Department of Chemistry and Biochemistry, University of Massachusetts Dartmouth, 285 Old Westport Road, North Dartmouth, MA 02747, USA.
J Photochem Photobiol B. 2011 Jul-Aug;104(1-2):118-25. doi: 10.1016/j.jphotobiol.2011.01.017. Epub 2011 Jan 26.
The Mn cluster in photosystem II (PS II) is believed to play an important role in the UV photoinhibition of green plants, but the mechanism is still not clear at a molecular level. In this work, the photochemical stability of Mn(III)(O)(2)Mn(IV)(H(2)O)(2)(Terpy)(2)(3) (Terpy=2,2':6',2''-terpyridine), designated as Mn-oxo mixed-valence dimer, a well characterized functional model of the oxygen-evolving complex in PS II, was examined in aqueous solution by exposing the complex to excess light irradiation at six different wavelengths in the range of 250 to 700 nm. The photodamage of the Mn-oxo mixed-valence dimer was confirmed by the decrease of its oxygen-evolution activity measured in the presence of the chemical oxidant oxone. Ultraviolet light irradiation induced a new absorption peak at around 400-440 nm of the Mn-oxo mixed-valence dimer. Visible light did not have the same effect on the Mn-oxo mixed-valence dimer. We speculate that the spectral change may be caused by conversion of the Mn(III)O(2)Mn(IV) dimer into a new structure--Mn(IV)O(2)Mn(IV). In the processes, the appearance of a 514 nm fluorescence peak was observed in the solution and may be linked to the hydration or protonation of Terpy ligand in the Mn-oxo dimer. In comparing the response of the PS II functional model compound and the PS II complex to excess light radiation, our results support the idea that UV photoinhibition is triggered at the Mn(4)Ca center of the oxygen-evolution complex in PS II by forming a modified structure, possibly a Mn(IV) species, and that the reaction of Mn ions is likely the initial step.
在光合作用系统 II(PS II)中,Mn 簇被认为在绿色植物的 UV 光抑制中起着重要作用,但在分子水平上其机制仍不清楚。在这项工作中,通过在 250 到 700nm 的六个不同波长范围内将过量的光照射到复合物上,在水溶液中检查了 Mn(III)(O)(2)Mn(IV)(H(2)O)(2)(Terpy)(2)(3)(Terpy=2,2':6',2''-三联吡啶),即 Mn-氧合混合价二聚体的光化学稳定性,它是 PS II 中氧释放复合物的功能模型。Mn-氧合混合价二聚体的光损伤通过在化学氧化剂 Oxone 的存在下测量其氧释放活性的降低来证实。紫外光照射诱导 Mn-氧合混合价二聚体在大约 400-440nm 处出现新的吸收峰。可见光对 Mn-氧合混合价二聚体没有相同的影响。我们推测这种光谱变化可能是由 Mn(III)O(2)Mn(IV)二聚体转化为新结构--Mn(IV)O(2)Mn(IV)引起的。在这个过程中,在溶液中观察到 514nm 荧光峰的出现,这可能与 Mn-氧合二聚体中 Terpy 配体的水合或质子化有关。在比较 PS II 功能模型化合物和 PS II 复合物对过量光辐射的反应时,我们的结果支持这样一种观点,即 UV 光抑制是通过在 PS II 的氧释放复合物的 Mn(4)Ca 中心形成一种改性结构,可能是 Mn(IV)物种,而 Mn 离子的反应可能是初始步骤。