Denke E, Merbitz-Zahradnik T, Hatzfeld O M, Snyder C H, Link T A, Trumpower B L
Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
J Biol Chem. 1998 Apr 10;273(15):9085-93. doi: 10.1074/jbc.273.15.9085.
The crystal structure of the bovine Rieske iron-sulfur protein indicates a sulfur atom (S-1) of the iron-sulfur cluster and the sulfur atom (Sgamma) of a cysteine residue that coordinates one of the iron atoms form hydrogen bonds with the hydroxyl groups of Ser-163 and Tyr-165, respectively. We have altered the equivalent Ser-183 and Tyr-185 in the Saccharomyces cerevisiae Rieske iron-sulfur protein by site-directed mutagenesis of the iron-sulfur protein gene to examine how these hydrogen bonds affect the midpoint potential of the iron-sulfur cluster and how changes in the midpoint potential affect the activity of the enzyme. Eliminating the hydrogen bond from the hydroxyl group of Ser-183 to S-1 of the cluster lowers the midpoint potential of the cluster by 130 mV, and eliminating the hydrogen bond from the hydroxyl group of Tyr-185 to Sgamma of Cys-159 lowers the midpoint potential by 65 mV. Eliminating both hydrogen bonds has an approximately additive effect, lowering the midpoint potential by 180 mV. Thus, these hydrogen bonds contribute significantly to the positive midpoint potential of the cluster but are not essential for its assembly. The activity of the bc1 complex decreases with the decrease in midpoint potential, confirming that oxidation of ubiquinol by the iron-sulfur protein is the rate-limiting partial reaction in the bc1 complex, and that the rate of this reaction is extensively influenced by the midpoint potential of the iron-sulfur cluster.
牛 Rieske 铁硫蛋白的晶体结构表明,铁硫簇的一个硫原子(S-1)以及与其中一个铁原子配位的半胱氨酸残基的硫原子(Sγ)分别与 Ser-163 和 Tyr-165 的羟基形成氢键。我们通过对铁硫蛋白基因进行定点诱变,改变了酿酒酵母 Rieske 铁硫蛋白中对应的 Ser-183 和 Tyr-185,以研究这些氢键如何影响铁硫簇的中点电位,以及中点电位的变化如何影响酶的活性。消除从 Ser-183 的羟基到簇的 S-1 的氢键会使簇的中点电位降低 130 mV,而消除从 Tyr-185 的羟基到 Cys-159 的 Sγ的氢键会使中点电位降低 65 mV。消除这两个氢键具有近似相加的效果,使中点电位降低 180 mV。因此,这些氢键对簇的正中点电位有显著贡献,但对其组装并非必不可少。bc1 复合物的活性随着中点电位的降低而降低,这证实了铁硫蛋白对泛醇的氧化是 bc1 复合物中的限速部分反应,并且该反应的速率受到铁硫簇中点电位的广泛影响。