FEMTOSECOND SPECTRAL EVOLUTION OF THE EXCITED-STATE OF BACTERIAL REACTION CENTERS AT 10-K

被引:111
作者
VOS, MH
LAMBRY, JC
ROBLES, SJ
YOUVAN, DC
BRETON, J
MARTIN, JL
机构
[1] ECOLE POLYTECH,ECOLE NATL SUPER TECH AVANCEES,INSERM,U275,OPT APPL LAB,F-91120 PALAISEAU,FRANCE
[2] MIT,DEPT CHEM,CAMBRIDGE,MA 02139
[3] CENS,DEPT BIOL,SERV BIOPHYS,F-91191 GIF SUR YVETTE,FRANCE
关键词
PHOTOSYNTHESIS; CHARGE SEPARATION; MUTANT;
D O I
10.1073/pnas.89.2.613
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The femtosecond spectral evolution of reaction centers of Rhodobacter sphaeroides R-26 was studied at 10 K. Transient spectra in the near infrared region, obtained with 45-fs pulses (pump pulses centered at 870 nm and continuum probe pulses), were analyzed with associated kinetics at specific wavelengths. The t = 0-fs transient spectrum is very rich in structure; it contains separate induced bands at 807 and 796 nm and a bleaching near 760 nm, reflecting strong changes in interaction between all pigments upon formation of the excited state. A complex spectral evolution in the 800-nm region, most notably the bleaching of the 796-nm band, takes place within a few hundred femtosecond-i.e., on a time scale much faster than electron transfer from the primary donor P to the bacteriopheophytin acceptor H(L). The remarkable initial spectral features and their evolution are presumably related to the presence of H(L), as they were not observed in the D(LL) mutant of Rhodobacter capsulatus, which lacks this pigment. A simple linear reaction scheme with an intermediate state cannot account for our data; the initial spectral evolution must reflect relaxation processes within the excited state. The importance for primary photochemistry of long distance interactions in the reaction center is discussed.
引用
收藏
页码:613 / 617
页数:5
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