Rospendowski B N, Farrens D L, Cotton T M, Song P S
Department of Chemistry, University of Nebraska-Lincoln, 68588-0304.
FEBS Lett. 1989 Nov 20;258(1):1-4. doi: 10.1016/0014-5793(89)81601-1.
Surface enhanced resonance Raman scattering (SERRS) spectra have been obtained from the active, far-red light absorbing (Pfr) and biologically inactive (Pr) forms of phytochrome adsorbed on silver colloids. Substantial differences between the SERRS spectra of the two forms in the low and high wavenumber regions are observed using 406.7 nm wavelength excitation. These differences reinforce those seen with 413.1 nm wavelength excitation in the high wavenumber region. Simultaneously, extensive differences are observed in the SERRS obtained from the same form in the low wavenumber region using 406.7 nm, as compared with 413.1 nm wavelength excitation. The relative intensity differences observed for the two forms, and those obtained using two slightly different excitation wavelengths to illuminate the same form, suggest that some type of subtle, protein-controlled structural variation is responsible for the spectroscopic differences. AZ----E isomerization during the Pr----Pfr phototransformation is consistent with the SERRS data, although the overall chromophore conformations are most likely conserved for the native Pr- and Pfr-phytochrome species. Slight out-of-plane ring twisting, accompanying the Pr----Pfr photoisomerization, may be responsible for the large difference in the spectroscopic properties of the native Pr and Pfr chromophores.
已从吸附在银胶体上的光敏色素的活性、吸收远红光的(Pfr)和生物无活性的(Pr)形式获得了表面增强共振拉曼散射(SERRS)光谱。使用406.7nm波长激发,观察到两种形式的SERRS光谱在低波数和高波数区域存在显著差异。这些差异强化了在高波数区域使用413.1nm波长激发时所观察到的差异。同时,与413.1nm波长激发相比,在低波数区域使用406.7nm从相同形式获得的SERRS中观察到了广泛的差异。观察到的两种形式的相对强度差异,以及使用两种略有不同的激发波长照射相同形式时获得的差异,表明某种类型的微妙的、蛋白质控制的结构变化是光谱差异的原因。尽管对于天然的Pr-和Pfr-光敏色素物种,发色团的整体构象很可能是保守的,但Pr----Pfr光转化过程中的AZ----E异构化与SERRS数据一致。Pr----Pfr光异构化伴随的轻微面外环扭曲可能是天然Pr和Pfr发色团光谱性质存在巨大差异的原因。