Hughes Joseph L, Smith Paul, Pace Ron, Krausz Elmars
Research School of Chemistry, Australian National University, Canberra.
Biochim Biophys Acta. 2006 Jul;1757(7):841-51. doi: 10.1016/j.bbabio.2006.05.035. Epub 2006 Jun 2.
The illumination of oxygen-evolving PSII core complexes at very low temperatures in spectral regions not expected to excite P680 leads to charge separation in a majority of centers. The fraction of centers photoconverted as a function of the number of absorbed photons per PSII core is determined by quantification of electrochromic shifts on Pheo(D1). These shifts arise from the formation of metastable plastoquinone anion (Q(A)(-)) configurations. Spectra of concentrated samples identify absorption in the 700-730 nm range. This is well beyond absorption attributable to CP47. Spectra in the 690-730 nm region can be described by the 'trap' CP47 absorption at 689 nm, with dipole strength of approximately 1 chlorophyll a (chl a), partially overlapping a broader feature near 705 nm with a dipole strength of approximately 0.15 chl a. This absorption strength in the 700-730 nm region falls by 40% in the photoconverted configuration. Quantum efficiencies of photoconversion following illumination in the 690-700 nm region are similar to those obtained with green illumination but fall significantly in the 700-730 nm range. Two possible assignments of the long-wavelength absorption are considered. Firstly, as a low intensity component of strongly exciton-coupled reaction center chlorin excitations and secondly as a nominally 'dark' charge-transfer excitation of the 'special pair' P(D1)-P(D2). The opportunities offered by these observations towards the understanding of the nature of P680 and PSII fluorescence are discussed.
在极低温度下,对放氧型光系统II核心复合物在预期不会激发P680的光谱区域进行光照,会导致大多数中心发生电荷分离。通过对去镁叶绿素(Pheo(D1))上的电致变色位移进行定量,确定了每个光系统II核心中光转化中心的比例与吸收光子数的函数关系。这些位移源于亚稳质体醌阴离子(Q(A)(-))构型的形成。浓缩样品的光谱显示在700 - 730 nm范围内有吸收。这远远超出了归因于CP47的吸收范围。690 - 730 nm区域的光谱可以用689 nm处的“陷阱”CP47吸收来描述,其偶极强度约为1个叶绿素a(chl a),部分与705 nm附近更宽的特征重叠,偶极强度约为0.15 chl a。在光转化构型中,700 - 730 nm区域的这种吸收强度下降了40%。在690 - 700 nm区域光照后光转化的量子效率与绿色光照下获得的效率相似,但在700 - 730 nm范围内显著下降。考虑了长波长吸收的两种可能归属。首先,作为强激子耦合反应中心二氢卟酚激发的低强度成分,其次作为“特殊对”P(D1)-P(D2)的名义上“暗”电荷转移激发。讨论了这些观察结果为理解P680的性质和光系统II荧光提供的机会。