Korchemskaya E Y, Stepanchikov D A, Druzhko A B, Dyukova T V
Institute of Physics, National Academy of Sciences, Prospect Nauki 46, Kiev-22, 252650 Ukraine.
J Biol Phys. 1999 Jun;24(2-4):201-15. doi: 10.1023/A:1005135209028.
Polymer films made with photosensitive chromophore protein bacteriorhodopsin (BR) from the extreme halophile Halobacterium salinarium as well as films made with BR derivatives exhibit a nonlinear photoinduced anisotropy. Two different methods can be used to induce anisotropy in polymer BR films. The first method is based on the anisotropic properties of the initial form of the photocycle, BR570 (B-type anisotropy). Another method is based on the anisotropic properties of the longest-lived photocycle intermediate M412 (M-type anisotropy). CW gas lasers were employed to induce a reversible anisotropy in polymer BR films. Nonlinear photoinduced anisotropy is discussed in the context of a model for the anisotropic photoselection of BR molecules under linearly polarized light. A comparison of the experimental dependencies of nonlinear photoinduced anisotropy on laser intensity with similar calculated dependencies enables one to determine the molecular dichroism of BR and its derivatives not only for the initial form of the photocycle, B but also for the longest-lived intermediate M. Here we present the data showing the correlation between the laser induced nonlinear anisotropic properties and chromophore/protein interactions in BR. The effect of polymer binder on the nonlinear photoanisotropic properties of polymer BR films is also described.
由极端嗜盐菌盐生盐杆菌中提取的光敏发色团蛋白细菌视紫红质(BR)制成的聚合物薄膜,以及由BR衍生物制成的薄膜,都表现出非线性光致各向异性。可以使用两种不同的方法在聚合物BR薄膜中诱导各向异性。第一种方法基于光循环初始形式BR570的各向异性特性(B型各向异性)。另一种方法基于寿命最长的光循环中间体M412的各向异性特性(M型各向异性)。采用连续波气体激光器在聚合物BR薄膜中诱导可逆各向异性。在一个关于线性偏振光下BR分子各向异性光选择的模型背景下讨论了非线性光致各向异性。将非线性光致各向异性对激光强度的实验依赖性与类似的计算依赖性进行比较,不仅可以确定BR及其衍生物在光循环初始形式B下,而且可以确定在寿命最长的中间体M下的分子二向色性。在此,我们展示了表明激光诱导的非线性各向异性特性与BR中发色团/蛋白质相互作用之间相关性的数据。还描述了聚合物粘合剂对聚合物BR薄膜非线性光各向异性特性的影响。