Unno Masashi, Kumauchi Masato, Hamada Norio, Tokunaga Fumio, Yamauchi Seigo
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.
J Biol Chem. 2004 Jun 4;279(23):23855-8. doi: 10.1074/jbc.C400137200. Epub 2004 Apr 19.
The blue light receptor photoactive yellow protein (PYP) displays a photocycle that involves several intermediate states. Here we report resonance Raman spectroscopic investigations of the short-lived red-shifted intermediate denoted PYP(L). We have found that the Raman bands of the carbonyl C=O stretching mode nu(11) as well as the C=C stretching mode nu(13) for the chromophore can be resolved into two peaks, and the ratio of the two components varies as a function of pH with pK(a) approximately 6. The isotope effects on the resonance Raman spectra have confirmed a deprotonated cis-chromophore for the two components. The results indicate the presence of two conformations in the active site of PYP(L). The normal coordinate calculations based on the density functional theory provide a structural model for the two conformations, where the low pH form is possibly an active structure for the protonation reaction generating a following intermediate in the photocycle.
蓝光受体光活性黄色蛋白(PYP)呈现出一个涉及多个中间态的光循环。在此,我们报告了对被称为PYP(L)的短寿命红移中间体的共振拉曼光谱研究。我们发现,发色团的羰基C=O伸缩振动模式ν(11)以及C=C伸缩振动模式ν(13)的拉曼带可分解为两个峰,且两个组分的比例随pH变化,pK(a)约为6。共振拉曼光谱上的同位素效应证实了这两个组分的发色团为去质子化的顺式结构。结果表明PYP(L)活性位点存在两种构象。基于密度泛函理论的简正坐标计算为这两种构象提供了一个结构模型,其中低pH形式可能是光循环中产生后续中间体的质子化反应的活性结构。