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Simulation and Analysis of the Spectroscopic Properties of Oxyluciferin and Its Analogues in Water

机译:氧化梭素及其在水中类似物的光谱性能的模拟与分析

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摘要

Firefly bioluminescence is a quite efficient process largely used for numerous applications. However, some fundamental photochemical properties of the light emitter are still to be analyzed. Indeed, the light emitter, oxyluciferin, can be in six different forms due to interexchange reactions. In this work, we present the simulation of the absorption and emission spectra of the possible natural oxyluciferin forms in water and some of their analogues considering both the solvent/oxyluciferin interactions and the dynamical effects by using MD simulations and QM/MM methods. On the one hand, the absorption band shapes have been rationalized by analyzing the electronic nature of the transitions involved. On the other hand, the simulated and experimental emission spectra have been compared. In this case, an ultrafast excited state proton transfer (ESPT) occurs in oxyluciferin and its analogues, which impairs the detection of the emission from the protonated state by steady-state fluorescence spectroscopy. Transient absorption spectroscopy was used to evidence this ultrafast ESPT and rationalize the comparison between simulated and experimental steady-state emission spectra. Finally, this work shows the suitability of the studied oxyluciferin analogues to mimic the corresponding natural forms in water solution, as an elegant way to block the desired interexchange reactions allowing the study of each oxyluciferin form separately.
机译:萤火虫生物发光是一个非常有效的过程,主要用于众多应用。然而,仍然分析光发射器的一些基本光化学性质。实际上,由于选择性反应,光发射器奥氧甘蛋白可以是六种不同的形式。在这项工作中,我们介绍了可能的天然奥蛋白酶在水中的吸收和发射光谱的模拟,其中一些类似物通过使用MD模拟和QM / MM方法来考虑溶剂/奥酰胺素相互作用和动力学效果。一方面,通过分析所涉及的过渡的电子性质,吸收带形状已经合理化。另一方面,已经比较了模拟和实验发射光谱。在这种情况下,在奥氧基昔粒素及其类似物中发生超快激发态质子转移(ESPT),其通过稳态荧光光谱损害从质子化状态的发射检测。瞬态吸收光谱用于证据这一超快ESPT并合理化模拟和实验稳态发射光谱之间的比较。最后,这项工作表明,研究的奥克兰昔芬类似物以模拟水溶液中的相应天然形态的适用性,作为阻断所需的Interexchange反应的优雅方式,允许分别研究每个氧化梭素的形式。

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    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle UPEM MSME CNRS UMR 8208 5 Bd Descartes F-77454 Marne La Vallee France;

    Univ Strasbourg Inst Phys &

    Chim Mat Strasbourg CNRS UMR 7504 F-67034 Strasbourg France;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle UPEM MSME CNRS UMR 8208 5 Bd Descartes F-77454 Marne La Vallee France;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle UPEM MSME CNRS UMR 8208 5 Bd Descartes F-77454 Marne La Vallee France;

    Univ Strasbourg Inst Phys &

    Chim Mat Strasbourg CNRS UMR 7504 F-67034 Strasbourg France;

    Univ Strasbourg Inst Phys &

    Chim Mat Strasbourg CNRS UMR 7504 F-67034 Strasbourg France;

    Univ Strasbourg CNRS Lab Bioimagerie &

    Pathol UMR 7021 F-67034 Strasbourg France;

    Univ Strasbourg Inst Phys &

    Chim Mat Strasbourg CNRS UMR 7504 F-67034 Strasbourg France;

    Aix Marseille Univ CNRS Inst Chim Radicalaire F-13013 Marseille France;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle UPEM MSME CNRS UMR 8208 5 Bd Descartes F-77454 Marne La Vallee France;

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  • 正文语种 eng
  • 中图分类 化学键的量子力学理论;化学;
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