Hastings G, Sivakumar V
Department of Physics and Astronomy, Georgia State University, Atlanta 30303, USA.
Biochemistry. 2001 Mar 27;40(12):3681-9. doi: 10.1021/bi0023100.
Photoaccumulated Fourier transform infrared difference spectra associated with P700(+) and P700(+)A(1)(-) formation have been obtained using purified photosystem I particles from Synechocystis sp. PCC 6803. From these spectra, a difference spectrum associated with phylloquinone reduction (A(1)(-) - A(1)) has been calculated. Infrared absorption changes associated with both the loss of the ground state and formation of the anion radical are observed in the difference spectrum. Fourier transform infrared difference spectra obtained in various spectral regions indicate that two, structurally distinct phylloquinones are photoaccumulated. This could indicate that phylloquinones on both the PsaA and PsaB branches are involved in electron transfer, and that electron transfer is bi-directional in photosystem I. It could also indicate an intrinsic structural heterogeneity in the A(1) binding site of the active branch. Several FTIR difference features taken together indicate that a glutamic acid residue (at position 699 or 702 on PsaA and/or 679 or 682 on PsaB) is perturbed upon A(1) anion formation. It is suggested that the protonation state of the perturbed glutamic acid residue is influenced by hydrogen bonding to a nearby tyrosine residue at position 696/676 on PsaA/PsaB.
利用来自集胞藻PCC 6803的纯化光系统I颗粒,获得了与P700(+)和P700(+)A(1)(-)形成相关的光积累傅里叶变换红外差光谱。根据这些光谱,计算出了与叶绿醌还原相关的差光谱(A(1)(-) - A(1))。在差光谱中观察到了与基态损失和阴离子自由基形成相关的红外吸收变化。在不同光谱区域获得的傅里叶变换红外差光谱表明,光积累了两种结构不同的叶绿醌。这可能表明PsaA和PsaB分支上的叶绿醌都参与了电子转移,并且光系统I中的电子转移是双向的。这也可能表明活性分支的A(1)结合位点存在内在结构异质性。综合几个傅里叶变换红外差特征表明,一个谷氨酸残基(在PsaA上的699或702位和/或PsaB上的679或682位)在A(1)阴离子形成时受到扰动。有人认为,受扰动的谷氨酸残基的质子化状态受到与PsaA/PsaB上696/676位附近酪氨酸残基氢键作用的影响。