Braiman M, Mathies R
Proc Natl Acad Sci U S A. 1982 Jan;79(2):403-7. doi: 10.1073/pnas.79.2.403.
We have obtained the resonance Raman spectrum of bacteriorhodopsin's primary photoproduct K with a novel low-temperature spinning sample technique. Purple membrane at 77 K is illuminated with spatially separated actinic (pump) and probe laser beams. The 514-nm pump beam produces a photostationary steady-state mixture of bacteriorhodopsin and K. This mixture is then rotated through the red (676 nm) probe beam, which selectively enhances the Raman scattering from K. The essential advantage of our successive pump-and-probe technique is that it prevents the fluorescence excited by the pump beam from masking the red probe Raman scattering. K exhibits strong Raman lines at 1516, 1294, 1194, 1012, 957, and 811 cm-1. The effects of C15 deuteration on K's fingerprint lines correlate well with those seen in 13-cis model compounds, indicating that K has a 13-cis chromophore. However, the presence of unusually strong "low-wavenumber" lines at 811 and 957 cm-1, attributable to hydrogen out-of-plane wags, indicates that the protein holds the chromophore in a distorted conformation after trans leads to cis isomerization.
我们采用一种新型的低温旋转样品技术获得了细菌视紫红质初级光产物K的共振拉曼光谱。在77K下,用空间分离的光化(泵浦)激光束和探测激光束照射紫色膜。514nm的泵浦光束产生细菌视紫红质和K的光稳态混合物。然后使该混合物通过红色(676nm)探测光束旋转,该探测光束选择性地增强了来自K的拉曼散射。我们的连续泵浦-探测技术的主要优点是它可以防止泵浦光束激发的荧光掩盖红色探测拉曼散射。K在1516、1294、1194、1012、957和811cm-1处呈现出很强的拉曼谱线。C15氘代对K的指纹谱线的影响与在13-顺式模型化合物中观察到的影响很好地相关,表明K具有13-顺式发色团。然而,在811和957cm-1处存在异常强的“低波数”谱线,这归因于氢的面外摆动,表明在反式向顺式异构化后,蛋白质将发色团保持在扭曲的构象中。