Volkov V, Svirko Y P, Kamalov V F, Song L, El-Sayed M A
Department of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta 30322, USA.
Biophys J. 1997 Dec;73(6):3164-70. doi: 10.1016/S0006-3495(97)78342-5.
We observed optical rotation of the plane of polarization of the second harmonic (SH) radiation at 532 nm (in resonance with the retinal absorption) generated in reflection geometry in Langmuir-Blodgett film of bacteriorhodopsin (bR). The analysis of the experimental data showed that this effect arises from the nonvanishing contribution of the antisymmetrical part of the hyperpolarizability tensor. This requires that the dipole moment of the resonant electronic transition, the change of the dipole moment upon electronic excitation, and the long axis of the retinal not be coplanar. Such conditions are satisfied only if the retinal has a nonplanar geometry, a conclusion that could lend support to the heterogeneity model of the origin of the biphasic band shape of the linear CD spectrum of the retinal in bR. On the basis of our theoretical analysis, we were able to estimate the angle between the induced dipole moment and the plan that contains the long axis of the chromophore and the transition dipole moment of the retinal absorption.
我们观察到在细菌视紫红质(bR)的朗缪尔-布洛杰特膜中,通过反射几何结构产生的532 nm(与视网膜吸收共振)二次谐波(SH)辐射的偏振面的旋光性。对实验数据的分析表明,这种效应源于超极化率张量反对称部分的非零贡献。这要求共振电子跃迁的偶极矩、电子激发时偶极矩的变化以及视网膜的长轴不共面。只有当视网膜具有非平面几何形状时,这些条件才会满足,这一结论可能支持bR中视网膜线性圆二色光谱双相带形状起源的异质性模型。基于我们的理论分析,我们能够估计诱导偶极矩与包含发色团长轴和视网膜吸收跃迁偶极矩的平面之间的夹角。