118卷
关键词
Green sulfur bacteria; Electron transfer; Cytochrome ; Axial ligands;
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中图分类号
学科分类号
摘要
The cytochrome (Cyt) c-554 in thermophilic green photosynthetic bacterium Chlorobaculumtepidum serves as an intermediate electron carrier, transferring electrons to the membrane-bound Cyt cz from various enzymes involved in the oxidations of sulfide, thiosulfate, and sulfite compounds. Spectroscopically, this protein exhibits an asymmetric α-absorption band for the reduced form and particularly large paramagnetic 1H NMR shifts for the heme methyl groups with an unusual shift pattern in the oxidized form. The crystal structure of the Cyt c-554 has been determined at high resolution. The overall fold consists of four α-helices and is characterized by a remarkably long and flexible loop between the α3 and α4 helices. The axial ligand methionine has S-chirality at the sulfur atom with its CεH3 group pointing toward the heme pyrrole ring I. This configuration corresponds to an orientation of the lone-pair orbital of the sulfur atom directed at the pyrrole ring II and explains the lowest-field 1H NMR shift arising from the 181 heme methyl protons. Differing from most other class I Cyts c, no hydrogen bond was formed between the methionine sulfur atom and polypeptide chain. Lack of this hydrogen bond may account for the observed large paramagnetic 1H NMR shifts of the heme methyl protons. The surface-exposed heme pyrrole ring II edge is in a relatively hydrophobic environment surrounded by several electronically neutral residues. This portion is considered as an electron transfer gateway. The structure of the Cyt c-554 is compared with those of other Cyts c, and possible interactions of this protein with its electron transport partners are discussed.
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页码:249 / 258
页数:9
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