Nikitina Julia, Shutova Tatiana, Melnik Bogdan, Chernyshov Sergey, Marchenkov Victor, Semisotnov Gennady, Klimov Vyacheslav, Samuelsson Göran
Umeå Plant Science Centre, Department of Plant Physiology, Umeå University, 901 87 Umea, Sweden.
Photosynth Res. 2008 Oct-Dec;98(1-3):391-403. doi: 10.1007/s11120-008-9327-9. Epub 2008 Aug 16.
PsbO protein is an important constituent of the water-oxidizing complex, located on the lumenal side of photosystem II. We report here the efficient expression of the spinach PsbO in E. coli where the solubility depends entirely on the formation of the disulfide bond. The PsbO protein purified from a pET32 system that includes thioredoxin fusion is properly folded and functionally active. Urea unfolding experiments imply that the reduction of the single disulfide bridge decreases stability of the protein. Analysis of inter-residue contact density through the PsbO molecule shows that Cys51 is located in a cluster with high contact density. Reduction of the Cys28-Cys51 bond is proposed to perturb the packing interactions in this cluster and destabilize the protein as a whole. Taken together, our results give evidence that PsbO exists in solution as a compact highly ordered structure, provided that the disulfide bridge is not reduced.
PsbO蛋白是水氧化复合物的重要组成部分,位于光系统II的腔侧。我们在此报告菠菜PsbO在大肠杆菌中的高效表达,其溶解度完全取决于二硫键的形成。从包含硫氧还蛋白融合的pET32系统中纯化的PsbO蛋白折叠正确且具有功能活性。尿素变性实验表明,单个二硫键的还原会降低蛋白质的稳定性。通过PsbO分子分析残基间接触密度表明,Cys51位于具有高接触密度的簇中。有人提出,Cys28-Cys51键的还原会扰乱该簇中的堆积相互作用,并使整个蛋白质不稳定。综上所述,我们的结果证明,只要二硫键不被还原,PsbO在溶液中以紧密的高度有序结构存在。