Subramanyam Rajagopal, Jolley Craig, Brune Daniel C, Fromme Petra, Webber Andrew N
School of Life Sciences and Center for the Study of Early Events in Photosynthesis, P.O. Box, 874501, Arizona State University, Tempe, AZ 85287-4501, USA.
FEBS Lett. 2006 Jan 9;580(1):233-8. doi: 10.1016/j.febslet.2005.12.003. Epub 2005 Dec 12.
A novel supercomplex of Photosystem I (PSI) with light harvesting complex I (LHCI) was isolated from the green alga Chlamydomonas reinhardtii. This novel supercomplex is unique as it is the first stable supercomplex of PSI together with its external antenna. The supercomplex contains 256 chlorophylls per reaction center. The supercomplex was isolated under anaerobic conditions and may represent the State II form of the photosynthetic unit. In contrast to previously reported supercomplexes isolated in State I, which contain only 4 LHC I proteins, this supercomplex contains 10-11 LHC I proteins tightly bound to the PSI core. In contrast to plants, no LHC II is tightly bound to the PSI-LHCI supercomplex in State II. Investigation of the energy transfer from the antenna system to the reaction center core shows that the LHC supercomplexes are tightly coupled to the PSI core, not only structurally but also energetically. The excitation energy transfer kinetics are completely dominated by the fast phase, with a near-complete lack of long-lived fluorescence. This tight coupling is in contrast to all reports of energy transfer in PSI-LHCI supercomplexes (in State I), which have so far been described as weakly coupled supercomplexes with low efficiency for excitation energy transfer. These results indicate that there are large and dynamic changes of the PSI-LHCI supercomplex during the acclimation from aerobic (State I) to anaerobic (State II) conditions in Chlamydomonas.
从莱茵衣藻中分离出一种新型的光系统I(PSI)与光捕获复合体I(LHCI)的超复合体。这种新型超复合体很独特,因为它是PSI与其外部天线的首个稳定超复合体。该超复合体每个反应中心含有256个叶绿素。该超复合体是在厌氧条件下分离得到的,可能代表光合单位的II型状态。与之前报道的处于I型状态下分离出的超复合体不同,后者仅含有4个LHC I蛋白,而这种超复合体含有10 - 11个紧密结合在PSI核心上的LHC I蛋白。与植物不同,在II型状态下,没有LHC II紧密结合在PSI - LHCI超复合体上。对从天线系统到反应中心核心的能量转移的研究表明,LHC超复合体不仅在结构上而且在能量上都与PSI核心紧密耦合。激发能量转移动力学完全由快速相主导,几乎完全没有长寿命荧光。这种紧密耦合与所有关于PSI - LHCI超复合体(处于I型状态)中能量转移的报道形成对比,到目前为止,这些超复合体被描述为激发能量转移效率低的弱耦合超复合体。这些结果表明,在莱茵衣藻从需氧(I型状态)到厌氧(II型状态)条件的适应过程中,PSI - LHCI超复合体存在巨大且动态的变化。