EPR AND ENDOR DETECTION OF COMPOUND-I FROM MICROCOCCUS-LYSODEIKTICUS CATALASE

被引:100
作者
BENECKY, MJ
FREW, JE
SCOWEN, N
JONES, P
HOFFMAN, BM
机构
[1] NORTHWESTERN UNIV,DEPT CHEM,EVANSTON,IL 60208
[2] UNIV NEWCASTLE UPON TYNE,DEPT CHEM,NEWCASTLE TYNE NE1 7RU,TYNE & WEAR,ENGLAND
关键词
D O I
10.1021/bi00095a024
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
We present the first EPR and ENDOR examination of a catalase compound I (Cat I), the one formed by peracetic acid treatment of Micrococcus lysodeikticus catalase. The Cat I rapid-passage EPR signal (g(perpendicular-to)eff = 3.32; g(parallel-to)eff is similar to 2) appears quite different from those reported previously for the compounds I from horseradish peroxidase (HRP I) and chloroperoxidase. Nonetheless, all three signals can be explained by the same model for exchange coupling between an S = 1 oxoferryl [Fe=O]2+ moiety and a porphyrin pi-cation radical (S' = 1/2) (Schulz, C. E., et al. (1979) FEBS Lett. 103, 102-105). The signal for Cat I is unlike those for the two peroxidases in that it reflects a ferromagnetic rather than antiferromagnetic exchange. Preliminary H-1 ENDOR spectra for Cat I appear to differ from the proton (H-1) ENDOR spectra of HRP I; the latter, along with the N-14 ENDOR spectra, indicate that the porphyrin radical in HRP I exhibits a predominantly A2u-like state having large spin densities on porphyrin N and C(beta). The proton ENDOR spectrum of Cat I is insensitive to H/D exchange, which indicates that the [Fe=O]2+ moiety is not protonated. Consideration of the EPR results for a series of compounds I suggests that the sign and magnitude of the exchange parameter (J) is correlated with the nature of the proximal axial ligand.
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页码:11929 / 11933
页数:5
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