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Pulse Electron Paramagnetic Resonance Studies of the Interaction of Methanol with the S2 State of the Mn4O5Ca Cluster of Photosystem II

机译:甲醇与光系统Mn4O5Ca团簇的S2状态相互作用的脉冲电子顺磁共振研究

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摘要

The binding of the substrate analogue methanol to the catalytic Mn4CaO5 cluster of the water-oxidizing enzyme photosystem II is known to alter the electronic structure properties of the oxygen-evolving complex without retarding O2-evolution under steady-state illumination conditions. We report the binding mode of 13C-labeled methanol determined using 9.4 GHz (X-band) hyperfine sublevel-correlation (HYSCORE) and 34 GHz (Q-band) electron spin–echo electron nuclear double resonance (ESE-ENDOR) spectroscopies. These results are compared to analogous experiments on a mixed-valence Mn(III)Mn(IV) complex (2-OH-3,5-Cl2-salpn)2Mn(III)Mn-(IV) (salpn = N,N′-bis(3,5-dichlorosalicylidene)-1,3-diamino-2-hydrox-ypropane) in which methanol ligates to the Mn(III) ion (Larson et al. (1992) J. Am. Chem. Soc., 114, 6263). In the mixed-valence Mn(III,IV) complex, the hyperfine coupling to the 13C of the bound methanol (Aiso = 0.65 MHz, T = 1.25 MHz) is appreciably larger than that observed for 13C methanol associated with the Mn4CaO5 cluster poised in the S2 state, where only a weak dipolar hyperfine interaction (Aiso = 0.05 MHz, T = 0.27 MHz) is observed. An evaluation of the 13C hyperfine interaction using the X-ray structure coordinates of the Mn4CaO5 cluster indicates that methanol does not bind as a terminal ligand to any of the manganese ions in the oxygen-evolving complex. We favor methanol binding in place of a water ligand to the Ca2+ in the Mn4CaO5 cluster or in place of one of the waters that form hydrogen bonds with the oxygen bridges of the cluster.
机译:已知底物类似物甲醇与水氧化酶光系统II的催化Mn4CaO5团簇的结合可改变析氧复合物的电子结构性质,而不会在稳态照明条件下延迟O2的释放。我们报告了使用9.4 GHz(X波段)超精细次相关(HYSCORE)和34 GHz(Q波段)电子自旋回波电子核双共振测定的 13 C标记的甲醇的结合模式(ESE-ENDOR)光谱学。将这些结果与混合价Mn(III)Mn(IV)配合物(2-OH-3,5-Cl2-salpn)2Mn(III)Mn-(IV)(salpn = N,N' -双(3,5-二氯水杨基亚基)-1,3-二氨基-2-羟基-丙烷,其中甲醇与Mn(III)离子连接(Larson等(1992)J.Am.Chem.Soc。 114,6263)。在混合价Mn(III,IV)络合物中,与键合甲醇的 13 C的超精细偶联(Aiso = 0.65 MHz,T = 1.25 MHz)比在<与S4状态下的Mn4CaO5团簇相关的sup> 13 C甲醇,其中仅观察到弱的偶极超精细相互作用(Aiso = 0.05 MHz,T = 0.27 MHz)。使用Mn4CaO5团簇的X射线结构坐标评估 13 C超精细相互作用,结果表明,甲醇没有作为末端配体与放氧复合物中的任何锰离子结合。我们主张用甲醇代替Mn4CaO5簇中Ca 2 + 的水配体,或代替与簇的氧桥形成氢键的水之一。

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