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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Emission Properties of Oxyluciferin and Its Derivatives in Water: Revealing the Nature of the Emissive Species in Firefly Bioluminescence
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Emission Properties of Oxyluciferin and Its Derivatives in Water: Revealing the Nature of the Emissive Species in Firefly Bioluminescence

机译:氧化荧光素及其衍生物在水中的发射特性:揭示萤火虫生物发光中发射物种的性质

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The first systematic steady-state and time-resolved emission study of firefly oxyluciferin (emitter in firefly bioluminescence) and its analogues in aqueous buffers provided the individual emission spectra of all chemical forms of the emitter and the excited-state equilibrium constants in strongly polar environment with strong hydrogen bonding potential. The results confirmed the earlier hypothesis that excited-state proton transfer from the enol group is favored over proton transfer from the phenol group. In water, the phenol-keto form is the strongest photoacid among the isomers and its conjugate base (phenolate-keto) has the lowest emission energy (634 nm). Furthermore, for the first time we observed green emission (525 nm) from a neutral phenol-keto isomer constrained to the keto form by cyclopropyl substitution. The order of emission energies indicates that in aqueous solution a second deprotonation at the phenol group after the enol group had dissociated (that is, deprotonation of the phenol-enolate) does not occur in the first excited state. The pH-dependent emission spectra and the time-resolved fluorescence parameters revealed that the keto-enol tautomerism reaction, which can occur in a nonpolar environment (toluene) in the presence of a base, is not favored in water.
机译:萤火虫氧荧光素(萤火虫生物发光中的发射体)及其类似物在水缓冲液中的首次系统稳态和时间分辨发射研究提供了强极性环境中发射体所有化学形式的单独发射光谱和激发态平衡常数具有很强的氢键潜力。结果证实了较早的假设,即烯醇基团的激发态质子转移优于酚基团的质子转移。在水中,苯酚-酮形式是异构体中最强的光酸,其共轭碱(酚盐-酮)的发射能最低(634 nm)。此外,我们首次观察到中性酚-酮异构体的绿色发射(525 nm)被环丙基取代限制为酮形式。发射能的顺序表明,在水溶液中,在烯醇基团解离之后,在酚基团上的第二次去质子化(即,酚-烯酸酯的去质子化)在第一激发态下不会发生。 pH依赖的发射光谱和时间分辨的荧光参数表明,在碱的存在下,可在非极性环境(甲苯)中发生的酮-烯醇互变异构反应并不理想。

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