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超螺旋DNA中化学和酶促切割频率的分析

Analysis of chemical and enzymatic cleavage frequencies in supercoiled DNA.

作者信息

Tsen Hua, Levene Stephen D

机构信息

Institute of Biomedical Sciences and Technology and Department of Molecular and Cell Biology, University of Texas at Dallas, PO Box 830688, Richardson, TX 75083, USA.

出版信息

J Mol Biol. 2004 Mar 5;336(5):1087-102. doi: 10.1016/j.jmb.2003.12.079.

Abstract

Chemical and enzymatic probing methods are powerful techniques for examining details of sequence-dependent structure in DNA and RNA. Reagents that cleave nucleic acid molecules in a structure-specific, but relatively sequence-non-specific manner, such as hydroxyl radical or DNase I, have been used widely to probe helical geometry in nucleic acid structures, nucleic acid-drug complexes, and in nucleoprotein assemblies. Application of cleavage-based techniques to structures present in superhelical DNA has been hindered by the fact that the cleavage pattern attributable to supercoiling-dependent structures is heavily mixed with non-specific cleavage signals that are inevitable products of multiple cleavage events. We present a rigorous mathematical procedure for extracting the cleavage pattern specific to supercoiled DNA and use this method to investigate the hydroxyl radical cleavage pattern in a cruciform DNA structure formed by a 60 bp inverted repeat sequence embedded in a negatively supercoiled plasmid. Our results support the presence of a stem-loop structure in the expected location and suggest that the helical geometry of the cruciform stem differs from that of the normal duplex form.

摘要

化学和酶促探测方法是用于研究DNA和RNA中序列依赖性结构细节的强大技术。以结构特异性但相对序列非特异性的方式切割核酸分子的试剂,如羟基自由基或DNase I,已被广泛用于探测核酸结构、核酸-药物复合物和核蛋白组装体中的螺旋几何形状。基于切割的技术在超螺旋DNA结构中的应用受到阻碍,因为超螺旋依赖性结构的切割模式与多切割事件不可避免产生的非特异性切割信号严重混合。我们提出了一种严格的数学程序来提取超螺旋DNA特有的切割模式,并使用该方法研究嵌入负超螺旋质粒中的60 bp反向重复序列形成的十字形DNA结构中的羟基自由基切割模式。我们的结果支持在预期位置存在茎环结构,并表明十字形茎的螺旋几何形状与正常双链形式不同。

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