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Change in Electronic Structure upon Optical Excitation of 8-Vinyladenosine:An Experimental and Theoretical Study

机译:8-Vinyladenosine的光激发后电子结构的变化:实验和理论研究

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8-Vinyladenosine (8VA) is an adenosine analog, like 2-aminopurine (2AP), that has a red-shifted absorption and high fluorescence quantum yield. When introduced into double-stranded DNA (dsDNA), its base-pairing and base-stacking properties are similar to those of adenine. Of particular interest, the fluorescence quantum yield of 8VA is sensitive to base stacking, making it a very useful real-time probe of DNA structure. The fundamental photophysics underlying this fluorescence quenching by base stacking is not well understood, and thus exploring the excited state electronic structure of the analog is warranted. In this study, we report on changes in the electronic structure of 8VA upon optical excitation. Stark spectroscopy was performed on 8VA monomer in frozen ethanol glass at 77 K to obtain the direction and degree of charge redistribution in the form of the difference dipole moment, Δμb01 ) 4.7 ( 0.3 D, and difference static polarizability, tr(ΔRf f 01) ) 21 ( 11 A~3, for the S_0-S_1 transition. In addition, solvatochromism experiments were performed on 8VA in various solvents and analyzed using Bakhshiev’s model. High level ab initio methods were employed to calculate transition energies, oscillator strengths, and dipole moments of the ground and excited states of 8VA. The direction of Δμb01 was assigned in the molecular frame for the lowest optically accessible state. Our study shows that the angle between ground and excited state dipole moment plays a critical role in understanding the change in electronic structure upon optical excitation. Compared to 2AP, 8VA has a larger difference dipole moment which, with twice the extinction coefficient, suggests that 8VA is superior as a two-photon probe for microscopy studies. To this end, we have measured the ratio of the two-photon fluorescence yields of the two analogs by excitation at the respective monomer absorption maxima. We show that 8VA is indeed a significantly brighter two-photon fluorophore, based on our experimental and computational results.
机译:8-Vinyladenosine(8VA)是一种腺苷类似物,如2-aminopurine(2AP),具有红移吸收和高荧光量子产率。当引入双链DNA(dsDNA)时,其碱基配对和碱基堆积特性与腺嘌呤相似。特别令人感兴趣的是,8VA的荧光量子产率对碱基堆积敏感,使其成为非常有用的DNA结构实时探针。人们尚不十分了解这种通过碱基堆积进行荧光猝灭的基本光物理性质,因此有必要探索类似物的激发态电子结构。在这项研究中,我们报告了8VA电子结构在光激发下的变化。对冷冻乙醇玻璃中的8VA单体在77 K的温度下进行Stark光谱分析,以差分偶极矩Δμb01)4.7(0.3 D)和静态极化率差tr(ΔRff 01)的形式获得电荷的重新分布方向和程度。 )21(11 A〜3,用于S_0-S_1跃迁。此外,对8VA在各种溶剂中进行了溶剂变色实验,并使用Bakhshiev模型进行了分析,并采用了高水平的从头算方法来计算跃迁能,振子强度和偶极子8VA的基态和激发态矩。Δμb01的方向在分子框架中分配为最低的光学可及态。我们的研究表明,基态和激发态偶极矩之间的夹角对于理解电子的变化起关键作用与2AP相比,8VA的偶极矩差更大,消光系数是其两倍,表明8VA优于2AP。用于显微镜研究的wo光子探针。为此,我们已经通过在各自的单体吸收最大值处激发来测量了两个类似物的双光子荧光产率的比率。根据我们的实验和计算结果,我们表明8VA确实是一种明显更亮的两光子荧光团。

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