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Distinguishing Between Keto-Enol and Acid-Base Forms of Firefly Oxyluciferin Through Calculation of Excited-State Equilibrium Constants

机译:通过激发态平衡常数的计算来区分萤火虫的氧化荧光素的酮-烯醇和酸碱形式

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摘要

Although recent years have seen much progress in the elucidation of the mechanisms underlying the bioluminescence of fireflies, there is to date no consensus on the precise contributions to the light emission from the different possible forms of the chemiexcited oxyluciferin (OxyLH(2)) cofactor. Here, this problem is investigated by the calculation of excited-state equilibrium constants in aqueous solution for keto-enol and acid-base reactions connecting six neutral, monoanionic and dianionic forms of OxyLH(2). Particularly, rather than relying on the standard Forster equation and the associated assumption that entropic effects are negligible, these equilibrium constants are for the first time calculated in terms of excited-state free energies of a Born-Haber cycle. Performing quantum chemical calculations with density functional theory methods and using a hybrid cluster-continuum approach to describe solvent effects, a suitable protocol for the modeling is first defined from benchmark calculations on phenol. Applying this protocol to the various OxyLH(2) species and verifying that available experimental data (absorption shifts and ground-state equilibrium constants) are accurately reproduced, it is then found that the phenolate-keto-OxyLH(-) monoanion is intrinsically the preferred form of OxyLH(2) in the excited state, which suggests a potential key role for this species in the bioluminescence of fireflies.
机译:尽管近年来在阐明萤火虫生物发光的机理方面已经取得了很大进展,但迄今为止,关于化学激发的氧化荧光素(OxyLH(2))辅因子的不同可能形式对光发射的精确贡献尚无共识。在此,通过计算连接六种中性,单阴离子和双阴离子形式的OxyLH(2)的酮-烯醇和酸碱反应的水溶液的激发态平衡常数,来研究此问题。特别是,这些平衡常数不是依赖于标准的Forster方程和熵效应可以忽略的相关假设,而是首次根据Born-Haber循环的激发态自由能来计算。使用密度泛函理论方法进行量子化学计算,并使用混合簇连续谱方法描述溶剂效应,首先从苯酚的基准计算中定义了适合的建模协议。将该协议应用于各种OxyLH(2)物种,并验证可准确复制可用的实验数据(吸收位移和基态平衡常数),然后发现酚盐-酮基-OxyLH(-)单阴离子本质上是首选的形式的OxyLH(2)处于激发态,这表明该物种在萤火虫的生物发光中具有潜在的关键作用。

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    Falklöf, Olle; Durbeej, Bo;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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