...
首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >The electronic structures of the S(2) states of the oxygen-evolving complexes of photosystem II in plants and cyanobacteria in the presence and absence of methanol.
【24h】

The electronic structures of the S(2) states of the oxygen-evolving complexes of photosystem II in plants and cyanobacteria in the presence and absence of methanol.

机译:在存在和不存在甲醇的情况下,植物和蓝细菌中光系统II的氧演化复合物的S(2)状态的电子结构。

获取原文
获取原文并翻译 | 示例
           

摘要

The electronic properties of the Mn(4)O(x)Ca cluster in the S(2) state of the oxygen-evolving complex (OEC) were studied using X- and Q-band EPR and Q-band (55)Mn-ENDOR using photosystem II preparations isolated from the thermophilic cyanobacterium T. elongatus and higher plants (spinach). The data presented here show that there is very little difference between the two species. Specifically it is shown that: (i) only small changes are seen in the fitted isotropic hyperfine values, suggesting that there is no significant difference in the overall spin distribution (electronic coupling scheme) between the two species; (ii) the inferred fine-structure tensor of the only Mn(III) ion in the cluster is of the same magnitude and geometry for both species types, suggesting that the Mn(III) ion has the same coordination sphere in both sample preparations; and (iii) the data from both species are consistent with only one structural model available in the literature, namely the Siegbahn structure [Siegbahn, P. E. M. Accounts Chem. Res.2009, 42, 1871-1880, Pantazis, D. A. et al., Phys. Chem. Chem. Phys.2009, 11, 6788-6798]. These measurements were made in the presence of methanol because it confers favorable magnetic relaxation properties to the cluster that facilitate pulse-EPR techniques. In the absence of methanol the separation of the ground state and the first excited state of the spin system is smaller. For cyanobacteria this effect is minor but in plant PS II it leads to a break-down of the S(T)=(1/2) spin model of the S(2) state. This suggests that the methanol-OEC interaction is species dependent. It is proposed that the effect of small organic solvents on the electronic structure of the cluster is to change the coupling between the outer Mn (Mn(A)) and the other three Mn ions that form the trimeric part of the cluster (Mn(B), Mn(C), Mn(D)), by perturbing the linking bis-mu-oxo bridge. The flexibility of this bridging unit is discussed with regard to the mechanism of O-O bond formation.
机译:使用X波段和Q波段EPR和Q波段(55)Mn-研究了在氧演化络合物(OEC)的S(2)状态下Mn(4)O(x)Ca簇的电子性质。 ENDOR使用光热系统II制剂从嗜热蓝藻T.longateus和高等植物(菠菜)中分离。此处提供的数据表明,两种物种之间的差异很小。具体而言,表明:(i)在拟合的各向同性超精细值中只看到很小的变化,这表明两个物种之间的整体自旋分布(电子耦合方案)没有显着差异; (ii)推断簇中唯一的Mn(III)离子的精细结构张量对于两种物种都具有相同的大小和几何形状,这表明在两种样品制备中Mn(III)离子具有相同的配位球; (iii)来自这两个物种的数据与文献中仅有的一种结构模型,即Siegbahn结构[Siegbahn,P. E. M. Accounts Chem。 Res.2009,42,1871-1880,Pantazis,D.A. et al。,Phys。化学化学物理.2009,11,6788-6798]。这些测量是在甲醇存在下进行的,因为它赋予簇有利的磁弛豫特性,有利于脉冲EPR技术。在没有甲醇的情况下,自旋系统的基态和第一激发态的分离较小。对于蓝细菌来说,这种作用很小,但是在植物PS II中,会导致S(2)状态的S(T)=(1/2)自旋模型分解。这表明甲醇-OEC相互作用是物种依赖性的。建议小的有机溶剂对簇的电子结构的影响是改变外部Mn(Mn(A))与形成簇的三聚体部分(Mn(B ),Mn(C),Mn(D)),通过扰动连接的bis-mu-oxo桥。关于O-O键形成的机理,讨论了该桥接单元的灵活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号