Ono T A, Mino H
Laboratory for Photo-Biology, RIKEN Photodynamics Research Center, The Institute of Physical and Chemical Research, Sendai, Japan.
Biochemistry. 1999 Jul 6;38(27):8778-85. doi: 10.1021/bi982949s.
Binding of Mn2+ to manganese-depleted photosystem II and electron donation from the bound Mn2+ to an oxidized YZ tyrosine were studied under the same equilibrium conditions. Mn2+ associated with the depleted membranes in a nonsaturating manner when added alone, but only one Mn2+ ion per photosystem II (PS II) was bound to the membranes in the presence of other divalent cations including Ca2+ and Mg2+. Mn2+-dependent electron donation to photosystem II studied by monitoring the decay kinetics of chlorophyll fluorescence and the electron paramagnetic resonance (EPR) signal of an oxidized YZ tyrosine (YZ+) after a single-turnover flash indicated that the binding of only one Mn2+ ion to the manganese-depleted PS II is sufficient for the complete reduction of YZ+ induced by flash excitation. The results indicate that the manganese-depleted membranes have only one unique binding site, which has higher affinity and higher specificity for Mn2+ compared with Mg2+ and Ca2+, and that Mn2+ bound to this unique site can deliver an electron to YZ+ with high efficiency. The dissociation constant for Mn2+ of this site largely depended on pH, suggesting that a single amino acid residue with a pKa value around neutral pH is implicated in the binding of Mn2+. The results are discussed in relation to the photoactivation mechanism that forms the active manganese cluster.
在相同的平衡条件下,研究了Mn²⁺与缺锰的光系统II的结合以及结合的Mn²⁺向氧化的YZ酪氨酸的电子供体作用。单独添加时,Mn²⁺以非饱和方式与缺锰的膜结合,但在包括Ca²⁺和Mg²⁺在内的其他二价阳离子存在下,每个光系统II(PS II)仅结合一个Mn²⁺离子到膜上。通过监测叶绿素荧光的衰减动力学和单周转闪光后氧化的YZ酪氨酸(YZ⁺)的电子顺磁共振(EPR)信号来研究对光系统II的Mn²⁺依赖性电子供体作用,结果表明,仅一个Mn²⁺离子与缺锰的PS II结合就足以使闪光激发诱导的YZ⁺完全还原。结果表明,缺锰的膜只有一个独特的结合位点,与Mg²⁺和Ca²⁺相比,该位点对Mn²⁺具有更高的亲和力和更高的特异性,并且结合到这个独特位点的Mn²⁺可以高效地向YZ⁺传递电子。该位点的Mn²⁺解离常数在很大程度上取决于pH值,这表明一个pKa值接近中性pH的单个氨基酸残基参与了Mn²⁺的结合。结合形成活性锰簇的光激活机制对结果进行了讨论。