Terner J, Hsieh C L, El-Sayed M A
Biophys J. 1979 Jun;26(3):527-41. doi: 10.1016/S0006-3495(79)85269-8.
The resonance Raman spectrum of the second intermediate in the bacteriorhodopsin cycle, bL550, is obtained by a simple flow technique. The Schiff base linkage in this intermediate appears to be protonated, contrary to previous suggestion. The fingerprint region of the spectrum of bL550 does not closely match those of any presently available model Schiff bases of retinal isomers, though some comparisons can be made. The resonance Raman spectrum of dark-adapted bacteriorhodopsin is obtained and decomposed by computer subtraction of the spectrum of bR570. The remaining spectrum does not match the spectra of any model compounds presently in the literature. The spectra of bL550 and dark-adapted bRDA/560 from purple membrane in H2O are compared to those in D2O. It is found that changes in the spectrum occur in the 1,600 - 1,650 cm-1 region as well as in the 800 - 1,000 cm-1 region, but apparently not in the fingerprint region (1,100 - 1,400 cm-1). The possibilities of conformational changes of the retinal chromophore in the light adaptation process as well as the photosynthetic cycle are discussed.
细菌视紫红质循环中第二个中间体bL550的共振拉曼光谱是通过一种简单的流动技术获得的。与之前的推测相反,该中间体中的席夫碱键似乎被质子化了。尽管可以进行一些比较,但bL550光谱的指纹区与目前任何可用的视网膜异构体模型席夫碱的指纹区都不太匹配。通过计算机减去bR570的光谱,获得并分解了暗适应细菌视紫红质的共振拉曼光谱。剩余的光谱与目前文献中任何模型化合物的光谱都不匹配。将来自H2O中紫膜的bL550和暗适应bRDA/560的光谱与D2O中的光谱进行了比较。发现在1600 - 1650 cm-1区域以及800 - 1000 cm-1区域光谱发生了变化,但在指纹区(1100 - 1400 cm-1)显然没有变化。讨论了视网膜发色团在光适应过程以及光合循环中构象变化的可能性。