Chemistry Division, Argonne National Laboratory, 60439, Argonne, IL, USA.
Photosynth Res. 1987 Jan;12(2):181-9. doi: 10.1007/BF00047947.
Photosystem I particles containing 30-40 chlorophyll a molecules per primary electron donor P700 were subjected to 1.5 ps low density laser flashes at 610 nm resulting in excitation of the antenna chlorophyll a molecules followed by energy transfer to P700 and subsequent oxidation of P700. Absorbance changes were monitored as a function of time with 1.5 ps time resolution. P700 bleaching (decrease in absorbance) occurred within the time resolution of the experiment. This is attributed to the formation of (1)P700.(*) This observation was confirmed by monitoring the rise of a broad absorption band near 810 nm due to chlorophyll a excited singlet state formation. The appearance of the initial bleach at 700 nm was followed by a strong bleaching at 690 nm. The time constant for the appearance of the 690 nm bleach is 13.7±0.8 ps. In the near-infrared region of the spectrum, the 810 nm band (which formed upon the excitation of the photosystem I particles) diminished to about 60% of its original intensity with the same 13.7 ps time constant as the formation of the 690 nm band. The spectral changes are interpreted as due to the formation of the charge separated state P700(+)-A0 (-), where A0 is the primary electron acceptor chlorophyll a molecule.
光系统 I 颗粒每一个初级电子供体 P700 含有 30-40 个叶绿素 a 分子,用 610nm 的 1.5ps 低密度激光闪光照射,导致天线叶绿素 a 分子被激发,然后能量转移到 P700,随后 P700 被氧化。吸光度变化作为时间的函数,用 1.5ps 的时间分辨率进行监测。P700 的漂白(吸光度下降)发生在实验的时间分辨率内。这归因于(1)P700 的形成。这一观察结果通过监测由于叶绿素 a 激发单线态形成而在 810nm 附近出现的宽吸收带的上升得到证实。在 700nm 处出现初始漂白后,在 690nm 处出现强烈漂白。690nm 漂白出现的时间常数为 13.7±0.8ps。在光谱的近红外区域,810nm 带(在光系统 I 颗粒被激发时形成)衰减到其原始强度的约 60%,与形成 690nm 带的时间常数相同,为 13.7ps。这些光谱变化被解释为由于电荷分离态 P700(+)-A0 (-)的形成,其中 A0 是初级电子受体叶绿素 a 分子。