Molecular mechanism of the electron transfer reaction in cytochrome P450cam-putidaredoxin:: Roles of glutamine 360 at the heme proximal site

被引:23
作者
Tosha, T
Yoshioka, S
Hori, H
Takahashi, S
Ishimori, K [1 ]
Morishima, I
机构
[1] Kyoto Univ, Dept Mol Engn, Grad Sch Engn, Kyoto 6068501, Japan
[2] Osaka Univ, Div Biophys Engn, Grad Sch Engn Sci, Osaka 5608531, Japan
关键词
D O I
10.1021/bi0261037
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We characterized electron transfer (ET) from putidaredoxin (Pdx) to the mutants of cytochrome P450(cam) (P450(cam)), in which one of the residues located on the putative binding site to Pdx, Gln360, was replaced with Glu, Lys, and Len. The kinetic analysis of the ET reactions from reduced Pdx to ferric P450(cam) (the first ET) and to ferrous oxygenated P450(cam) (the second ET) showed the dissociation constants (K) that were moderately perturbed for the Lys and Len mutants and the distinctly increased for the Glu mutant. Although the alterations in K-m indicate that Gln360 is located at the Pdx binding site, the effects of the Gln360 mutations (0.66-20-fold of that of wild type) are smaller than those of the Arg112 mutants (25-2500-fold of that of wild type) [Unno, M., et al. (1996) J. Biol. Chem. 271, 17869-17874], allowing us to conclude that Gln360 much less contributes to the complexation with Pdx than Arg112. The first ET rate (35 s(-1) for wild-type P450(cam)) was substantially reduced in the Ght mutant (5.4 s(-1)), while less perturbation was observed for the Lys (53 s(-1)) and Leu (23 s(-1)) mutants. In the second ET reaction, the retarded ET rate was detected only in the Ght mutant but not in the Lys and Len mutants. These results showed the smaller mutational effects of Gln360 on the ET reactions than those of the Arg112 mutants. In contrast to the moderate perturbations in the kinetic parameters, the mutations at Gln360 significantly affected both the standard enthalpy and entropy of the redox reaction of P450(cam), which cause the negative shift of the redox potentials for the Fe3+/Fe2+ couple by 20-70 mV. Since the arnide group of Gln360 is located near the carbonyl oxygen of the amide group of the axial cysteine, it is plausible that the mutation at Gln360 perturbs the electronic interaction of the axial ligand with heme iron, resulting in the reduction of the redox potentials. We, therefore, conclude that Gln360 primarily regulates the ET reaction of P450cam by modulating the redox potential of the heme iron and not by the specific interaction with Pdx or the formation of the ET pathway that are proposed as the regulation mechanism of Arg 112.
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页码:13883 / 13893
页数:11
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