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红素铁蛋白的NADH过氧化物酶活性。

NADH peroxidase activity of rubrerythrin.

作者信息

Coulter E D, Shenvi N V, Kurtz D M

机构信息

Department of Chemistry, Center for Metalloenzyme Studies, University of Georgia, Athens 30602, USA.

出版信息

Biochem Biophys Res Commun. 1999 Feb 16;255(2):317-23. doi: 10.1006/bbrc.1999.0197.

Abstract

P. S. Alban et al. (J. Appl. Microbiol. (1998) 85, 875-882) reported that a mutant H2O2-resistant strain of Spirullum (S.) volutans showed constitutive overexpression of a protein whose amino acid sequence and molecular weight closely resembled that of a subunit of rubrerythrin, a non-heme iron protein with no known function. They also reported that the mutant strain, but not the wild-type, showed NADH peroxidase activity. Here we demonstrate that rubrerythrin and nigerythrin from Desulfovibrio vulgaris and rubrerythrin from Clostridium perfringens show NADH peroxidase activities in an in vitro system containing NADH, hydrogen peroxide, and a bacterial NADH oxidoreductase. The peroxidase specific activities of the rubrerythrins with the "classical" heme peroxidase substrate, o-dianisidine, are many orders of magnitude lower than that of horseradish peroxidase. These results are consistent with the phenotype of the H2O2-resistant strain of S. volutans. The reaction of reduced (i.e., all-ferrous) rubrerythrin with excess O2 takes several minutes, whereas the anaerobic reaction of reduced rubrerythrin with hydrogen peroxide is on the millisecond time scale and results in full oxidation of all iron centers to their ferric states. Rubrerythrins could, thus, function as the terminal components of NADH peroxidases in air-sensitive bacteria and archaea.

摘要

P. S. 阿尔班等人(《应用微生物学杂志》(1998年)85卷,875 - 882页)报道,一种抗H₂O₂的螺旋菌(S.)volutans突变株显示出一种蛋白质的组成型过表达,该蛋白质的氨基酸序列和分子量与rubrerythrin(一种无已知功能的非血红素铁蛋白)的一个亚基非常相似。他们还报道,该突变株而非野生型显示出NADH过氧化物酶活性。在此我们证明,来自脱硫弧菌的rubrerythrin和nigerythrin以及来自产气荚膜梭菌的rubrerythrin在含有NADH、过氧化氢和一种细菌NADH氧化还原酶的体外系统中显示出NADH过氧化物酶活性。rubrerythrins与“经典”血红素过氧化物酶底物邻联茴香胺的过氧化物酶比活性比辣根过氧化物酶低许多个数量级。这些结果与volutans的抗H₂O₂菌株的表型一致。还原型(即全亚铁型)rubrerythrin与过量O₂的反应需要几分钟,而还原型rubrerythrin与过氧化氢的厌氧反应在毫秒时间尺度上进行,并导致所有铁中心完全氧化为其铁离子状态。因此,rubrerythrins可能在对空气敏感的细菌和古菌中作为NADH过氧化物酶的末端成分发挥作用。

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