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轴向甲硫氨酸配位对细胞色素c血红素电子结构面内不对称性的影响。

Effects of axial methionine coordination on the in-plane asymmetry of the heme electronic structure of cytochrome c.

作者信息

Tachiiri Naoki, Hemmi Hikaru, Takayama Shin-Ichi Joseph, Mita Hajime, Hasegawa Jun, Sambongi Yoshihiro, Yamamoto Yasuhiko

机构信息

Department of Chemistry, University of Tsukuba, 305-8571 Tsukuba, Japan.

出版信息

J Biol Inorg Chem. 2004 Sep;9(6):733-42. doi: 10.1007/s00775-004-0569-5. Epub 2004 Jul 3.

Abstract

The paramagnetic susceptibility ( chi) tensors of the oxidized forms of thermophile Hydrogenobacter thermophilus cytochrome c(552) (Ht cyt c(552)) and a quintuple mutant (F7A/V13 M/F34Y/E43Y/V78I; qm) of mesophile Pseudomonas aeruginosa cytochrome c(551) (Pa cyt c(551)) have been determined on the basis of the redox-dependent (1)H NMR shift changes of the main-chain NH and C(alpha)H proton resonances of non-coordinated amino acid residues and the NMR structures of the reduced forms of the corresponding proteins (J. Hasegawa, T. Yoshida, T. Yamazaki, Y. Sambongi, Y. Yu, Y. Igarashi, T. Kodama, K. Yamazaki, Y. Kyogoku, Y. Kobayashi (1998) Biochemistry 37:9641-9649; J. Hasegawa, S. Uchiyama, Y. Tanimoto, M. Mizutani, Y. Kobayashi, Y. Sambongi,Y. Igarashi (2000) J Biol Chem 275:37824-37828). From the chi tensors determined, we obtained the contact shifts for heme methyl proton resonances, which provided the heme electronic structures of the oxidized forms of Ht cyt c(552) and qm. We also characterized the heme electronic structure of the cyanide adducts of the proteins, where the axial Met was replaced by an exogenous cyanide ion, through the analysis of (1)H NMR spectra. The results indicated that the heme electronic structures of both the proteins in their oxidized forms with axial His and Met coordination are largely different to each other, while those in their cyanide adducts are similar to each other. These results demonstrated that the orientation of the axial Met sulfur lone pair, with respect to heme, predominantly contributes to the spin delocalization into the porphyrin-pi system of heme in the oxidized proteins with axial His and Met coordination.

摘要

嗜热栖热菌细胞色素c(552)(Ht cyt c(552))氧化形式和顺温性铜绿假单胞菌细胞色素c(551)(Pa cyt c(551))的五重突变体(F7A/V13M/F34Y/E43Y/V78I;qm)的顺磁磁化率(χ)张量,已根据非配位氨基酸残基主链NH和CαH质子共振的氧化还原依赖性¹H NMR位移变化以及相应蛋白质还原形式的NMR结构确定(J. Hasegawa、T. Yoshida、T. Yamazaki、Y. Sambongi、Y. Yu、Y. Igarashi、T. Kodama、K. Yamazaki、Y. Kyogoku、Y. Kobayashi(1998年)《生物化学》37:9641 - 9649;J. Hasegawa、S. Uchiyama、Y. Tanimoto、M. Mizutani、Y. Kobayashi、Y. Sambongi、Y. Igarashi(2000年)《生物化学杂志》275:37824 - 37828)。根据所确定的χ张量,我们获得了血红素甲基质子共振的接触位移,这提供了Ht cyt c(552)和qm氧化形式的血红素电子结构。我们还通过¹H NMR光谱分析,对蛋白质的氰化物加合物的血红素电子结构进行了表征,其中轴向甲硫氨酸被外源氰离子取代。结果表明,具有轴向组氨酸和甲硫氨酸配位的两种蛋白质氧化形式的血红素电子结构彼此有很大差异,而它们的氰化物加合物的血红素电子结构彼此相似。这些结果表明,在具有轴向组氨酸和甲硫氨酸配位的氧化蛋白质中,轴向甲硫氨酸硫孤对相对于血红素的取向主要有助于自旋离域到血红素的卟啉-π体系中。

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