Sahlin M, Lassmann G, Pötsch S, Sjöberg B M, Gräslund A
Department of Molecular Biology, Stockholm University, Arrhenius Laboratories, Sweden.
J Biol Chem. 1995 May 26;270(21):12361-72. doi: 10.1074/jbc.270.21.12361.
Ferrous iron/oxygen reconstitution of the mutant R2 apoprotein Y122F leads to formation of a diferric center similar to that of the wild-type R2 protein of Escherichia coli ribonucleotide reductase. This reconstitution reaction requires two extra electrons, supplied or transferred by the protein matrix of R2. We observed several transient free radical species using stopped flow and freeze quench EPR and stopped flow UV-visible spectroscopy. Three of the radicals occur in the time window 0.1-2 s, i.e. concomitant with formation of the diferric site. They include a strongly iron-coupled radical (singlet EPR signal) observed only at < or = 77 K, a singlet EPR signal observed only at room temperature, and a radical at Tyr-356 (light absorption at 410 nm), an invariant residue proposed to be part of an electron transfer chain in catalysis. Three additional transient radicals species are observed in the time window 6 s to 20 min. Two of these are conclusively identified, by specific deuteration, as tryptophan radicals. Comparing side chain geometry and distance to the iron center with EPR characteristics of the radicals, we propose certain Trp residues in R2 as likely to harbor these transient radicals.
突变型R2脱辅基蛋白Y122F的亚铁/氧重构导致形成一个与大肠杆菌核糖核苷酸还原酶野生型R2蛋白类似的双铁中心。这种重构反应需要由R2的蛋白质基质提供或转移的两个额外电子。我们使用停流和冷冻淬灭电子顺磁共振(EPR)以及停流紫外可见光谱观察到了几种瞬态自由基。其中三种自由基出现在0.1 - 2秒的时间窗口内,即与双铁位点的形成同时发生。它们包括仅在≤77 K时观察到的强铁耦合自由基(单重态EPR信号)、仅在室温下观察到的单重态EPR信号以及Tyr - 356处的自由基(410 nm处的光吸收),Tyr - 356是一个不变残基,被认为是催化过程中电子转移链的一部分。在6秒至20分钟的时间窗口内观察到另外三种瞬态自由基。通过特定的氘化,其中两种被明确鉴定为色氨酸自由基。将侧链几何结构和到铁中心的距离与自由基的EPR特征进行比较,我们提出R2中的某些色氨酸残基可能含有这些瞬态自由基。