Department of Physics, Purdue University, 525 Northwestern Ave, West Lafayette, IN 47907, USA.
Photosynth Res. 2013 Sep;116(1):1-9. doi: 10.1007/s11120-013-9871-9. Epub 2013 Jun 30.
A time-resolved spectroscopic study of the isolated photosynthetic reaction center (RC) from Heliobacterium modesticaldum reveals that thermal equilibration of light excitation among the antenna pigments followed by trapping of excitation and the formation of the charge-separated state P800 (+)A0 (-) occurs within ~25 ps. This time scale is similar to that reported for plant and cyanobacterial photosystem I (PS I) complexes. Subsequent electron transfer from the primary electron acceptor A0 occurs with a lifetime of ~600 ps, suggesting that the RC of H. modesticaldum is functionally similar to that of Heliobacillus mobilis and Heliobacterium chlorum. The (A0 (-) - A0) and (P800 (+) - P800) absorption difference spectra imply that an 8(1)-OH-Chl a F molecule serves as the primary electron acceptor and occupies the position analogous to ec3 (A0) in PS I, while a monomeric BChl g pigment occupies the position analogous to ec2 (accessory Chl). The presence of an intense photobleaching band at 790 nm in the (A0 (-) - A0) spectrum suggests that the excitonic coupling between the monomeric accessory BChl g and the 8(1)-OH-Chl a F in the heliobacterial RC is significantly stronger than the excitonic coupling between the equivalent pigments in PS I.
对分离的嗜盐古菌光合反应中心(RC)的时间分辨光谱研究表明,天线色素之间的光激发热平衡,随后激发的捕获和电荷分离态 P800(+)A0(-)的形成发生在25 ps 内。这个时间尺度与植物和蓝细菌光系统 I(PSI)复合物报道的时间尺度相似。随后,来自初级电子受体 A0 的电子转移的寿命为600 ps,这表明嗜盐古菌的 RC 在功能上类似于 Mobilifactor thermautotrophicus 和 Chlorobium tepidum。(A0(-)-A0)和(P800(+)-P800)吸收差光谱表明,一个 8(1)-OH-Chl a F 分子作为初级电子受体,占据与 PS I 中 ec3(A0)类似的位置,而一个单体 BChl g 色素占据与 ec2(辅助 Chl)类似的位置。在(A0(-)-A0)光谱中存在一个强烈的光漂白带在 790nm 处,表明在嗜盐古菌 RC 中单体辅助 BChl g 和 8(1)-OH-Chl a F 之间的激子耦合比 PS I 中等效色素之间的激子耦合强得多。