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溴化乙锭诱导超螺旋DNA构象变化以及苯并[a]芘二醇环氧化物非共价和共价结合的动力学流动二色性研究

Kinetic flow dichroism study of conformational changes in supercoiled DNA induced by ethidium bromide and noncovalent and covalent binding of benz[a]pyrene diol epoxide.

作者信息

Yoshida H, Swenberg C E, Geacintov N E

出版信息

Biochemistry. 1987 Mar 10;26(5):1351-8. doi: 10.1021/bi00379a022.

Abstract

The dynamic conformational changes due to the noncovalent intercalative binding of ethidium bromide and racemic trans-7,8-dihydroxy-anti-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene (BPDE), and the covalent binding of BPDE to supercoiled phi X174 DNA, have been studied by gel electrophoresis and a novel application of a kinetic flow linear dichroism technique. The magnitude of the linear dichroism (delta A) of the DNA oriented in the flow gradient is sensitive to the hydrodynamic shape of the DNA molecule which is affected by the binding of the drug or the carcinogen BPDE. While the linear dichroism of ethidium bromide supercoiled DNA is time independent, the delta A spectra of BPDE-DNA reaction mixtures vary on time scales of minutes, which correspond to the reaction rate constant of BPDE to form 7,8,9,10-tetrahydroxytetrahydrobenzo[a]pyrene hydrolysis products and covalent DNA adducts. The rapid noncovalent intercalation of BPDE causes an initial large increase in delta A (up to 250%, corresponding to the dichroism observed with relaxed circular DNA), followed by a slower decrease in the linear dichroism signal. This decrease in delta A is attributed to the removal of intercalated diol epoxide molecules and the resulting reversible increase in the number of superhelical turns. The kinetic flow dichroism spectra indicate that the noncovalent BPDE-DNA complexes are intercalative in nature, while the covalent adducts are characterized by a very different conformation in which the long axes of the pyrenyl residues are oriented at a large angle with respect to the average orientation of the planes of the DNA bases.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过凝胶电泳和动力学流动线性二色性技术的一种新应用,研究了溴化乙锭和外消旋反式-7,8-二羟基-反-9,10-环氧-7,8,9,10-四氢苯并[a]芘(BPDE)的非共价嵌入结合以及BPDE与超螺旋φX174 DNA的共价结合所引起的动态构象变化。在流动梯度中取向的DNA的线性二色性(δA)大小对DNA分子的流体动力学形状敏感,而该形状会受到药物或致癌物BPDE结合的影响。虽然溴化乙锭超螺旋DNA的线性二色性与时间无关,但BPDE-DNA反应混合物的δA光谱在几分钟的时间尺度上变化,这对应于BPDE形成7,8,9,10-四羟基四氢苯并[a]芘水解产物和共价DNA加合物的反应速率常数。BPDE的快速非共价嵌入导致δA最初大幅增加(高达250%,对应于松弛环状DNA所观察到的二色性),随后线性二色性信号缓慢下降。δA的这种下降归因于嵌入的二醇环氧化物分子的去除以及超螺旋匝数的可逆增加。动力学流动二色性光谱表明,非共价BPDE-DNA复合物本质上是嵌入性的,而共价加合物的特征是一种非常不同的构象,其中芘基残基的长轴相对于DNA碱基平面的平均取向成大角度取向。(摘要截短于250字)

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