Shimizu Moriyuki, Katsuda Naoki, Katsurada Takeharu, Mitani Masaki, Yoshioka Yasunori
Chemistry Department for Materials, Graduate School of Engineering, Mie University, Tsu, Mie 514-8507, Japan.
J Phys Chem B. 2008 Nov 27;112(47):15116-26. doi: 10.1021/jp804387g.
The molecular and electronic structures of the Rieske iron-sulfur [2Fe-2S] cluster with an imidazolate and imidazole were investigated by using usual unrestricted and broken symmetry B3LYP methods for the highest and lowest spin states, respectively. The electronic structures of the lowest spin states were determined by the spin contaminations and natural orbital analyses. It was shown that the spin contamination presents the number of pairs of the antiferromagnetic spin couplings. The oxidation mechanism of the ubquinol at the Q(p) site of the cytochrome bc(1) complex was also examined by the broken symmetry B3LYP methods. In the [2Fe-2S] clusters with an imidazolate, the oxidized and lowest spin state, (Imz(-))FeSLS, was lowest in energy among four possible states, consistent with experimental observations. In the examination of the mechanism of the ubquinol oxidation, it was confirmed that the ubiquinol docks between the imidazolate of [2Fe-2S] clusters and Glu272(-) of cytochrome b by the hydrogen bonds before the oxidation proceeds, consistent with the experimental proposals. Our results support a "Glu272-first" mechanism that Glu272 serves as an acceptor of the first proton from the ubiquinol and subsequently the proton-coupled electron transfer (PCET) occurs from the ubisemiquinone anion to the Rieske iron-sulfur [2Fe-2S] cluster.
利用常规的非限制和破缺对称性B3LYP方法,分别对具有咪唑盐和咪唑的 Rieske 铁硫[2Fe-2S]簇的最高和最低自旋态的分子结构和电子结构进行了研究。最低自旋态的电子结构通过自旋污染和自然轨道分析来确定。结果表明,自旋污染呈现出反铁磁自旋耦合的对数。还通过破缺对称性B3LYP方法研究了细胞色素bc(1)复合物Q(p)位点上泛醇的氧化机制。在具有咪唑盐的[2Fe-2S]簇中,氧化态和最低自旋态(Imz(-))FeSLS在四种可能状态中能量最低,这与实验观察结果一致。在对泛醇氧化机制的研究中,证实了在氧化发生之前,泛醇通过氢键停靠在[2Fe-2S]簇的咪唑盐和细胞色素b的Glu272(-)之间,这与实验推测一致。我们的结果支持一种“Glu272优先”机制,即Glu272作为来自泛醇的第一个质子的受体,随后质子耦合电子转移(PCET)从泛半醌阴离子发生到 Rieske 铁硫[2Fe-2S]簇。