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放线菌素A3和光神霉素的Mg2+配合物与聚(dG-dC)×聚(dC-dG)和聚(dG)×聚(dC)的差异相互作用。

Differential interactions of the Mg2+ complexes of chromomycin A3 and mithramycin with poly(dG-dC) x poly(dC-dG) and poly(dG) x poly(dC).

作者信息

Majee S, Sen R, Guha S, Bhattacharyya D, Dasgupta D

机构信息

Biophysics Division, Saha Institute of Nuclear Physics, Calcutta, India.

出版信息

Biochemistry. 1997 Feb 25;36(8):2291-9. doi: 10.1021/bi9613281.

Abstract

The interaction of the two anticancer antibiotics, chromomycin A3 and mithramycin, with the polynucleotides poly(dG-dC) x poly(dC-dG), representative of B-DNA, and poly(dG) x poly(dC), representative of A-DNA, in the presence of Mg2+ is studied by spectroscopic techniques such as absorbance, fluorescence, and dircular dichroism (CD). The studies were done with both drug x Mg2+ complexes, I and II, having 1:1 and 2:1 stoichiometries with respect to drug and Mg2+, respectively [Aich, P., Sen, R., & Dasgupta, D. (1992) Biochemistry 31, 2988-2997]. The objective of the present work is 2-fold. First, an attempt is made to understand the structural basis of the ligand-DNA interaction, particularly the role of DNA backbone conformation with its groove size and the accessibility of the 2-amino group in the minor groove of guanosine. Second, the role of the antibiotic saccharide moieties in the association with DNA was studied. For this purpose, the spectroscopic characterization of the binding was done followed by the evaluation of binding parameters and associated thermodynamics. Analysis of the observed thermodynamics for the ligand-DNA interactions in terms of the different structures of the polynucleotides was done. The salient results are as follows. Complex I does not discriminate significantly among the A- and B-forms of DNA when it binds to them in an entropy-driven process. On the other hand, complex II for both drugs recognizes B- and A-forms of DNA in different ways. This observation implies that the sequence specificity shown by this complex is a sequel to the difference in the parameters such as groove size and accessibility of the guanosine amino group. Another important finding is that binding with the same polynucleotide is not comparable for the complex II of the two drugs. It emphasizes the involvement of the sugar moieties, when the drug x Mg2+ complex binds to DNA. The presence of an acetoxy group in the sugars of chromomycin A3 imparts some distinctive specific features of the association of the chromomycin dimer x Mg2+ complex with DNA. Finally, the results are compared with those available from NMR studies of different drug-oligonucleotide complexes under conditions where complex II is the ligand.

摘要

利用吸光度、荧光和圆二色性(CD)等光谱技术,研究了两种抗癌抗生素——色霉素A3和光神霉素,在Mg2+存在的情况下,与代表B-DNA的多核苷酸聚(dG-dC)×聚(dC-dG)以及代表A-DNA的多核苷酸聚(dG)×聚(dC)之间的相互作用。研究针对两种药物与Mg2+的复合物I和II进行,它们相对于药物和Mg2+的化学计量比分别为1:1和2:1 [艾奇,P.,森,R.,& 达斯古普塔,D.(1992年)《生物化学》31卷,2988 - 2997页]。本研究的目的有两个方面。首先,试图理解配体 - DNA相互作用的结构基础,特别是DNA主链构象及其沟槽大小的作用以及鸟苷小沟中2 - 氨基的可及性。其次,研究了抗生素糖基部分在与DNA结合中的作用。为此,对结合进行了光谱表征,随后评估了结合参数和相关的热力学性质。根据多核苷酸的不同结构对观察到的配体 - DNA相互作用的热力学性质进行了分析。主要结果如下。复合物I在以熵驱动的过程与DNA结合时,对DNA的A形式和B形式没有明显的区分。另一方面,两种药物的复合物II以不同方式识别DNA的B形式和A形式。这一观察结果表明,该复合物所显示的序列特异性是诸如沟槽大小和鸟苷氨基可及性等参数差异的结果。另一个重要发现是,两种药物的复合物II与同一多核苷酸的结合情况不可比。这强调了在药物与Mg2+复合物与DNA结合时糖基部分的参与。色霉素A3糖基中的乙酰氧基赋予了色霉素二聚体与Mg2+复合物和DNA结合的一些独特的特异性特征。最后,将结果与在复合物II作为配体的条件下不同药物 - 寡核苷酸复合物的核磁共振研究结果进行了比较。

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