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纳米胶束体系和DNA中吖啶橙的荧光弛豫动力学

Fluorescence relaxation dynamics of acridine orange in nanosized micellar systems and DNA.

作者信息

Shaw Ajay Kumar, Pal Samir Kumar

机构信息

Unit for Nanoscience and Technology, Department of Chemical, Biological, and Macromolecular Sciences, Satyendra Nath Bose National Centre for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700 098, India.

出版信息

J Phys Chem B. 2007 Apr 26;111(16):4189-99. doi: 10.1021/jp067156r. Epub 2007 Mar 30.

Abstract

In this paper, we report a detailed study of the fluorescence relaxation dynamics of a well-known fluorescent DNA intercalator, acridine orange (AO), in reverse micelles (RM), micelles, and DNA using picosecond resolved fluorescence spectroscopy. Solvation studies of AO in AOT reverse micelles (RM) containing water indicate the locations of AO close to the interface and those in RM containing NaOH; there are two types of AO--one in the nonpolar oil phase and the other at the interface. The bound water at the reverse micellar interface is found to be much more rigid than that at the micellar interface of sodium dodecyl sulfate (SDS) micelles. Dynamic light scattering (DLS) studies allow for the determination of the hydrodynamic radius and the overall tumbling motion of the macromolecules. Wobbling-in-cone data analysis of the temporal fluorescence anisotropy decay allows for determination of restriction on the motion of fluorophores attached to the macromolecules. This model further applied to AO-intercalated genomic DNA and synthetic oligonucleotides within their structural integrity (as confirmed through circular dichroism (CD) studies) shows that AO experiences less restriction in genomic salmon sperm DNA compared with that in synthetic oligonucleotides, and among the oligonucleotides, the ones with AT base pairs are much more rigid. This study would invoke further research on the dynamical nature of AO in restricted environments.

摘要

在本文中,我们使用皮秒分辨荧光光谱法详细研究了一种著名的荧光DNA嵌入剂吖啶橙(AO)在反胶束(RM)、胶束和DNA中的荧光弛豫动力学。对含AOT反胶束(RM)中水的AO的溶剂化研究表明,AO在靠近界面处的位置以及在含NaOH的RM中的位置;有两种类型的AO——一种在非极性油相中,另一种在界面处。发现反胶束界面处的结合水比十二烷基硫酸钠(SDS)胶束的胶束界面处的结合水刚性大得多。动态光散射(DLS)研究有助于确定大分子的流体动力学半径和整体翻滚运动。对时间荧光各向异性衰减的锥内摆动数据分析有助于确定对连接到大分子上的荧光团运动的限制。该模型进一步应用于结构完整的AO嵌入的基因组DNA和合成寡核苷酸(通过圆二色性(CD)研究证实),结果表明,与合成寡核苷酸相比,AO在基因组鲑鱼精子DNA中受到的限制较小,并且在寡核苷酸中,具有AT碱基对的寡核苷酸刚性更强。这项研究将引发对受限环境中AO动力学性质的进一步研究。

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