Arya Dev P, Micovic Ljiljana, Charles I, Coffee R Lane, Willis Bert, Xue Liang
Laboratory of Medicinal Chemistry, Department of Chemistry, Clemson University, South Carolina 29634, USA.
J Am Chem Soc. 2003 Apr 2;125(13):3733-44. doi: 10.1021/ja027765m.
Neomycin is the most effective aminoglycoside (groove binder) in stabilizing a DNA triple helix. It stabilizes TAT, as well as mixed base DNA triplexes, better than known DNA minor groove binders (which usually destabilize the triplex) and polyamines. Neomycin selectively stabilizes the triplex (in the presence of salt), without any effect on the DNA duplex. (1) Triplex stabilization by neomycin is salt dependent (increased KCl and MgCl(2) concentrations decrease neomycin's effectiveness, at a fixed drug concentration). (2) Triplex stabilization by neomycin is pH dependent (increased pH decreases neomycin's effectiveness, at a fixed drug concentration). (3) CD binding studies indicate approximately 5-7 base triplets/drug apparent binding site, depending upon the structure/sequence of the triplex. (4) Neomycin shows nonintercalative groove binding to the DNA triplex, as evident from viscometric studies. (5) Neomycin shows a preference for stabilization of TAT triplets but can also accommodate CGC(+) triplets. (6) Isothermal titration calorimetry (ITC) studies reveal an association constant of approximately 2 x 10(5) M(-)(1) between neomycin and an intramolecular triplex and a higher K(a) for polydA.2polydT. (7) Binding/modeling studies show a marked preference for neomycin binding to the larger W-H groove. Ring I/II amino groups and ring IV amines are proposed to be involved in the recognition process. (8) The novel selectivity of neomycin is suggested to be a function of its charge and shape complementarity to the triplex W-H groove, making neomycin the first molecule that selectively recognizes a triplex groove over a duplex groove.
新霉素是在稳定DNA三链螺旋方面最有效的氨基糖苷类(沟结合剂)。它比已知的DNA小沟结合剂(通常会使三链体不稳定)和多胺能更好地稳定TAT以及混合碱基DNA三链体。新霉素在有盐存在的情况下选择性地稳定三链体,而对DNA双链体没有任何影响。(1)新霉素对三链体的稳定作用依赖于盐(在固定药物浓度下,增加氯化钾和氯化镁的浓度会降低新霉素的有效性)。(2)新霉素对三链体的稳定作用依赖于pH值(在固定药物浓度下,pH值升高会降低新霉素的有效性)。(3)圆二色性结合研究表明,根据三链体的结构/序列,每个药物表观结合位点大约有5 - 7个碱基三联体。(4)粘度测定研究表明,新霉素以非嵌入方式与DNA三链体的沟结合。(5)新霉素表现出对稳定TAT三联体的偏好,但也能容纳CGC(+)三联体。(6)等温滴定量热法(ITC)研究表明,新霉素与分子内三链体之间的缔合常数约为2×10⁵ M⁻¹,对聚dA·2聚dT的亲和常数更高。(7)结合/建模研究表明,新霉素明显更倾向于结合较大的W - H沟。推测环I/II氨基和环IV胺参与识别过程。(8)新霉素的这种新型选择性被认为是其电荷和形状与三链体W - H沟互补的结果,这使得新霉素成为第一个能选择性识别三链体沟而非双链体沟的分子。