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一种穿线插入模式的动力学和平衡分析:DNA序列及离子效应

Kinetic and equilibrium analysis of a threading intercalation mode: DNA sequence and ion effects.

作者信息

Tanious F A, Yen S F, Wilson W D

机构信息

Department of Chemistry, Georgia State University, Atlanta 30303.

出版信息

Biochemistry. 1991 Feb 19;30(7):1813-9. doi: 10.1021/bi00221a013.

Abstract

The interaction of a symmetric naphthalene diimide with alkylamino substituents at each imide position was investigated with the alternating sequence polymers, poly[d(A-T)]2 and poly[d(G-C)]2. Spectrophotometric binding studies indicate strong binding of the diimide to both sequences although the GC binding constant is 20-25 times larger than the AT binding constant. Analysis of the effects of salt concentration on the binding equilibria shows that the diimide forms two ion pairs in its complex with both polymers as expected for a simple dication. Stopped-flow kinetics experiments demonstrate that the diimide both associates and dissociates from DNA more slowly than classical intercalators with similar binding constants. Analysis of salt concentration effects on dissociation kinetics rate constants (kd) reveals that slopes in log kd versus log [Na+] plots are only approximately half the value obtained for classical dicationic intercalators that have both charged groups in the same groove. These kinetics results support a threading intercalation model, with one charged diimide substituent in each of the DNA grooves rather than with both side chains in the same groove, for the diimide complex with DNA. In the rate-determining step of the mechanism for dissociation of a threading complex only one ion pair is broken; the free side chain can then slide between base pairs to put both diimide side chains in the same groove, and this is followed by rapid full dissociation of the diimide. This sequential release of ion pairs makes the dissociation slope for dicationic threading intercalators more similar to the slope for classical monocationic intercalating ligands.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

研究了在每个酰亚胺位置带有烷基氨基取代基的对称萘二亚胺与交替序列聚合物聚[d(A-T)]2和聚[d(G-C)]2之间的相互作用。分光光度法结合研究表明,该二亚胺与这两种序列都有很强的结合,尽管GC结合常数比AT结合常数大20 - 25倍。盐浓度对结合平衡影响的分析表明,正如简单二价阳离子所预期的那样,该二亚胺在与两种聚合物形成的复合物中形成了两个离子对。停流动力学实验表明,与具有相似结合常数的经典嵌入剂相比,该二亚胺与DNA结合和解离的速度都更慢。盐浓度对解离动力学速率常数(kd)影响的分析表明,log kd对log [Na+]图中的斜率仅约为在同一沟中具有两个带电基团的经典二价阳离子嵌入剂所得值的一半。这些动力学结果支持了一种穿线嵌入模型,即对于二亚胺与DNA的复合物,每个DNA沟中有一个带电的二亚胺取代基,而不是两条侧链都在同一沟中。在穿线复合物解离机制的速率决定步骤中,只有一个离子对被破坏;然后自由侧链可以在碱基对之间滑动,使两个二亚胺侧链都位于同一沟中,随后二亚胺迅速完全解离。离子对的这种顺序释放使得二价阳离子穿线嵌入剂的解离斜率更类似于经典单价嵌入配体的斜率。(摘要截取自250字)

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