Two-photon excitation two-dimensional fluorescence spectroscopy (2PE-2DFS) of the fluorescent nucleobase 6-MI.

Claire S Albrecht, Lawrence F Scatena, Peter H von Hippel, Andrew H Marcus
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Abstract

Base stacking is fundamentally important to the stability of double-stranded DNA. However, few experiments can directly probe the local conformations and conformational fluctuations of the DNA bases. Here we report a new spectroscopic approach to study the local conformations of DNA bases using the UV-absorbing fluorescent guanine analogue, 6-methyl isoxanthopterin (6-MI), which can be used as a site-specific probe to label DNA. In these experiments, we apply a two-photon excitation (2PE) approach to two-dimensional fluorescence spectroscopy (2DFS), which is a fluorescence-detected nonlinear Fourier transform spectroscopy. In 2DFS, a repeating sequence of four collinear laser pulses (with center wavelength ~ 675 nm and relative phases swept at radio frequencies) is used to excite the lowest energy electronic-vibrational (vibronic) transitions of 6-MI (with center wavelength ~ 340 nm). The ensuing low flux fluorescence is phase-synchronously detected at the level of individual photons and as a function of inter-pulse delay. The 2PE transition pathways that give rise to electronically excited state populations include optical coherences between electronic ground and excited states and non-resonant (one-photon-excited) virtual states. Our results indicate that 2PE-2DFS experiments can provide information about the electronic-vibrational spectrum of the 6-MI monomer, in addition to the conformation-dependent exciton coupling between adjacent 6-MI monomers within a (6-MI)2 dimer. In principle, this approach can be used to determine the local base-stacking conformations of (6-MI)2 dimer-substituted DNA constructs.

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荧光核碱基 6-MI 的双光子激发二维荧光光谱(2PE-2DFS)。
碱基堆叠对双链 DNA 的稳定性至关重要。然而,很少有实验能直接探测 DNA 碱基的局部构象和构象波动。在这里,我们报告了一种利用紫外吸收荧光鸟嘌呤类似物 6-甲基异黄蝶呤(6-MI)来研究 DNA 碱基局部构象的新光谱方法,6-甲基异黄蝶呤可用作标记 DNA 的位点特异性探针。在这些实验中,我们将双光子激发(2PE)方法应用于二维荧光光谱学(2DFS),这是一种荧光检测的非线性傅立叶变换光谱学。在二维荧光光谱仪中,使用四个共线激光脉冲(中心波长约为 675 纳米,相对相位以无线电频率扫频)的重复序列来激发 6-MI 的最低能量电子振子跃迁(中心波长约为 340 纳米)。随后产生的低通量荧光可在单个光子水平上进行相位同步检测,并作为脉冲间延迟的函数。产生电子激发态群的 2PE 过渡途径包括电子基态和激发态之间的光学相干以及非共振(单光子激发)虚态。我们的研究结果表明,除了 (6-MI)2 二聚体中相邻 6-MI 单体之间随构象变化的激子耦合外,2PE-2DFS 实验还能提供有关 6-MI 单体电子振荡谱的信息。原则上,这种方法可用于确定 (6-MI)2 二聚体取代 DNA 构建物的局部碱基堆叠构象。
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