Ganter U M, Gärtner W, Siebert F
Institut für Biophysik und Strahlenbiologie, Albert-Ludwig Universität Freiburg, FRG.
Biochemistry. 1988 Sep 20;27(19):7480-8. doi: 10.1021/bi00419a046.
The rhodopsin-lumirhodopsin transition has been investigated by Fourier transform infrared difference spectroscopy using isotope-labeled retinals. In the transition, two protonated carboxyl groups are involved. Another carbonyl band, located at 1725 cm-1 in rhodopsin, is shifted to 1731.5 cm-1 in lumirhodopsin. This line is tentatively assigned to a carbonyl stretching vibration of a peptide bond adjacent to the nitrogen of a proline residue. The C=N stretching vibration of rhodopsin could unequivocally be assigned to a band at 1659 cm-1. In contrast to rhodopsin and bathorhodopsin, the C=N stretching vibration of lumirhodopsin is at a low position, i.e., at 1635 cm-1, and exhibits only a downshift of 4 cm-1 upon deuteriation of the nitrogen. The C15-H rocking vibration of rhodopsin is assigned to the unusual high position of 1456 cm-1 and shifts into the normal region upon formation of lumirhodopsin. From these results, it is concluded that, whereas the environment of the Schiff base in rhodopsin, bathorhodopsin, and isorhodopsin is approximately the same, large changes occur with the formation of lumirhodopsin. From the assignment of the C10-C11 stretching vibration in bathorhodopsin and lumirhodopsin, a 10-s-cis geometry of lumirhodopsin can be excluded.
利用同位素标记的视黄醛,通过傅里叶变换红外差光谱对视紫红质 - 发光视紫红质转变进行了研究。在该转变过程中,涉及两个质子化的羧基。视紫红质中位于1725 cm-1处的另一条羰基带,在发光视紫红质中移至1731.5 cm-1。这条谱线暂定为与脯氨酸残基氮相邻的肽键的羰基伸缩振动。视紫红质的C=N伸缩振动可以明确地归属于1659 cm-1处的一条谱带。与视紫红质和视紫红质中间体相比,发光视紫红质的C=N伸缩振动处于较低位置,即1635 cm-1,并且在氮的氘代后仅出现4 cm-1的下移。视紫红质的C15-H摇摆振动归属于1456 cm-1的异常高位,在形成发光视紫红质时移至正常区域。从这些结果可以得出结论,虽然视紫红质、视紫红质中间体和异视紫红质中席夫碱的环境大致相同,但在形成发光视紫红质时会发生很大变化。根据对视紫红质中间体和发光视紫红质中C10-C11伸缩振动的归属,可以排除发光视紫红质的10-s-顺式构象。