Mulliez E, Fontecave M, Gaillard J, Reichard P
Laboratoire d'Etudes Dynamiques et Structurales de la Sélectivité, Université Joseph Fourier, URA Centre National de la Recherche Scientifique 332, Chimie-Recherche, Grenoble, France.
J Biol Chem. 1993 Feb 5;268(4):2296-9.
Anaerobically grown Escherichia coli contain an oxygen-sensitive ribonucleotide reductase. The enzyme requires anaerobic activation by two E. coli fractions with S-adenosylmethionine, NADPH, dithiothreitol, and KCl. We now find that photochemically reduced deazaflavin can substitute for these two fractions and NADPH. The reductase contained roughly equimolar amounts of iron and sulfide, suggesting the presence of an Fe-S complex. The cluster is characterized by a charge transfer band at 420 nm and a low temperature EPR signal centered at g = 2.01 that is difficult to saturate at 14 K, suggested to be a (3Fe-4S)+ cluster. In five different preparations of essentially protein-pure reductase containing widely different amounts of iron, the catalytic activity correlated well with the iron content. The iron signal disappeared during reductive anaerobic activation, with the appearance of a new EPR signal at g = 2.0033 showing a temperature behavior and microwave power saturability consistent with an organic free radical. The signal disappeared after exposure of the activated enzyme to air. We suggest that activation involves generation of a specific amino acid free radical that is dependent on the reduced Fe-S cluster and S-adenosylmethionine. From other work it appears likely that the free radical is localized on glycine 681 of the polypeptide chain.
厌氧培养的大肠杆菌含有一种对氧敏感的核糖核苷酸还原酶。该酶需要由大肠杆菌的两个组分在S-腺苷甲硫氨酸、NADPH、二硫苏糖醇和KCl存在的情况下进行厌氧激活。我们现在发现,光化学还原的脱氮黄素可以替代这两个组分和NADPH。该还原酶含有大致等摩尔量的铁和硫化物,表明存在铁硫复合物。该簇的特征是在420nm处有一个电荷转移带,以及在14K时以g = 2.01为中心的低温电子顺磁共振信号,在14K时难以饱和,推测为(3Fe-4S)+簇。在五种不同的、基本上为纯蛋白质的还原酶制剂中,铁含量差异很大,催化活性与铁含量密切相关。在厌氧还原激活过程中,铁信号消失,同时在g = 2.0033处出现一个新的电子顺磁共振信号,其温度行为和微波功率饱和性与有机自由基一致。激活后的酶暴露于空气中后,该信号消失。我们认为激活过程涉及产生一种特定的氨基酸自由基,它依赖于还原的铁硫簇和S-腺苷甲硫氨酸。从其他工作来看,自由基很可能定位于多肽链的甘氨酸681上。