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Time-Resolved Resonance Raman Structural Studies of the pB′ Intermediate in the Photocycle of Photoactive Yellow Protein

机译:pB′中间体在光敏黄色蛋白光循环中的时间分辨共振拉曼结构研究

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摘要

Time-resolved resonance Raman spectroscopy is used to obtain chromophore vibrational spectra of the pR, pB′, and pB intermediates during the photocycle of photoactive yellow protein. In the pR spectrum, the C8–C9 stretching mode at 998 cm−1 is ∼60 cm−1 lower than in the dark state, and the combination of C–O stretching and C7H=C8H bending at 1283 cm−1 is insensitive to D2O substitution. These results indicate that pR has a deprotonated, cis chromophore structure and that the hydrogen bonding to the chromophore phenolate oxygen is preserved and strengthened in the early photoproduct. However, the intense C7H=C8H hydrogen out-of-plane (HOOP) mode at 979 cm−1 suggests that the chromophore in pR is distorted at the vinyl and adjacent C8–C9 bonds. The formation of pB′ involves chromophore protonation based on the protonation state marker at 1174 cm−1 and on the sensitivity of the COH bending at 1148 cm−1 as well as the combined C–OH stretching and C7H=C8H bending mode at 1252 cm−1 to D2O substitution. The hydrogen out-of-plane Raman intensity at 985 cm−1 significantly decreases in pB′, suggesting that the pR-to-pB′ transition is the stage where the stored photon energy is transferred from the distorted chromophore to the protein, producing a more relaxed pB′ chromophore structure. The C=O stretching mode downshifts from 1660 to 1651 cm−1 in the pB′-to-pB transition, indicating the reformation of a hydrogen bond to the carbonyl oxygen. Based on reported x-ray data, this suggests that the chromophore ring flips during the transition from pB′ to pB. These results confirm the existence and importance of the pB′ intermediate in photoactive yellow protein receptor activation.
机译:时间分辨共振拉曼光谱用于获得光敏黄色蛋白光循环过程中pR,pB'和pB中间体的发色团振动光谱。在pR光谱中,998 cm -1 处的C8–C9拉伸模式比黑暗状态下低约60 cm -1 ,并且C–O的组合在1283 cm -1 拉伸和C7H = C8H弯曲对D2O取代不敏感。这些结果表明,pR具有去质子化的顺式生色团结构,并且在早期光产物中保留并增强了与生色团酚盐氧的氢键。但是,在979 cm -1 处强烈的C7H = C8H氢面外(HOOP)模式表明,pR中的发色团在乙烯基和相邻的C8-C9键处变形。 pB'的形成涉及生色团质子化,质子化质子基于1174 cm -1 的质子化状态标记以及COH在1148 cm -1 弯曲的敏感性以及在1252 cm -1 处将C–OH拉伸和C7H = C8H弯曲模式结合起来以取代D2O。 985 cm -1 处的氢平面外拉曼强度在pB'中显着降低,表明pR到pB'跃迁是存储的光子能量从畸变的位置转移的阶段蛋白质的生色团,产生更宽松的pB'生色团结构。在pB'到pB的跃迁中,C = O拉伸模式从1660下降到1651 cm -1 ,表明氢键重新形成为羰基氧。根据报告的X射线数据,这表明生色团环在从pB'过渡到pB的过程中翻转。这些结果证实了pB′中间体在光敏黄色蛋白受体活化中的存在和重要性。

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