Giulio L, Facello C, Laudato M T, Taddei E
Ital J Biochem. 1981 Sep-Oct;30(5):343-54.
Thermotropic phase transitions (i.e. phase changes induced by heat) were studied at frog ROS membrane level, with the aid of birefringence (phase difference, T) determination. In both dark and light adapted states, an early phase transition was observed (transition temperature, Tt, from +42 divided by 46 degree C). Apparently this change in the physiological state of the membrane precedes the disorientation of the pigment molecules. Following a period of birefringence stabilization a further decrease in birefringence takes place (from +52 divided by 53 degrees C onwards). During the last part of this phase Rho molecules appear to be completely disoriented, as though in solution. The physical changes underlying the transition phenomena seem related to the unbleached and bleached conditions of the ROS; with rising temperatures, the Tt point does not differ significantly in both conditions.
借助双折射(相位差,T)测定,在青蛙视网膜外段(ROS)膜水平研究了热致相变(即由热引起的相变)。在暗适应和明适应状态下,均观察到一个早期相变(转变温度,Tt,为+42至46摄氏度)。显然,膜生理状态的这种变化先于色素分子的取向紊乱。在双折射稳定一段时间后,双折射进一步降低(从+52至53摄氏度起)。在该阶段的最后部分,视黄醛(Rho)分子似乎完全取向紊乱,就好像处于溶液中一样。转变现象背后的物理变化似乎与ROS的未漂白和漂白状态有关;随着温度升高,两种状态下的Tt点没有显著差异。