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首页> 外文期刊>European Biophysics Journal >MECHANISMS OF HYDRATION EFFECTS ON THE STRUCTURAL DYNAMIC AND FUNCTIONAL CHARACTERISTICS OF PHOTOSYNTHETIC MEMBRANES IN VARIOUS PURPLE BACTERIA
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MECHANISMS OF HYDRATION EFFECTS ON THE STRUCTURAL DYNAMIC AND FUNCTIONAL CHARACTERISTICS OF PHOTOSYNTHETIC MEMBRANES IN VARIOUS PURPLE BACTERIA

机译:水化作用对各种紫色细菌光合膜结构动态和功能特性的影响机理

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NMR spectra and T-1, T-2 relaxation times for H-1, C-13 and P-31 nuclei in membranes of R. rubrum and Rb. sphaeroides recorded at different relative humidity, as well as hydration curves and electron transfer efficiency of these membranes and membranes of E. shaposhnikovii, reveal complicated relations between structural-dynamic and functional characteristics. A number of sites of the electron transfer chain are shown to be under the control of structural-dynamic mechanisms. Different parameters characterizing these membranes at low humidity and during hydration have been established. These findings and analysis of the data from model systems reveal four different stages of hydration. Each of them is associated with specific changes in structure, dynamics, and function of photosynthetic membranes and their components. In the first stage the hydration of some polar groups leads to local changes in the dynamics of the protein component and this influences the recombination between photoactive pigment P and intermediate acceptor Q(A). The second stage is induced by incorporation of water molecules into the hydrogen bonds between the polar head groups of the lipids and within macromolecules. This results in changes of the dynamics of the membranes, the efficiency of the electron transfer between the quinones and the efficiency of photooxidation of cytochrome c. In the third stage all polar groups are hydrated owing to the appearance of free water with a high dielectric constant. This makes possible lateral mobility of membrane components and changes in distances between the interacting macromolecular components. Therefore, the regulation of photosynthetic processes can be mediated with the participation of mobile carriers. Finally, in the fourth stage, complete humidification provides conditions for regulation of photosynthesis at the cell level. The mechanisms influencing these processes and the efficiency and regulation of electron transfer in various parts of the photosynthetic chain are discussed. [References: 61]
机译:R. rubrum和Rb膜中H-1,C-13和P-31核的NMR光谱和T-1,T-2弛豫时间。在不同的相对湿度下记录的红景天球菌,以及这些膜和大肠埃希菌的膜的水合曲线和电子转移效率,揭示了结构动力学和功能特性之间的复杂关系。电子转移链的许多位点显示在结构动力学机制的控制下。已经建立了在低湿度和水合过程中表征这些膜的不同参数。这些发现和对模型系统数据的分析揭示了水合作用的四个不同阶段。它们中的每一个都与光合膜及其成分的结构,动力学和功能的特定变化有关。在第一阶段,一些极性基团的水合导致蛋白质组分动力学的局部变化,这影响了光敏颜料P和中间受体Q(A)之间的重组。通过将水分子掺入脂质的极性头基之间和大分子内的氢键中来诱导第二阶段。这导致膜动力学的变化,醌之间电子转移的效率以及细胞色素c的光氧化效率的变化。在第三阶段,由于出现了具有高介电常数的游离水,所有极性基团都被水合。这使得膜组分的横向移动性和相互作用的大分子组分之间的距离变化成为可能。因此,光合作用的调节可以在移动载体的参与下进行。最后,在第四阶段,完全加湿为细胞水平的光合作用调节提供了条件。讨论了影响这些过程的机制以及光合作用链各个部分中电子转移的效率和调节。 [参考:61]

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