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木质素过氧化物酶依赖藜芦醇产生分子氧。

Veratryl alcohol-dependent production of molecular oxygen by lignin peroxidase.

作者信息

Barr D P, Shah M M, Aust S D

机构信息

Biotechnology Center, Utah State University, Logan 84322-4705.

出版信息

J Biol Chem. 1993 Jan 5;268(1):241-4.

PMID:8416932
Abstract

Veratryl alcohol- and H2O2-dependent production of oxygen by lignin peroxidase isozyme H2 (LiPH2) from Phanerochaete chrysosporium was investigated. Veratryl alcohol oxidation by LiPH2 decreased with increasing concentrations of H2O2 while oxygen evolution increased. The absorption spectrum of the LiPH2 in these experiments indicated that it was in the compound II state. We propose that O2 production results from the one electron oxidation of H2O2 by the veratryl alcohol cation radical to yield superoxide, as the addition of superoxide dismutase stimulated oxygen production. It has been reported previously that oxygen is consumed in reaction mixtures containing lignin peroxidase, H2O2, veratryl alcohol, and oxalate (Popp, J. L., Kalyanaraman, B., and Kirk, T.K. (1990) Biochemistry 29, 10475-10480). In the presence of oxalate, we observed oxygen consumption that was dependent on the H2O2 concentration. The ability of other methoxybenzenes to mediate oxygen production appeared to be related to their redox potential. It was concluded that cation radicals can oxidize H2O2 by one electron which results in the production of superoxide and the evolution of molecular oxygen. Thus, the rates of LiPH2-catalyzed O2 consumption or O2 production are dependent on the relative concentrations of H2O2 and oxalate.

摘要

研究了来自黄孢原毛平革菌的木质素过氧化物酶同工酶H2(LiPH2)依赖藜芦醇和H2O2产生氧气的过程。随着H2O2浓度增加,LiPH2催化的藜芦醇氧化作用降低,而氧气释放增加。这些实验中LiPH2的吸收光谱表明它处于化合物II状态。我们提出,氧气产生是由于藜芦醇阳离子自由基对H2O2进行单电子氧化生成超氧化物,因为添加超氧化物歧化酶会刺激氧气产生。此前有报道称,在含有木质素过氧化物酶、H2O2、藜芦醇和草酸盐的反应混合物中会消耗氧气(Popp, J. L., Kalyanaraman, B., and Kirk, T.K. (1990) Biochemistry 29, 10475 - 10480)。在草酸盐存在的情况下,我们观察到氧气消耗依赖于H2O2浓度。其他甲氧基苯介导氧气产生的能力似乎与其氧化还原电位有关。得出的结论是,阳离子自由基可以通过单电子氧化H2O2,这导致超氧化物的产生和分子氧的释放。因此,LiPH2催化的氧气消耗或氧气产生速率取决于H2O2和草酸盐的相对浓度。

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