首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Simulations of the H-1 electron spin echo-electron nuclear double resonance and H-2 electron spin echo envelope modulation spectra of exchangeable hydrogen nuclei coupled to the S-2-state photosystem II manganese cluster
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Simulations of the H-1 electron spin echo-electron nuclear double resonance and H-2 electron spin echo envelope modulation spectra of exchangeable hydrogen nuclei coupled to the S-2-state photosystem II manganese cluster

机译:S-2态光系统II锰簇耦合的可交换氢核的H-1电子自旋回波-电子核双共振和H-2电子自旋回波包络调制谱的模拟

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The pulsed EPR methods of electron spin echo envelope modulation (ESEEM) and electron spin echoelectron nuclear double resonance (ESE-ENDOR) are used to investigate the proximity of exchangeable hydrogens around the paramagnetic S-2-state Mn cluster of the photosystem II oxygen-evolving complex. Although ESEEM and ESE-ENDOR are both pulsed electron paramagnetic resonance techniques, the specific mechanisms by which nuclear spin transitions are observed are quite different. We are able to generate good simulations of both H-1 ESE-ENDOR and H-2 ESEEM signatures of exchangeable hydrogens at the S-2-state cluster. The convergence of simulation parameters for both methods provides a high degree of confidence in the simulations. Several exchangeable protons-deuterons with strong dipolar couplings are observed. In the simulations, two of the close (approximate to2.5 Angstrom) hydrogen nuclei exhibit strong isotropic couplings and are therefore most probably associated with direct substrate ligation to paramagnetic Mn. Another two of the close (approximate to2.7 Angstrom) hydrogen nuclei show no isotropic couplings and are therefore most probably not contained in Mn ligands. We suggest that these proximal hydrogens may be associated with a Ca2+-bound substrate, as indicated in recent mechanistic proposals for O-2 formation. [References: 25]
机译:电子自旋回波包络调制(ESEEM)和电子自旋回波电子核双共振(ESE-ENDOR)的脉冲EPR方法用于研究光系统II氧-的顺磁性S-2-态Mn团簇周围可交换氢的接近程度不断发展的复杂。尽管ESEEM和ESE-ENDOR都是脉冲电子顺磁共振技术,但观察到核自旋跃迁的具体机制却大不相同。我们能够对S-2状态簇上可交换氢的H-1 ESE-ENDOR和H-2 ESEEM签名生成良好的模拟。两种方法的仿真参数的收敛性为仿真提供了高度的信心。观察到几个具有强偶极耦合的可交换质子-氘核。在模拟中,两个紧密的(大约2.5埃)氢原子核表现出强的各向同性耦合,因此很可能与底物直接连接到顺磁性Mn有关。闭合氢原子核中的另外两个(约2.7埃)没有各向同性偶合,因此很可能不包含在Mn配体中。我们建议这些近端氢可能与Ca2 +结合的底物有关,如最近关于O-2形成的机械提议所指出的。 [参考:25]

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