Aird A, Wrachtrup J, Schulten K, Tietz C
Institute of Physics, University of Stuttgart, Stuttgart, Germany.
Biophys J. 2007 Jan 1;92(1):23-33. doi: 10.1529/biophysj.106.084715. Epub 2006 Oct 6.
In the last decade, the structures of many components of the photosynthetic apparatus of purple bacteria, as well as the mutual organization of these components within the purple membrane, were resolved. One key question that emerged concerned the assembly of the core complex consisting of the reaction center (RC) and the light-harvesting 1 (LH1) complex. In some species, like Rhodobacter sphaeroides, the ring-shaped LH1 complex was found to be open, whereas other species, like Rhodospirillum rubrum, have a closed ring surrounding the reaction center. This poses the question of how the ubiquinone molecule that transports electrons and protons from the RC to the cytochrome bc(1) complex overcomes the apparent barrier of the LH1 ring. In this study, we investigated how, in the case of a closed LH1 ring, the ubiquinone molecule diffuses through the LH1 ring. For this purpose, the LH1 structure of R. rubrum was modeled and the potential of mean force along the diffusion pathway through the LH1 was determined by steered molecular-dynamics simulations. The potential was reconstructed using the fluctuation theorem in combination with the stiff spring approximation. An upper limit for the mean first-passage time for diffusion of ubiquinone through the LH1 ring, based on a worst-case scenario potential, was calculated as approximately 8 x 10(-3) s, which is still in agreement with known turnover rates of RC and RC-LH1 complexes in the range of approximately 1000 Hz.
在过去十年中,紫色细菌光合装置的许多组件的结构以及这些组件在紫色膜内的相互组织方式已得到解析。由此出现的一个关键问题涉及由反应中心(RC)和光捕获1(LH1)复合物组成的核心复合物的组装。在某些物种中,如球形红杆菌,发现环形LH1复合物是开放的,而其他物种,如深红红螺菌,则有一个围绕反应中心的封闭环。这就提出了一个问题,即从RC向细胞色素bc(1)复合物转运电子和质子的泛醌分子如何克服LH1环的明显屏障。在本研究中,我们研究了在封闭的LH1环的情况下,泛醌分子如何通过LH1环扩散。为此,对深红红螺菌的LH1结构进行了建模,并通过引导分子动力学模拟确定了沿通过LH1的扩散途径的平均力势。利用涨落定理结合刚性弹簧近似重建了该势。基于最坏情况势计算出泛醌通过LH1环扩散的平均首次通过时间的上限约为8×10(-3) s,这仍然与已知的RC和RC-LH1复合物在约1000 Hz范围内的周转速率一致。