Muradin-Szweykowska M, Pardoen J A, Dobbelstein D, Van Amsterdam L J, Lugtenburg J
Eur J Biochem. 1984 Apr 2;140(1):173-6. doi: 10.1111/j.1432-1033.1984.tb08082.x.
The binding to bacterioopsin of the all-trans isomers of retinal analogues lacking the six-membered ring and differing in length of the conjugated chain, as well as the light-driven action of the proton pump of the resulting bacteriorhodopsin analogues, were studied. The 'opsin shifts' in these modified bacteriorhodopsins are all around 2700 cm-1 and do not depend on the number of double bonds in the chromophore. These experimental results suggest that the 4800 cm-1 'opsin shift' in unmodified bacteriorhodopsin consists of a contribution of about 2700 cm-1 due to the interaction of the protonated Schiff-base with the counterion. The extra 2100 cm-1 shift in bacteriorhodopsin is due to the specific interaction of the cyclohexene ring and the protein. Only the bacteriorhodopsin analogue with the same number of conjugated double bonds in the chromophore as bacteriorhodopsin itself shows light-driven proton pump action.
研究了缺乏六元环且共轭链长度不同的视黄醛类似物的全反式异构体与细菌视紫红质的结合,以及所得细菌视紫红质类似物质子泵的光驱动作用。这些修饰后的细菌视紫红质中的“视蛋白位移”均在2700 cm-1左右,且不依赖于发色团中的双键数量。这些实验结果表明,未修饰的细菌视紫红质中4800 cm-1的“视蛋白位移”约有2700 cm-1是由于质子化席夫碱与抗衡离子的相互作用所致。细菌视紫红质中额外的2100 cm-1位移是由于环己烯环与蛋白质的特异性相互作用。只有发色团中具有与细菌视紫红质本身相同数量共轭双键的细菌视紫红质类似物表现出光驱动质子泵作用。