TOTO-DNA体系中发色团偶极子的取向。

J M Schins, A Agronskaia, B G de Grooth, J Greve
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引用次数: 0

摘要

背景:由于花青素发色团如TOTO(噻唑橙同二聚体)具有优异的染色特性,流式细胞术已成功应用于中至大尺寸DNA分子的染色(Petty等人:Anal Chem 67:1755-1761, 1995)。用于将样品分子聚焦在一个小的激光照射体积内的流体动力流也负责它们的排列,从而可以确定toto偶极子相对于DNA轴的方向(Agronskaia等人:applied Opt 38:714- 719,1999)。方法:采用高数值孔径的流式细胞仪对toto染色DNA的荧光量进行模型计算。这些模型考虑了发色团偶极子的不同取向。结果:测量和计算的比较表明,TOTO分子的吸收偶极子与DNA分子螺旋轴的平均夹角为61度。这个平均角度可以是两种结合模式的结果。结论:我们的结果表明,任何具有垂直取向发色团显著贡献的模型都无法再现实验结果。
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Orientation of the chromophore dipoles in the TOTO-DNA system.

Background: Flow cytometry has been applied successfully to the sizing of medium to large-sized DNA molecules, thanks to the excellent staining properties of cyanine chromophores such as TOTO (homodimer of thiazole orange) (Petty et al.: Anal Chem 67:1755-1761, 1995). The hydrodynamic flow, used to focus the sample molecules in a small laser-illuminated volume, is also responsible for their alignment, thereby allowing the determination of the TOTO-dipole orientation with respect to the DNA axis (Agronskaia et al.: Appl Opt 38:714-719, 1999).

Methods: We present model calculations of the fluorescence yield of TOTO-stained DNA measured in a flow-cytometric setup with high numerical aperture. The models consider different orientations of the chromophore dipoles.

Results: Comparison of measurement and calculation suggests that the absorption dipoles of the TOTO molecule make a mean angle of 61 degrees with the helix axis of the DNA molecule. This mean angle can be the consequence of two binding modes.

Conclusions: Our results indicate that any model with a significant contribution of perpendicularly-oriented chromophores fails to reproduce the experimental results.

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