Key Jason, Srajer Vukica, Pahl Reinhard, Moffat Keith
Department of Biochemistry and Molecular Biology, University of Chicago, Chicago, Illinois 60637, USA.
Biochemistry. 2007 Apr 24;46(16):4706-15. doi: 10.1021/bi700043c. Epub 2007 Mar 27.
The FixL protein of Bradyrhizobium japonicum is a dimeric oxygen sensor responsible for initiating regulation of transcription of genes encoding proteins involved in nitrogen fixation and oxidative stress. It consists of an N-terminal heme-bound PAS domain, denoted bjFixLH, and a C-terminal histidine kinase domain whose enzymatic activity depends on the ligation state of the heme. To investigate the molecular basis for this dependence and the dynamics associated with conversion between ligated and unligated states, we have conducted time-resolved Laue diffraction studies of CO recombination in bjFixLH. Time-dependent difference Fourier maps from 1 micros to 10 ms after photolysis of the heme-CO bond show movement of the side chain of Leu236 and the H and I beta-strands into the ligand binding pocket formerly occupied by CO. Long-range conformational changes are evident in the protein, driven by relaxation of steric interactions between the bound ligand and amino acid side chains and/or changes in heme stereochemistry. These structural changes fully reverse as CO rebinds to the heme. Spectroscopic measurements of CO recombination kinetics in bjFixLH crystals relate the behavior of crystalline bjFixLH to solution and provide a framework for our time-resolved crystallographic experiments. Analysis of the time-dependent difference Fourier maps by singular value decomposition reveals that only one significant singular value accounts for the data. Thus only two structural states are present, the photolyzed and the CO-bound states. The first left singular vector represents the difference in density between these two states and shows features common to difference maps calculated from the static CO and deoxy states. The first right singular vector represents the time course of this difference density and agrees well with the CO recombination kinetics measured spectroscopically. We refine the structure of the photolyzed state present in the early-microsecond time range and find that it does not differ significantly in conformation from static, deoxy bjFixLH. Thus, structural relaxation from CO-bound to deoxy bjFixLH is complete in less than 1 micros.
日本慢生根瘤菌的FixL蛋白是一种二聚体氧传感器,负责启动对参与固氮和氧化应激的蛋白质编码基因转录的调控。它由一个N端与血红素结合的PAS结构域(称为bjFixLH)和一个C端组氨酸激酶结构域组成,其酶活性取决于血红素的连接状态。为了研究这种依赖性的分子基础以及与连接态和未连接态之间转换相关的动力学,我们对bjFixLH中的CO重组进行了时间分辨劳厄衍射研究。血红素-CO键光解后1微秒到10毫秒的时间相关差分傅里叶图显示,Leu236的侧链以及H和Iβ链移动到先前被CO占据的配体结合口袋中。蛋白质中明显存在长程构象变化,这是由结合配体与氨基酸侧链之间的空间相互作用松弛和/或血红素立体化学变化驱动的。随着CO重新结合到血红素上,这些结构变化完全逆转。bjFixLH晶体中CO重组动力学的光谱测量将结晶bjFixLH的行为与溶液行为联系起来,并为我们的时间分辨晶体学实验提供了一个框架。通过奇异值分解对时间相关差分傅里叶图进行分析表明,只有一个显著的奇异值解释了数据。因此只存在两种结构状态,即光解态和CO结合态。第一个左奇异向量代表这两种状态之间的密度差异,并显示出从静态CO态和脱氧态计算出的差分图的共同特征。第一个右奇异向量代表这种差异密度的时间进程,与光谱测量的CO重组动力学非常吻合。我们对存在于微秒早期范围内的光解态结构进行了精修,发现其构象与静态脱氧bjFixLH没有显著差异。因此,从CO结合态到脱氧bjFixLH的结构松弛在不到1微秒内完成。