Shichida Y, Kandori H, Okada T, Yoshizawa T, Nakashima N, Yoshihara K
Department of Biophysics, Faculty of Science, Kyoto University, Japan.
Biochemistry. 1991 Jun 18;30(24):5918-26. doi: 10.1021/bi00238a016.
The photochemical and subsequent thermal reactions of 7-cis-rhodopsin prepared from cattle opsin and 7-cis-retinal were investigated by low-temperature spectrophotometry and laser photolysis, and compared with those of 11-cis-rhodopsin prepared from cattle opsin and 11-cis-retinal. Low-temperature experiments revealed that the absorption maxima of batho and lumi intermediates from 7-cis-rhodopsin were at slightly shorter wavelengths than those of 11-cis-rhodopsin while the meta I intermediates of both rhodopsin isomers showed the same absorption maxima. Kinetic experiments of the photobleaching process of 7-cis-rhodopsin using picosecond and nanosecond laser pulses revealed the formation of intermediates corresponding to the batho, lumi, meta I, and meta II intermediates from 11-cis-rhodopsin. An intermediate of 7-cis-rhodopsin corresponding to photorhodopsin (a precursor of bathorhodopsin), however, was not detected. Batho and lumi intermediates from 7-cis-rhodopsin had shorter lifetimes (approximately 40 ns and 300 microseconds) than those of 11-cis-rhodopsin (250 ns and 800 microseconds), but the lifetime of the meta I intermediate from 7-cis-rhodopsin was identical with that from 11-cis-rhodopsin (12 ms). These results indicate that the difference in configuration of the original chromophore between 7-cis- and 11-cis-rhodopsins is a cause of different chromophore-opsin interactions in the batho and lumi stages, while in the meta I stage the difference has disappeared by the relaxation of the protein near the chromophores. A possible interaction change between the 9-methyl group of the chromophore and its neighboring protein during the lumi-meta I transition will be discussed.
通过低温分光光度法和激光光解研究了由牛视蛋白和7-顺式视黄醛制备的7-顺式视紫红质的光化学反应及后续热反应,并与由牛视蛋白和11-顺式视黄醛制备的11-顺式视紫红质进行了比较。低温实验表明,7-顺式视紫红质的嗜碱性和发光中间体的吸收最大值比11-顺式视紫红质的略短,而两种视紫红质异构体的间I中间体具有相同的吸收最大值。使用皮秒和纳秒激光脉冲对7-顺式视紫红质光漂白过程进行的动力学实验揭示了与11-顺式视紫红质的嗜碱性、发光、间I和间II中间体相对应的中间体的形成。然而,未检测到与光视紫红质(嗜碱性视紫红质的前体)相对应的7-顺式视紫红质中间体。7-顺式视紫红质的嗜碱性和发光中间体的寿命(约40纳秒和300微秒)比11-顺式视紫红质的(250纳秒和800微秒)短,但7-顺式视紫红质的间I中间体的寿命与11-顺式视紫红质的相同(12毫秒)。这些结果表明,7-顺式和11-顺式视紫红质之间原始发色团构型的差异是嗜碱性和发光阶段发色团-视蛋白相互作用不同的原因,而在间I阶段,由于发色团附近蛋白质的松弛,差异消失了。将讨论发色团的9-甲基与其相邻蛋白质在发光-间I转变过程中可能的相互作用变化。