Rafferty C N, Clayton R K
Biochim Biophys Acta. 1979 Jan 11;545(1):106-21. doi: 10.1016/0005-2728(79)90118-x.
Aqueous mixtures of reaction centers of Rhodopseudomonas sphaeroides and gelatin were dried to form thin films. Following hydration, these films were stretched as much as two to three times their original length. Polarized absorption spectra showing linear dichroism were obtained for both unstretched and stretched films, with the planes and stretching axes of the films mounted in various geometries relative to the electric vector of the measuring beam. These data were analyzed in terms of the following model: Reaction centers possess an axis of symmetry that is fixed in relation to the reaction center structure. In unstretched films this axis is confined to the film plane and oriented at random within the plane. In stretched films the symmetry axis is aligned with the direction of stretching. In both preparations reaction centers are distributed randomly with respect to rotation about the axis of symmetry. The data are consistent with this model when the analysis acknowledges less than perfect orientation. For perfect orientation in a stretched film the model predicts uniaxial symmetry about the axis of stretching. The approach to this condition was examined with films stretched to different extents. Extrapolation yielded dichroic ratios for the ideal case of perfect orientation, and allowed calculation of the angles between the axis of symmetry and the various optical transition dipoles in the reaction center. This treatment included the two absorption bands of the bacteriochlorophyll 'special pair' (photochemical electron donor) in the Qx region, at 600 and 630 nm, which we were able to resolve in light minus dark difference spectra.
将球形红假单胞菌反应中心与明胶的水性混合物干燥以形成薄膜。水合后,这些薄膜被拉伸至其原始长度的两到三倍。对于未拉伸和拉伸的薄膜,均获得了显示线性二色性的偏振吸收光谱,薄膜的平面和拉伸轴相对于测量光束的电矢量以各种几何构型安装。这些数据根据以下模型进行分析:反应中心具有相对于反应中心结构固定的对称轴。在未拉伸的薄膜中,该轴局限于薄膜平面并在平面内随机取向。在拉伸的薄膜中,对称轴与拉伸方向对齐。在两种制备物中,反应中心相对于对称轴的旋转是随机分布的。当分析承认取向并非完美时,数据与该模型一致。对于拉伸薄膜中的完美取向,该模型预测围绕拉伸轴的单轴对称。用拉伸到不同程度的薄膜研究了接近这种情况的方法。外推得出了完美取向理想情况下的二色性比率,并允许计算对称轴与反应中心中各种光学跃迁偶极之间的角度。这种处理包括在Qx区域中600和630nm处细菌叶绿素“特殊对”(光化学电子供体)的两个吸收带,我们能够在光减暗差光谱中分辨出来。