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寻找结构特异性核酸相互作用药物:化合物结构对RNA与DNA相互作用强度的影响。

The search for structure-specific nucleic acid-interactive drugs: effects of compound structure on RNA versus DNA interaction strength.

作者信息

Wilson W D, Ratmeyer L, Zhao M, Strekowski L, Boykin D

机构信息

Department of Chemistry, Georgia State University, Atlanta 30303.

出版信息

Biochemistry. 1993 Apr 20;32(15):4098-104. doi: 10.1021/bi00066a035.

Abstract

The RNA genomes of a number of pathogenic RNA viruses, such as HIV-1, have extensive folded conformations with imperfect A-form duplexes that are essential for virus function and could serve as targets for structure-specific antiviral drugs. As an initial step in the discovery of such drugs, the interactions with RNA of a wide variety of compounds, which are known to bind to DNA in the minor groove, by classical or by threading intercalation, have been evaluated by thermal melting and viscometric analyses. The corresponding sequence RNA and DNA polymers, poly(A).poly(U) and poly(dA).poly(dT), were used as test systems for analysis of RNA binding strength and selectivity. Compounds that bind exclusively in the minor groove in AT sequences of DNA (e.g., netropsin, distamycin, and a zinc porphyrin derivative) do not have significant interactions with RNA. Compounds that bind in the minor grove in AT sequences of DNA but have other favorable interactions in GC sequences of DNA (e.q., Hoechst 33258, DAPI, and other aromatic diamidines) can have very strong RNA interactions. A group of classical intercalators and a group of intercalators with unfused aromatic ring systems contain compounds that intercalate and have strong interactions with RNA. At this time, no clear pattern of molecular structure that favors RNA over DNA interactions for intercalators has emerged. Compounds that bind to DNA by threading intercalation generally bind to RNA by the same mode, but none of the threading intercalators tested to date have shown selective interactions with RNA.

摘要

许多致病性RNA病毒,如HIV-1,其RNA基因组具有广泛的折叠构象,带有不完全的A-型双链体,这些双链体对病毒功能至关重要,并且可作为结构特异性抗病毒药物的作用靶点。作为发现此类药物的第一步,通过热变性和粘度分析评估了多种已知通过经典插入或穿插入方式在小沟中与DNA结合的化合物与RNA的相互作用。相应的序列RNA和DNA聚合物,聚(A)·聚(U)和聚(dA)·聚(dT),被用作分析RNA结合强度和选择性的测试系统。仅在DNA的AT序列的小沟中结合的化合物(例如,纺锤菌素、偏端霉素和一种锌卟啉衍生物)与RNA没有显著相互作用。在DNA的AT序列的小沟中结合但在DNA的GC序列中有其他有利相互作用的化合物(例如,Hoechst 33258、DAPI和其他芳香族二脒)可能与RNA有非常强的相互作用。一组经典嵌入剂和一组具有未稠合芳香环系统的嵌入剂包含能嵌入并与RNA有强相互作用的化合物。此时,尚未出现有利于嵌入剂与RNA而非与DNA相互作用的清晰分子结构模式。通过穿插入与DNA结合的化合物通常以相同模式与RNA结合,但迄今为止测试的所有穿插入剂均未显示出与RNA的选择性相互作用。

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