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蓝细菌光系统I中不对称电子转移的证据:对初级电子受体A0配体的甲硫氨酸到亮氨酸突变的分析。

Evidence for asymmetric electron transfer in cyanobacterial photosystem I: analysis of a methionine-to-leucine mutation of the ligand to the primary electron acceptor A0.

作者信息

Cohen Rachel O, Shen Gaozhong, Golbeck John H, Xu Wu, Chitnis Parag R, Valieva Alfia I, van der Est Art, Pushkar Yulia, Stehlik Dietmar

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Biochemistry. 2004 Apr 27;43(16):4741-54. doi: 10.1021/bi035633f.

Abstract

The X-ray crystal structure of photosystem I (PS I) depicts six chlorophyll a molecules (in three pairs), two phylloquinones, and a [4Fe-4S] cluster arranged in two pseudo C2-symmetric branches that diverge at the P700 special pair and reconverge at the interpolypeptide FX cluster. At present, there is agreement that light-induced electron transfer proceeds via the PsaA branch, but there is conflicting evidence whether, and to what extent, the PsaB branch is active. This problem is addressed in cyanobacterial PS I by changing Met688(PsaA) and Met668(PsaB), which provide the axial ligands to the Mg2+ of the eC-A3 and eC-B3-chlorophylls, to Leu. The premise of the experiment is that alteration or removal of the ligand should alter the midpoint potential of the A0-/A0 redox pair and thereby result in a change in the forward electron-transfer kinetics from A0- to A1. In comparison with the wild type, the PsaA-branch mutant shows: (i) slower growth rates, higher light sensitivity, and reduced amounts of PS I; (ii) a reduced yield of electron transfer from P700 to the FA/FB iron-sulfur clusters at room temperature; (iii) an increased formation of the 3P700 triplet state due to P700(+)A0- recombination; and (iv) a change in the intensity and shape of the polarization patterns of the consecutive radical pair states P700(+)A1- and P700(+)FX-. The latter changes are temperature dependent and most pronounced at 298 K. These results are interpreted as being due to disorder in the A0 binding site, which leads to a distribution of lifetimes for A0- in the PsaA branch of cofactors. This allows a greater degree of singlet-triplet mixing during the lifetime of the radical pair P700(+)A0-, which changes the polarization patterns of P700(+)A1- and P700(+)FX-. The lower quantum yield of electron transfer is also the likely cause of the physiological changes in this mutant. In contrast, the PsaB-branch mutant showed only minor changes in its physiological and spectroscopic properties. Because the environments of eC-A3 and eC-B3 are nearly identical, these results provide evidence for asymmetric electron-transfer activity primarily along the PsaA branch in cyanobacterial PS I.

摘要

光系统I(PS I)的X射线晶体结构显示,六个叶绿素a分子(三对)、两个叶醌和一个[4Fe-4S]簇排列在两个伪C2对称分支中,这两个分支在P700特殊对处发散,并在多肽间FX簇处重新汇聚。目前,人们一致认为光诱导电子转移通过PsaA分支进行,但关于PsaB分支是否活跃以及活跃程度存在相互矛盾的证据。通过将为eC-A3和eC-B3叶绿素的Mg2+提供轴向配体的Met688(PsaA)和Met668(PsaB)替换为亮氨酸,在蓝藻PS I中解决了这个问题。该实验的前提是,配体的改变或去除应改变A0-/A0氧化还原对的中点电位,从而导致从A0-到A1的正向电子转移动力学发生变化。与野生型相比,PsaA分支突变体表现出:(i)生长速率较慢、光敏感性较高且PS I含量减少;(ii)室温下从P700到FA/FB铁硫簇的电子转移产率降低;(iii)由于P700(+)A0-重组导致3P700三重态的形成增加;(iv)连续自由基对状态P700(+)A1-和P700(+)FX-的极化模式的强度和形状发生变化。后一种变化与温度有关,在298 K时最为明显。这些结果被解释为是由于A0结合位点的无序,这导致了辅因子PsaA分支中A0-寿命的分布。这使得在自由基对P700(+)A0-的寿命期间单重态-三重态混合程度更高,从而改变了P700(+)A1-和P700(+)FX-的极化模式。较低的电子转移量子产率也可能是该突变体生理变化的原因。相比之下,PsaB分支突变体在其生理和光谱性质上仅表现出微小变化。由于eC-A3和eC-B3的环境几乎相同,这些结果为蓝藻PS I中主要沿PsaA分支的不对称电子转移活性提供了证据。

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