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Water-sensitive low-frequency vibrations of reaction intermediates during S-state cycling in photosynthetic water oxidation

机译:光合水氧化中S态循环期间反应中间体的水敏低频振动

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In photosynthetic water oxidation, two water molecules are converted to an oxygen molecule through five reaction intermediates, designated S-n (n = 0-4), at the catalytic Mn cluster of photosystem II. To understand the mechanism of water oxidation, changes in the chemical nature of the substrate water as well as the Mn cluster need to be defined during S-state cycling. Here, we report for the first time a complete set of Fourier transform infrared difference spectra during S-state cycling in the low-frequency (670-350 cm(-1)) region, in which interactions between the Mn cluster and its ligands can be detected directly, in PS 11 core particles from Thermosynechococcus elongatus. Furthermore, vibrations from oxygen and/or hydrogen derived from the substrate water and changes in them during S-state cycling were identified using multiplex isotope-labeled water, including (H2O)-O-18, (D2O)-O-16, and (D2O)-O-18. Each water isotope affected the low-frequency S-state cycling spectra, characteristically. The bands sensitive only to O-16/O-11 exchange were assigned to the modes from structures involving Mn and oxygen having no interactions with hydrogen, while the bands sensitive only to H/D exchange were assigned to modes from amino acid side chains and/or polypeptide backbones that associate with water hydrogen. The bands sensitive to both O-16/O-18 and H/D exchanges were attributed to the structure involving Mn and oxygen structurally coupled with hydrogen in a direct or an indirect manner through hydrogen bonds. These bands include the changes of intermediate species derived from substrate water during the process of photosynthetic water oxidation.
机译:在光合水氧化中,通过五个反应中间体将两个水分子转化为氧分子,在催化MN的照相系统II中指定S-N(n = 0-4)。为了了解水氧化机制,在S状态循环期间需要定义基材水的化学性质以及Mn簇的化学性质的变化。在这里,我们在低频(670-350cm(-1))区域的S状态循环期间,首次报告一整套傅里叶变换红外差异频谱,其中Mn簇与其配体之间的相互作用直接检测到PS 11核心颗粒来自ThermoXococcus Elongatus。此外,使用多重同位素标记的水鉴定来自底物水的氧气和/或氢的振动和在S状态循环期间的氢气,包括(H2O)-O-18,(D2O)-O-16,和(D2O)-O-18。每个水同位素的特征性地影响低频S状态循环光谱。仅敏感到O-16 / O-11交换的条带被分配给涉及Mn和氧没有与氢相互作用的结构的模式,而仅敏感到H / D交换的条带被分配给来自氨基酸侧链的模式和/或与水氢缔合的多肽骨干。对O-16 / O-18和H / D交换敏感的条带归因于涉及通过氢键直接或间接方式与氢结构耦合的Mn和氧的结构。这些带包括光合水氧化过程中衍生自基材水的中间物种的变化。

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