Haumann Michael, Grundmeier Alexander, Zaharieva Ivelina, Dau Holger
Freie Universität Berlin, Institut für Experimentalphysik, Arnimallee 14, 14195 Berlin, Germany.
Proc Natl Acad Sci U S A. 2008 Nov 11;105(45):17384-9. doi: 10.1073/pnas.0802596105. Epub 2008 Nov 5.
The atmospheric dioxygen (O(2)) is produced at a tetramanganese complex bound to the proteins of photosystem II (PSII). To investigate product inhibition at elevated oxygen partial pressure (pO(2) ranging from 0.2 to 16 bar), we monitored specifically the redox reactions of the Mn complex in its catalytic S-state cycle by rapid-scan and time-resolved X-ray absorption near-edge spectroscopy (XANES) at the Mn K-edge. By using a pressure cell for X-ray measurements after laser-flash excitation of PSII particles, we found a clear pO(2) influence on the redox reactions of the Mn complex, with a similar half-effect pressure as determined (2-3 bar). However, XANES spectra and the time courses of the X-ray fluorescence collected with microsecond resolution suggested that the O(2) evolution transition itself (S(3)-->S(0)+O(2)) was not affected. Additional (nonstandard) oxidation of the Mn complex at high pO(2) explains our experimental findings more readily. Our results suggest that photosynthesis at ambient conditions is not limited by product inhibition of the O(2) formation step.
大气中的双原子氧(O₂)是在与光系统II(PSII)蛋白质结合的四锰配合物上产生的。为了研究在升高的氧分压(pO₂范围为0.2至16巴)下的产物抑制作用,我们通过在锰K边进行快速扫描和时间分辨X射线吸收近边光谱(XANES),专门监测了锰配合物在其催化S态循环中的氧化还原反应。通过在PSII颗粒激光闪光激发后使用压力细胞进行X射线测量,我们发现pO₂对锰配合物的氧化还原反应有明显影响,其半效应压力与之前测定的相似(2 - 3巴)。然而,XANES光谱以及以微秒分辨率收集的X射线荧光的时间进程表明,O₂释放转变本身(S₃→S₀ + O₂)并未受到影响。在高pO₂下锰配合物的额外(非标准)氧化更能解释我们的实验结果。我们的结果表明,在环境条件下光合作用不受O₂形成步骤的产物抑制的限制。