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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Theoretical photodynamic study of the photoprotolytic cycle of firefly oxyluciferin
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Theoretical photodynamic study of the photoprotolytic cycle of firefly oxyluciferin

机译:萤火虫氧荧光素光蛋白水解循环的理论光动力学研究

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摘要

Firefly oxyluciferin presents a pH-sensitive fluorescence in aqueous solutions. Its fluorescence spectra are composed of two green peaks at different pH values, despite the enolate anion being the only emitter. A computational approach was used to further elucidate the photoprotolytic cycle of oxyluciferin and investigate its pH sensitivity. It was found that oxyluciferin forms π-π stacking complexes both in the ground and excited states, at basic and acidiceutral pH. However, at different pH values, these complexes adopt a different conformation, which explains the lower energy of the emission at acidiceutral pH, in comparison with the emission at basic pH. A pH-sensitive fluorophore: Different conformations of the π-π stacking complex of the excited-state enolate species of firefly oxyluciferin lead to pH-sensitive fluorescence. This means that the enolate anion possesses different emission energies at acidiceutral and basic pH.
机译:萤火虫的萤光素在水溶液中呈现出对pH敏感的荧光。尽管烯醇酸根阴离子是唯一的发射体,但其荧光光谱由两个在不同pH值下的绿色峰组成。使用一种计算方法进一步阐明了氧化荧光素的光蛋白水解循环并研究了其pH敏感性。发现在碱性和酸性/中性pH下,氧化荧光素在基态和激发态均形成π-π堆积复合物。但是,在不同的pH值下,这些配合物采用不同的构象,这说明了与碱性pH相比,在酸性/中性pH下的发射能量较低。 pH敏感的荧光团:萤火虫氧荧光素的激发态烯醇盐物种的π-π堆积复合物的不同构象导致pH敏感的荧光。这意味着烯酸根阴离子在酸性/中性和碱性pH值下具有不同的发射能。

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