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pH调节球形红细菌光合反应中心在中性和电荷分离状态下醌的位置。

pH modulates the quinone position in the photosynthetic reaction center from Rhodobacter sphaeroides in the neutral and charge separated states.

作者信息

Koepke Juergen, Krammer Eva-Maria, Klingen Astrid R, Sebban Pierre, Ullmann G Matthias, Fritzsch Günter

机构信息

Max Planck Institute of Biophysics, Department of Molecular Membrane Biology, Max-von-Laue Strasse 3, D-60438 Frankfurt/Main, Germany.

出版信息

J Mol Biol. 2007 Aug 10;371(2):396-409. doi: 10.1016/j.jmb.2007.04.082. Epub 2007 May 10.

Abstract

The structure of the photosynthetic reaction-center from Rhodobacter sphaeroides has been determined at four different pH values (6.5, 8.0, 9.0, 10.0) in the neutral and in charge separated states. At pH 8.0, in the neutral state, we obtain a resolution of 1.87 A, which is the best ever reported for the bacterial reaction center protein. Our crystallographic data confirm the existence of two different binding positions of the secondary quinone (QB). We observe a new orientation of QB in its distal position, which shows no ring-flip compared to the orientation in the proximal position. Datasets collected for the different pH values show a pH-dependence of the population of the proximal position. The new orientation of QB in the distal position and the pH-dependence could be confirmed by continuum electrostatics calculations. Our calculations are in agreement with the experimentally observed proton uptake upon charge separation. The high resolution of our crystallographic data allows us to identify new water molecules and external residues being involved in two previously described hydrogen bond proton channels. These extended proton-transfer pathways, ending at either of the two oxo-groups of QB in its proximal position, provide additional evidence that ring-flipping is not required for complete protonation of QB upon reduction.

摘要

已在中性和电荷分离状态下,于四个不同pH值(6.5、8.0、9.0、10.0)测定了球形红杆菌光合反应中心的结构。在pH 8.0的中性状态下,我们获得了1.87 Å的分辨率,这是细菌反应中心蛋白迄今报道的最佳分辨率。我们的晶体学数据证实了次级醌(QB)存在两个不同的结合位置。我们观察到QB在其远端位置有一个新的取向,与近端位置的取向相比,没有发生环翻转。针对不同pH值收集的数据集显示近端位置的占据情况存在pH依赖性。QB在远端位置的新取向和pH依赖性可通过连续介质静电计算得到证实。我们的计算与电荷分离时实验观察到的质子摄取情况一致。我们晶体学数据的高分辨率使我们能够识别参与两个先前描述的氢键质子通道的新水分子和外部残基。这些延伸的质子转移途径,在近端位置的QB的两个氧代基团中的任何一个处终止,提供了额外的证据,表明还原时QB完全质子化不需要环翻转。

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