Navarro J A, Myshkin E, De la Rosa M A, Bullerjahn G S, Hervás M
Instituto de Bioquimica Vegetal y Fotosintesis, Centro de Investigaciones Cientificas Isla de la Cartuja, Universidad de Sevilla, Spain.
J Biol Chem. 2001 Oct 5;276(40):37501-5. doi: 10.1074/jbc.M105367200. Epub 2001 Jul 16.
A number of surface residues of plastocyanin from Prochlorothrix hollandica have been modified by site-directed mutagenesis. Changes have been made in amino acids located in the amino-terminal hydrophobic patch of the copper protein, which presents a variant structure as compared with other plastocyanins. The single mutants Y12G, Y12F, Y12W, P14L, and double mutant Y12G/P14L have been produced. Their reactivity toward photosystem I has been analyzed by laser flash absorption spectroscopy. Plots of the observed rate constant with all mutants versus plastocyanin concentration show a saturation profile similar to that with wild-type plastocyanin, thus suggesting the formation of a plastocyanin-photosystem I transient complex. The mutations do not induce relevant changes in the equilibrium constant for complex formation but induce significant variations in the electron transfer rate constant, mainly with the two mutants at proline 14. Additionally, molecular dynamics calculations indicate that mutations at position 14 yield small changes in the geometry of the copper center. The comparative kinetic analysis of the reactivity of plastocyanin mutants toward photosystem I from different organisms (plants and cyanobacteria) reveals that reversion of the unique proline of Prochlorothrix plastocyanin to the conserved leucine of all other plastocyanins at this position enhances the reactivity of the Prochlorothrix protein.
通过定点诱变对来自荷兰原绿球藻的质体蓝素的一些表面残基进行了修饰。位于铜蛋白氨基末端疏水区域的氨基酸发生了变化,与其他质体蓝素相比,呈现出一种变体结构。已产生单突变体Y12G、Y12F、Y12W、P14L以及双突变体Y12G/P14L。通过激光闪光吸收光谱分析了它们对光系统I的反应性。所有突变体质体蓝素的观测速率常数与质体蓝素浓度的关系图显示出与野生型质体蓝素相似的饱和曲线,因此表明形成了质体蓝素 - 光系统I瞬时复合物。这些突变不会引起复合物形成平衡常数的相关变化,但会引起电子转移速率常数的显著变化,主要是脯氨酸14处的两个突变体。此外,分子动力学计算表明,14位的突变会使铜中心的几何结构发生微小变化。对来自不同生物体(植物和蓝细菌)的质体蓝素突变体对光系统I反应性的比较动力学分析表明,将荷兰原绿球藻质体蓝素独特的脯氨酸在该位置恢复为所有其他质体蓝素保守的亮氨酸会增强荷兰原绿球藻蛋白质的反应性。