Nishimura S, Kandori H, Maeda A
Department of Biophysics, Kyoto University, Japan.
Photochem Photobiol. 1997 Dec;66(6):796-801. doi: 10.1111/j.1751-1097.1997.tb03227.x.
Unhydrated air-dried films of rhodopsin from bovine rod outer segment membranes do not produce its active state, metarhodopsin II. In order to reveal requirements for its formation, we studied changes in H-bonding of water, peptide carbonyl and carboxylic acid in the photochemical reactions by means of difference Fourier transform infrared spectroscopy, under both hydrated and unhydrated conditions. A water molecule near Glu113, which undergoes H-bonding change in bathorhodopsin, remained in the unhydrated film, but with a weaker H-bonding state than in the hydrated film. The other water molecules, which shfit in lumirhodopsin and metarhodopsin I as well as in bathorhodopsin of the hydrated film, were not observed in the unhydrated film. Effects of the dehydration were detected in all the C=O stretching vibrations of the peptide backbone and of Asp83 in the formation of bathorhodopsin. The C=O stretching band of Asp83 of lumirhodopsin and metarhodopsin I is intensified in the unhydrated film. We propose that structural changes at the intradiscal site in the interaction between the Schiff base and Glu113 affect water molecules, the peptide backbone, Asp83 and Glu122 in helices B and C through consecutive photochemical processes to metarhodopsin II.
来自牛视杆细胞外段膜的视紫红质的未水化空气干燥膜不会产生其活性状态——变视紫红质II。为了揭示其形成的条件,我们通过差示傅里叶变换红外光谱法,研究了在水化和未水化条件下光化学反应中水、肽羰基和羧酸的氢键变化。在视紫红质中间体中经历氢键变化的靠近Glu113的一个水分子,在未水化膜中仍然存在,但氢键状态比水化膜中的弱。在未水化膜中未观察到在水化膜的视紫红质I、视紫红质II以及视紫红质中间体中发生位移的其他水分子。在视紫红质中间体形成过程中,脱水对视紫红质肽主链的所有C=O伸缩振动以及Asp83都有影响。在未水化膜中,视紫红质I和视紫红质中间体的Asp83的C=O伸缩带增强。我们提出,在席夫碱与Glu113相互作用的盘内位点处的结构变化,通过向变视紫红质II的连续光化学过程,影响螺旋B和C中的水分子、肽主链Asp83和Glu122。