Lösche M, Feher G, Okamura M Y
University of California, San Diego, La Jolla 92093.
Proc Natl Acad Sci U S A. 1987 Nov;84(21):7537-41. doi: 10.1073/pnas.84.21.7537.
The effect of an electric field on the optical absorption (Stark effect) of reaction centers (RCs) from Rhodobacter sphaeroides and Rhodopseudomonas viridis embedded in films of poly(vinyl alcohol) was measured. The infrared bands were investigated at 295 K and 77 K. In RCs from Rp. viridis at 77 K six peaks (at 982, 849, 835, 818, 803, and 787 nm), associated with the Qy transitions of the six pigments, were resolved; in addition, a small broad band at 865 nm was resolved. In RCs from Rb. sphaeroides only five bands (at 877, 817, 802, 761, and 754 nm) assigned to the Qy transitions were resolved; in addition, two small bands at 697 and 683 nm were observed. The additional bands have been tentatively assigned to vibrational side bands, although the contribution from charge-transfer states cannot be excluded. The Stark spectra had line shapes similar to the second derivative of the absorption spectra and were interpreted in terms of the interaction between the applied electric field and the dipole moments of the ground and excited states. Analyses of the spectra yielded the apparent change in dipole moment delta mu app = f delta mu (where the factor f corrects for the difference between the local field and the applied field) and delta, the angle between delta mu---- and the transition moment mu trans. At 77 K the values of delta mu----app and delta for the peaks at 877, 802, and 761 nm in Rb. sphaeroides were 6.5 debye, 38 degrees; 2.1 debye, 23 degrees; and 3.5 debye, 8 degrees. In Rp. viridis the debye values for the peaks at 982, 835, 818, and 787 were 8.2, 40 degrees; 1.8, 50 degrees; 3.4, 14 degrees; and 2.7, 0 degrees. The large values of delta mu app associated with the long-wavelength peak of the bacteriochlorophyll dimers are consistent with a significant charge-transfer contribution to the excited state of the primary donor.
测量了电场对嵌入聚乙烯醇薄膜中的球形红杆菌和绿脓红假单胞菌反应中心(RC)的光吸收(斯塔克效应)的影响。在295K和77K下研究了红外波段。在77K时,绿脓红假单胞菌的反应中心中,与六种色素的Qy跃迁相关的六个峰(分别在982、849、835、818、803和787nm处)被分辨出来;此外,在865nm处还分辨出一个小的宽带。在球形红杆菌的反应中心中,仅分辨出五个归属于Qy跃迁的波段(分别在877、817、802、761和754nm处);此外,还观察到697和683nm处的两个小波段。尽管不能排除电荷转移态的贡献,但这些额外的波段暂被归为振动边带。斯塔克光谱的线形与吸收光谱的二阶导数相似,并根据外加电场与基态和激发态偶极矩之间的相互作用进行了解释。对光谱的分析得出了偶极矩的表观变化量Δμapp = fΔμ(其中因子f校正了局部场与外加场之间的差异)以及Δ,即Δμ与跃迁矩μtrans之间的夹角。在77K时,球形红杆菌中877、802和761nm处峰的Δμapp值和Δ分别为6.5德拜、38度;2.1德拜、23度;3.5德拜、8度。在绿脓红假单胞菌中,982、835、818和787nm处峰的德拜值分别为8.2、40度;1.8、50度;3.4、14度;2.7、0度。与细菌叶绿素二聚体长波长峰相关的大Δμapp值与初级供体激发态中显著的电荷转移贡献一致。