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探讨阳离子生物光敏剂与 DNA 的结合相互作用的强度、模式、动力学和反应动力学:通过去污剂隔离来解离药物-DNA 复合物的意义。

Exploring the strength, mode, dynamics, and kinetics of binding interaction of a cationic biological photosensitizer with DNA: implication on dissociation of the drug-DNA complex via detergent sequestration.

机构信息

Department of Chemistry, University of Calcutta, 92 A. P. C. Road, Calcutta-700009, India.

出版信息

J Phys Chem B. 2011 Oct 20;115(41):11938-49. doi: 10.1021/jp206589e. Epub 2011 Sep 26.

Abstract

The present study aims at exploring a detailed characterization of the binding interaction of a promising cancer cell photosensitizer, harmane (HM), with DNA extracted from herring sperm. The polarity-sensitive prototropic transformation of HM, a naturally occurring, fluorescent, drug-binding alkaloid, β-carboline, is remarkably modified upon interaction with DNA and is manifested through significant modulations on the absorption and emission profiles of HM. From the series of studies undertaken in the present program, for example, absorption; steady-state emission; the effect of chaotrope (urea); iodide ion-induced steady-state fluorescence quenching; circular dichroism (CD); and helix melting from absorption spectroscopy; the mode of binding of HM into the DNA helix has been substantiated to be principally intercalative. Concomitantly, a discernible dependence of the photophysics of the DNA-bound drug on the medium ionic strength indicates that electrostatic attraction should not be ignored in the interaction. Efforts have also been delivered to delineate the dynamical aspects of the interaction, such as modulation in time-resolved fluorescence decay and rotational relaxation dynamics of the drug within the DNA environment. In view of the prospective biological applications of HM, the issue of facile dissociation of intercalated HM from the DNA helix also comprises a crucial prerequisite for the functioning as an effective therapeutic agent. In this context, our results imply that the concept of detergent-sequestered dissociation of the drug from the drug-DNA complex can be a prospective strategy through an appropriate choice of the detergent molecule. The utility of the present work resides in exploring the potential applicability of the fluorescence property of HM for studying its interactions with a relevant biological target, for example, DNA. In addition, the methods and techniques used in the present work can also be exploited to study the interaction of HM with other biological, biomimicking assemblies and drug delivery vehicles, and so forth.

摘要

本研究旨在深入研究一种有前途的癌细胞光敏剂哈尔曼(HM)与从鲱鱼精子中提取的 DNA 的结合相互作用。HM 是一种天然存在的荧光药物结合生物碱,β-咔啉,其极性敏感的质子转移转化在与 DNA 相互作用时会发生显著改变,并表现在 HM 的吸收和发射谱的显著调制上。例如,在本项目进行的一系列研究中,从吸收;稳态发射;变旋体(尿素)的影响;碘离子诱导的稳态荧光猝灭;圆二色性(CD);以及从吸收光谱得出的螺旋熔融,HM 与 DNA 螺旋结合的方式已被证实主要是嵌入的。同时,药物在 DNA 螺旋中的光物理性质对介质离子强度的明显依赖性表明,在相互作用中不应忽略静电吸引。还努力描述了相互作用的动态方面,例如药物在 DNA 环境中的时间分辨荧光衰减和旋转弛豫动力学的调制。鉴于 HM 的预期生物学应用,易于将嵌入的 HM 从 DNA 螺旋中解离也是其作为有效治疗剂的功能的关键前提。在这种情况下,我们的结果表明,通过选择适当的洗涤剂分子,将药物从药物-DNA 复合物中通过洗涤剂隔离的解离的概念可以成为一种有前途的策略。本工作的实用性在于探索 HM 的荧光性质用于研究其与相关生物靶标(例如 DNA)相互作用的潜在适用性。此外,本工作中使用的方法和技术也可以用于研究 HM 与其他生物、仿生组装体和药物输送载体等的相互作用。

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