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Theoretical Study of the Nontraditional Enol-Based Photoacidity of Firefly Oxyluciferin

机译:萤火虫氧化荧光素非传统基于烯醇的光酸度的理论研究

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摘要

A theoretical analysis of the enol-based photoacidity of oxyluciferin in water is presented. The basis for this phenomenon is found to be the hydrogen-bonding network that involves the conjugated photobase of oxyluciferin. The hydrogen-bonding network involving the enolate thiazole moiety is stronger than that of the benzothiazole phenolate moiety. Therefore, enolate oxyluciferin should be stabilized versus the phenolate anion. This difference in strength is attributed to the fact that the thiazole moiety has more potential hydrogen-bond acceptors near the proton donor atom than the benzothiazole moiety. Moreover, the phenol-based excited-state proton transfer leads to a decrease in the hydrogen-bond acceptor potential of the thiazole atoms. The ground-state enol-based acidity of oxyluciferin is also studied. This phenomenon can be explained by stabilization of the enolate anion through strengthening of a bond between water and the nitrogen atom of the thiazole ring, in an enol-based proton-transfer-dependent way.
机译:提出了基于理论的水中氧化荧光素基于烯醇的光酸性。发现该现象的基础是氢键网络,该网络涉及氧荧光素的共轭光碱。涉及烯醇盐噻唑部分的氢键网络比苯并噻唑酚盐部分的氢键网络强。因此,与酚酸根阴离子相比,烯醇酸氧化荧光素应稳定。强度上的这种差异归因于以下事实:噻唑部分在质子供体原子附近比苯并噻唑部分具有更多潜在的氢键受体。此外,基于酚的激发态质子转移导致噻唑原子的氢键受体电势降低。还研究了氧化荧光素的基态基于烯醇的酸度。这种现象可以通过以烯醇为基础的质子转移依赖性方式通过增强水与噻唑环的氮原子之间的键来稳定烯酸酯阴离子来解释。

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