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Multiphoton excitation fluorescence correlation spectroscopy of fluorescent DNA base analogs

机译:荧光DNA碱基类似物的多光子激发荧光相关光谱

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Two- and three-photon excitation was used to investigate the properties of two fluorescent DNA base analogs: 2-aminopurine and 6-methylisoxanthopterin. 2-aminopurine is a widely used fluorescent analog of the DNA base adenine. Three-photon excitation of 2-aminopurine is achievable by using intense femtosecond laser pulses in 850-950 nm spectral region. Interestingly, the three-photon excitation spectrum is blue-shifted relative to the three-times-wavelength single-photon excitation spectrum. The maximum of the absorbance band in the UV is at 305 nm, while the three-photon excitation spectrum has a maximum at around 880 nm. Fluorescence correlation measurements were attempted to evaluate the feasibility of using three-photon excitation of 2-aminopurine for DNA-protein interaction studies. However, due to relatively small three-photon absorption cross-section, a good signal-to-noise fluorescence correlation curves take very long time to obtain. Fluorescence properties of 6-methylisoxanthopterin, the fluorescent analog of guanine, were investigated using two-photon excitation. This molecule has the lowest energy absorption band centered around 350 nm, thus, two-photon excitation is attainable using 700 to 760 nm output of Ti-sapphire laser. The excitation spectrum of this molecule in the infrared well matches the doubled-wavelength single-photon excitation spectrum in the UV. The high fluorescence quantum yield of 6-methylisoxanthopterin allows efficient fluorescence correlation measurements and makes this molecule a very good candidate for using in in vitro DNA-protein interaction studies.
机译:使用两和三光子激发来研究两个荧光DNA基础类似物的性质:2-氨基嘌呤和6-甲基异毒素。 2-氨基嘌呤是DNA碱腺嘌呤的广泛使用的荧光模。通过在850-950nm光谱区域中使用强烈的飞秒激光脉冲来实现2-氨基嘌呤的三光子激发。有趣的是,三光子激发光谱相对于三次波长单光子激发谱是蓝移位。 UV中的吸光度带的最大值是305nm,而三光子激励光谱的最大值在约880nm左右。荧光相关测量试图评估使用2-氨基嘌呤的三氨基激发进行DNA蛋白相互作用研究的可行性。然而,由于三光子吸收横截面相对较小,良好的信号 - 噪声荧光相关曲线需要很长时间才能获得。使用双光子激发研究了6-甲基异毒素,鸟嘌呤的荧光类似物的荧光性质。该分子具有约350nm的最低能量吸收带,因此,使用Ti-Sapphire激光器的700至760nm输出可实现双光子激发。在红外阱中该分子的激发谱匹配UV中的双波长单光子激发谱。高荧光量子产率为6-甲基甲酸基毒素允许有效的荧光相关测量,并使该分子成为在体外DNA蛋白相互作用研究中使用的非常好的候选者。

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