Logunov S L, el-Sayed M A, Lanyi J K
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta 30332-0400, USA.
Biophys J. 1996 Jun;70(6):2875-81. doi: 10.1016/S0006-3495(96)79857-0.
We have determined the rate and quantum yield of retinal photoisomerization, the spectra of the primary transients, and the energy stored in the K intermediate in the photocycle of some bacteriorhodopsin mutants (V49A, A53G, and W182F) in which residue replacements are found to change the Schiff base deprotonation kinetics (and thus the protein-retinal interaction). Because of their change in the local volume resulting from these individual replacements, these substitutions perturb the proton donor-acceptor relative orientation change and thus the Schiff base deprotonation kinetics. These replacements are thus expected to change the charge distribution around the retinal, which controls its photoisomerization dynamics. Subpicosecond transient spectroscopy as well as photoacoustic technique are used to determine the retinal photoisomerization rate, quantum yield, and the energy stored in the K-intermediate for these mutants. The results are compared with those obtained for wild-type bacteriorhodopsin and other mutants in which charged residues in the cavity are replaced by neutral ones. In some of the mutants the rate of photoisomerization is changed, but in none is the quantum yield or the energy stored in the K intermediate altered from that in the wild type. These results are discussed in terms of the shapes of the potential energy surfaces of the excited and ground states of retinal in the perpendicular configuration within the protein and the stabilization of the positive charge in the ground and the excited state of the electronic system of retinal.
我们已经测定了某些细菌视紫红质突变体(V49A、A53G和W182F)光循环中视网膜光异构化的速率和量子产率、初级瞬态的光谱以及K中间体中储存的能量,在这些突变体中发现残基替换会改变席夫碱去质子化动力学(从而改变蛋白质-视网膜相互作用)。由于这些个别替换导致局部体积发生变化,这些取代会扰乱质子供体-受体的相对取向变化,进而影响席夫碱去质子化动力学。因此,预计这些替换会改变视网膜周围的电荷分布,而电荷分布控制着其光异构化动力学。利用亚皮秒瞬态光谱以及光声技术来测定这些突变体的视网膜光异构化速率、量子产率以及K中间体中储存的能量。将结果与野生型细菌视紫红质以及其他腔中带电残基被中性残基取代的突变体所获得的结果进行比较。在一些突变体中,光异构化速率发生了变化,但量子产率或K中间体中储存的能量均未与野生型有所不同。根据蛋白质中垂直构型下视网膜激发态和基态的势能面形状以及视网膜电子系统基态和激发态中正电荷的稳定性对这些结果进行了讨论。