Institute for Physical and Theoretical Chemistry, Institute of Biophysics, Johann Wolfgang Goethe-University Frankfurt, Max-von-Laue-Str. 7, Building N120/224, 60438, Frankfurt am Main, Germany.
Photosynth Res. 2010 Mar;103(3):141-51. doi: 10.1007/s11120-009-9520-5. Epub 2010 Jan 23.
Light-induced reaction dynamics of isolated photosynthetic membranes obtained from wild-type (WT) and reaction center (RC)-subunit deletion strains SPUHK1 (an H-subunit deletion mutant) and SK Delta LM (an (L+M) deletion mutant) of the purple non-sulphur bacterium Rhodospirillum rubrum have been investigated by femtosecond transient absorption spectroscopy. Upon excitation of the spirilloxanthin (Spx) S(2) state at 546 nm, of the bacteriochlorophyll Soret band at 388 nm and probing spectral regions, which are characteristic for carotenoids, similar dynamics in the SPUHK1, SK Delta LM and WT strains could be observed. The excitation of Spx S(2) is followed by the simultaneous population of the lower singlet excited states S(1) and S* which decay with lifetimes of 1.4 and 5 ps, respectively for the mutants, and 1.4 and 4 ps, respectively, for the wild-type. The excitation of the BChl Soret band is followed by relaxation into BChl lower excited states which compete with excitation energy transfer BChl-to-Spx. The deexcitation pathway BChl(Soret) --> Spx(S(2)) --> Spx(S(1)) occurs with the same transition rate for all investigated samples (WT, SPUHK1 and SK Delta LM). The kinetic traces measured for the Spx S(1) --> S(N) transition display similar behaviour for all samples showing a positive signal which increases within the first 400 fs (i.e. the time needed for the excitation energy to reach the Spx S(1) excited state) and decays with a lifetime of about 1.5 ps. This suggests that the Spx excited state dynamics in the investigated complexes do not differ significantly. Moreover, a longer excited state lifetime of BChl for SPUHK1 in comparison to WT was observed, consistent with a photochemical quenching channel present in the presence of RC. For long delay times, photobleaching of the RC special pair and an electrochromic blue shift of the monomeric BChl a can be observed only for the WT but not for the mutants. The close similarity of the excited state decay processes of all strains indicates that the pigment geometry of the LH1 complex in native membranes is unaffected by the presence of an RC and allows us to draw a model representation of the WT, SK Delta LM and SPUHK1 PSU complexes.
采用飞秒瞬态吸收光谱法研究了从野生型(WT)和反应中心(RC)亚基缺失菌株 SPUHK1(H 亚基缺失突变体)和 SK Delta LM((L+M)缺失突变体)的紫色非硫细菌红假单胞菌中分离出的光合膜的光诱导反应动力学。在 546nm 处激发螺旋藻(Spx)S(2)态,在 388nm 处激发细菌叶绿素 Soret 带并探测特征为类胡萝卜素的光谱区域,在 SPUHK1、SK Delta LM 和 WT 菌株中可以观察到相似的动力学。Spx S(2)的激发伴随着较低的单重激发态 S(1)和 S*的同时分布,对于突变体,它们的衰减寿命分别为 1.4 和 5 ps,而对于野生型,它们的衰减寿命分别为 1.4 和 4 ps。BChl Soret 带的激发伴随着弛豫到 BChl 较低的激发态,这些激发态与 BChl 到 Spx 的激发能量转移竞争。BChl(Soret)→Spx(S(2))→Spx(S(1))的去激发途径对于所有研究的样品(WT、SPUHK1 和 SK Delta LM)具有相同的跃迁速率。对于 Spx S(1)→S(N)跃迁的动力学轨迹测量显示所有样品的行为相似,显示出一个正信号,该信号在最初的 400fs 内增加(即激发能量到达 Spx S(1)激发态所需的时间),并以约 1.5ps 的寿命衰减。这表明在研究的复合物中,Spx 激发态动力学没有显著差异。此外,与 WT 相比,SPUHK1 中 BChl 的激发态寿命更长,这与 RC 存在时存在的光化学猝灭通道一致。对于长延迟时间,仅在 WT 中但不在突变体中可以观察到 RC 特殊对的光漂白和单体 BChl a 的电致变色蓝移。所有菌株的激发态衰减过程的紧密相似表明,LH1 复合物在天然膜中的色素几何形状不受 RC 的存在影响,并允许我们对 WT、SK Delta LM 和 SPUHK1 PSU 复合物进行模型表示。