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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >The Structure and Function of Quinones in Biological Solar Energy Transduction: A Cyclic Voltammetry, EPR, and Hyperfine Sub-Level Correlation (HYSCORE) Spectroscopy Study of Model Naphthoquinones
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The Structure and Function of Quinones in Biological Solar Energy Transduction: A Cyclic Voltammetry, EPR, and Hyperfine Sub-Level Correlation (HYSCORE) Spectroscopy Study of Model Naphthoquinones

机译:醌在生物太阳能转换中的结构和功能:循环伏安法,EPR和模型萘醌的超细亚水平相关(HYSCORE)光谱研究

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摘要

Quinones function as electron transport cofactors in photosynthesis and cellular respiration. The versatility and functional diversity of quinones is primarily due to the diverse midpoint potentials that are tuned by the substituent effects and interactions with surrounding amino acid residues in the binding site in the protein. In the present study, a library of substituted 1,4-naphthoquinones are analyzed by cyclic voltammetry in both protic and aprotic solvents to determine effects of substituent groups and hydrogen bonds on the midpoint potential. We use continuous-wave electron paramagnetic resonance (EPR) spectroscopy to determine the influence of substituent groups on the electronic properties of the 1,4-naphthoquinone models in an aprotic solvent. The results establish a correlation between the presence of substituent group(s) and the modification of electronic properties and a corresponding shift in the midpoint potential of the naphthoquinone models. Further, we use pulsed EPR spectroscopy to determine the effect of substituent groups on the strength and planarity of the hydrogen bonds of naphthoquinone models in a protic solvent. This study provides support for the tuning of the electronic properties of quinone cofactors by the influence of substituent groups and hydrogen bonding interactions.
机译:醌在光合作用和细胞呼吸中起电子转运辅助因子的作用。醌的多功能性和功能多样性主要归因于中点电势的多样性,该中点电势由取代基效应以及与蛋白质结合位点中周围氨基酸残基的相互作用所调节。在本研究中,在质子传递和非质子传递溶剂中,通过循环伏安法分析取代的1,4-萘醌文库,以确定取代基和氢键对中点电势的影响。我们使用连续波电子顺磁共振(EPR)光谱确定非质子溶剂中取代基对1,4-萘醌模型电子性能的影响。结果建立了一个或多个取代基的存在与电子性质的修饰以及萘醌模型中点电势的相应变化之间的相关性。此外,我们使用脉冲EPR光谱确定质子溶剂中取代基对萘醌模型氢键强度和平面度的影响。这项研究为通过取代基和氢键相互作用影响醌辅因子的电子性质提供了支持。

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