Department of Chemistry and Applied Chemistry, Graduate School of Science and Engineering, Saga University , Saga 850-8502, Japan.
MSU-DOE Plant Research Laboratory and Department of Biochemistry and Molecular Biology, Michigan State University , East Lansing, Michigan 48824, United States.
J Am Chem Soc. 2017 Aug 2;139(30):10456-10460. doi: 10.1021/jacs.7b05193. Epub 2017 Jul 21.
The orange carotenoid protein (OCP) plays an important role in photoprotection in cyanobacteria, which is achieved by the photoconversion from the orange dark state (OCP) to the red active state (OCP). Using Raman optical activity (ROA), we studied the conformations of the carotenoid chromophore in the active sites of OCP and OCP. This ROA measurement directly observed the chromophore conformation of native OCP in solution, and the measurement of OCP first demonstrated the ROA spectroscopy for the transient species. For OCP, the spectral features of ROA were mostly reproduced by the quantum chemical calculation based on the crystal structure of the OCP. Within the spatial resolution (∼2 Å), a slight modification of the polyene-chain distortion improved the agreement between the observed and calculated ROA spectra. While the crystal structure of OCP is not available, the ROA spectrum of OCP was reproduced by using the crystal structure of red carotenoid protein (RCP), an OCP proxy. The present results showed that the chromophore conformations in the crystal structures of OCP and RCP hold true for OCP and OCP in solution. Particularly, ROA spectroscopy of the native OCP provides a direct support for the 12 Å translocation of chromophore in the photoactivation, which was proposed by X-ray crystallography using RCP [R. L. Leverenz, M. Sutter, et al. Science 2015, 348, 1463-1466].
橙色类胡萝卜素蛋白(OCP)在蓝细菌的光保护中起着重要作用,这是通过从橙色暗态(OCP)到红色活性态(OCP)的光转化实现的。利用拉曼光学活性(ROA),我们研究了 OCP 和 OCP 活性部位中类胡萝卜素发色团的构象。这种 ROA 测量直接观察了溶液中天然 OCP 的发色团构象,并且 OCP 的测量首次证明了瞬态物种的 ROA 光谱学。对于 OCP,ROA 的光谱特征主要是通过基于 OCP 晶体结构的量子化学计算来重现的。在空间分辨率(约 2 Å)内,对聚烯链扭曲的轻微修正改善了观察到的和计算出的 ROA 光谱之间的一致性。虽然 OCP 的晶体结构不可用,但使用红色类胡萝卜素蛋白(RCP)的晶体结构(OCP 的替代物)重现了 OCP 的 ROA 光谱。目前的结果表明,OCP 和 RCP 晶体结构中的发色团构象适用于溶液中的 OCP 和 OCP。特别是,天然 OCP 的 ROA 光谱为 X 射线晶体学使用 RCP 提出的发色团在光激活中的 12 Å 易位提供了直接支持[R. L. Leverenz,M. Sutter 等人。科学 2015, 348, 1463-1466]。