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氨基糖苷类与核酸的相互作用:新霉素对DNA和RNA三螺旋的显著稳定作用

Aminoglycoside-nucleic acid interactions: remarkable stabilization of DNA and RNA triple helices by neomycin.

作者信息

Arya D P, Coffee R L, Willis B, Abramovitch A I

机构信息

Laboratory of Medicinal Chemistry, Department of Chemistry, Clemson University, Clemson, SC 29634, USA.

出版信息

J Am Chem Soc. 2001 Jun 13;123(23):5385-95. doi: 10.1021/ja003052x.

Abstract

The stabilization of poly(dA).2poly(dT) triplex, a 22-base DNA triplex, and poly(rA).2poly(rU) triple helix by neomycin is reported. The melting temperatures, the association and dissociation kinetic parameters, and activation energies (E(on) and E(off)) for the poly(dA).2poly(dT) triplex in the presence of aminoglycosides and other triplex binding ligands were determined by UV thermal analysis. Our results indicate that: (i) neomycin stabilizes DNA triple helices, and the double helical structures composed of poly(dA).poly(dT) are virtually unaffected. (ii) Neomycin is the most active and triplex-selective stabilization agent among all aminoglycosides, previously studied minor groove binders, and polycations. Its selectivity (DeltaT(m3-->2) vs DeltaT(m2)(-->)(1)) exceeds most intercalating drugs that bind to triple helices. (iii) Neomycin selectively stabilizes DeltaT(m3)(-->)(2) for a mixed 22-base DNA triplex containing C and T bases in the pyrimidine strand. (iv) The rate constants of formation of triplex (k(on)) are significantly enhanced upon increasing molar ratios of neomycin, making triplex association rates closer to duplex association rates. (v) E(on) values become more negative upon increasing concentration of aminoglycosides (paromomycin and neomycin). E(off) values do not show any change for most aminoglycosides except neomycin. (vi) Aminoglycosides can effectively stabilize RNA [poly(rA).2poly(rU)] triplex, with neomycin[being one of the most active ligands discovered to date (second only to ellipticine). (vii) The stabilization effect of aminoglycosides on triple helices is parallel to their toxic behavior, suggesting a possible role of intramolecular triple helix (H-DNA) stabilization by the aminoglycosides.

摘要

据报道,新霉素可使22个碱基的DNA三链体聚(dA)·2聚(dT)和聚(rA)·2聚(rU)三链螺旋结构稳定。通过紫外热分析测定了在存在氨基糖苷类和其他三链体结合配体的情况下,聚(dA)·2聚(dT)三链体的解链温度、缔合和解离动力学参数以及活化能(E(on)和E(off))。我们的结果表明:(i)新霉素可使DNA三链螺旋结构稳定,而由聚(dA)·聚(dT)组成的双链螺旋结构实际上未受影响。(ii)新霉素是所有氨基糖苷类、先前研究过的小沟结合剂和聚阳离子中最具活性且对三链体具有选择性的稳定剂。其选择性(ΔT(m3→2)与ΔT(m2→1))超过了大多数与三链螺旋结合的嵌入药物。(iii)新霉素对嘧啶链中含有C和T碱基的22个碱基混合DNA三链体的ΔT(m3→2)具有选择性稳定作用。(iv)随着新霉素摩尔比的增加,三链体形成的速率常数(k(on))显著提高,使三链体缔合速率更接近双链体缔合速率。(v)随着氨基糖苷类(巴龙霉素和新霉素)浓度的增加,E(on)值变得更负。除新霉素外,大多数氨基糖苷类的E(off)值未显示任何变化。(vi)氨基糖苷类可有效稳定RNA [聚(rA)·2聚(rU)]三链体,新霉素是迄今为止发现的最具活性的配体之一(仅次于玫瑰树碱)。(vii)氨基糖苷类对三链螺旋的稳定作用与其毒性行为平行,表明氨基糖苷类可能在分子内三链螺旋(H-DNA)稳定中发挥作用。

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