Andersson Magnus, Malmerberg Erik, Westenhoff Sebastian, Katona Gergely, Cammarata Marco, Wöhri Annemarie B, Johansson Linda C, Ewald Friederike, Eklund Mattias, Wulff Michael, Davidsson Jan, Neutze Richard
Department of Chemical and Biological Engineering, Chalmers University of Technology, Göteborg, Sweden.
Structure. 2009 Sep 9;17(9):1265-75. doi: 10.1016/j.str.2009.07.007.
Bacteriorhodopsin and proteorhodopsin are simple heptahelical proton pumps containing a retinal chromophore covalently bound to helix G via a protonated Schiff base. Following the absorption of a photon, all-trans retinal is isomerized to a 13-cis conformation, initiating a sequence of conformational changes driving vectorial proton transport. In this study we apply time-resolved wide-angle X-ray scattering to visualize in real time the helical motions associated with proton pumping by bacteriorhodopsin and proteorhodopsin. Our results establish that three conformational states are required to describe their photocycles. Significant motions of the cytoplasmic half of helix F and the extracellular half of helix C are observed prior to the primary proton transfer event, which increase in amplitude following proton transfer. These results both simplify the structural description to emerge from intermediate trapping studies of bacteriorhodopsin and reveal shared dynamical principles for proton pumping.
细菌视紫红质和噬盐菌视紫红质是简单的七螺旋质子泵,含有通过质子化席夫碱与G螺旋共价结合的视黄醛发色团。在吸收一个光子后,全反式视黄醛异构化为13-顺式构象,引发一系列构象变化,驱动矢量质子运输。在本研究中,我们应用时间分辨广角X射线散射实时可视化与细菌视紫红质和噬盐菌视紫红质质子泵相关的螺旋运动。我们的结果表明,需要三种构象状态来描述它们的光循环。在初级质子转移事件之前,观察到F螺旋的胞质半部分和C螺旋的胞外半部分有显著运动,质子转移后振幅增加。这些结果既简化了从细菌视紫红质的中间捕获研究中得出的结构描述,又揭示了质子泵浦的共同动力学原理。