Metalloproteins Unit, Institut de Biologie Structurale J.-P. Ebel, Commissariat à l'Energie Atomique-Centre National de la Recherche Scientifique-Université Grenoble-Alpes, 38027 Grenoble, France.
Proc Natl Acad Sci U S A. 2013 Apr 30;110(18):7188-92. doi: 10.1073/pnas.1302388110. Epub 2013 Apr 17.
Fe4S4 clusters are very common versatile prosthetic groups in proteins. Their redox property of being sensitive to O2-induced oxidative damage is, for instance, used by the cell to sense oxygen levels and switch between aerobic and anaerobic metabolisms, as exemplified by the fumarate, nitrate reduction regulator (FNR). Using the hydrogenase maturase HydE from Thermotoga maritima as a template, we obtained several unusual forms of FeS clusters, some of which are associated with important structural changes. These structures represent intermediate states relevant to both FeS cluster assembly and degradation. We observe one Fe2S2 cluster bound by two cysteine persulfide residues. This observation lends structural support to a very recent Raman study, which reported that Fe4S4-to-Fe2S2 cluster conversion upon oxygen exposure in FNR resulted in concomitant production of cysteine persulfide as cluster ligands. Similar persulfide ligands have been observed in vitro for several other Fe4S4 cluster-containing proteins. We have also monitored FeS cluster conversion directly in our protein crystals. Our structures indicate that the Fe4S4-to-Fe2S2 change requires large structural modifications, which are most likely responsible for the dimer-monomer transition in FNR.
Fe4S4 簇是蛋白质中非常常见的多功能辅基。例如,其对 O2 诱导的氧化损伤敏感的氧化还原性质被细胞用来感知氧气水平,并在需氧和厌氧代谢之间切换,例如延胡索酸、硝酸盐还原调节剂(FNR)。我们使用来自海洋栖热菌的氢化酶成熟酶 HydE 作为模板,获得了几种不寻常形式的 FeS 簇,其中一些与重要的结构变化有关。这些结构代表了与 FeS 簇组装和降解都相关的中间状态。我们观察到两个半胱氨酸过硫化物残基结合的一个 Fe2S2 簇。这一观察结果为最近的一项拉曼研究提供了结构支持,该研究报告称,FNR 中氧气暴露导致 Fe4S4 到 Fe2S2 簇的转换,同时产生半胱氨酸过硫化物作为簇配体。在其他几种含有 Fe4S4 簇的蛋白质中也观察到了类似的过硫化物配体。我们还在我们的蛋白质晶体中直接监测了 FeS 簇的转换。我们的结构表明,Fe4S4 到 Fe2S2 的变化需要大的结构修饰,这很可能是 FNR 中二聚体-单体转变的原因。