Chaires J B
Biochemistry. 1985 Dec 3;24(25):7479-86. doi: 10.1021/bi00346a067.
Spectroscopic and fluorometric methods were used to study the binding of the anticancer drug daunomycin to poly[d(G-C)] and poly[d(G-m5C)] under a variety of solution conditions. Under high-salt conditions that favor the left-handed Z conformation, binding isotherms for the interaction of the drug with poly[d(G-C)] are sigmoidal, indicative of a cooperative binding process. Both the onset and extent of the cooperative binding are strongly dependent upon the ionic strength. The binding data may be explained by a model in which the drug preferentially binds to B-form DNA and acts as an allosteric effector on the B to Z equilibrium. At 2.4 M NaCl, binding of as little as one drug molecule per 20 base pairs (bp) results in the conversion of poly[d(G-C)] from the Z form entirely to the B form, as inferred from binding data and demonstrated directly by circular dichroism measurements. Similar results are obtained for poly[d(G-m5C)] in 50 mM NaCl and 1.25 mM MgCl2. Under these solution conditions, it is possible to demonstrate the Z to B structural transition in poly[d(G-m5C)] as a function of bound drug by the additional methods of sedimentation velocity and susceptibility to DNase I digestion. The transmission of allosteric effects over 20 bp is well beyond the range of the drug's binding site of 3 bp. Since daunomycin preferentially binds to alternating purine-pyrimidine sequences, which are the only sequences capable of the B to Z transition, the allosteric effects described here may be of importance toward understanding the mechanism by which the drug inhibits DNA replicative events.(ABSTRACT TRUNCATED AT 250 WORDS)
采用光谱法和荧光法研究了在多种溶液条件下抗癌药物柔红霉素与聚[d(G-C)]和聚[d(G-m5C)]的结合情况。在有利于左旋Z构象的高盐条件下,药物与聚[d(G-C)]相互作用的结合等温线呈S形,表明存在协同结合过程。协同结合的起始和程度都强烈依赖于离子强度。结合数据可以用一个模型来解释,即药物优先结合到B型DNA上,并作为B-Z平衡的变构效应剂。在2.4 M NaCl条件下,从结合数据推断并通过圆二色性测量直接证明,每20个碱基对(bp)中只要结合一个药物分子,聚[d(G-C)]就会从Z型完全转变为B型。在50 mM NaCl和1.25 mM MgCl2条件下对聚[d(G-m5C)]也得到了类似结果。在这些溶液条件下,通过沉降速度和对DNase I消化的敏感性等额外方法,可以证明聚[d(G-m5C)]中Z到B的结构转变是结合药物的函数。变构效应在20 bp上的传递远远超出了药物3 bp结合位点的范围。由于柔红霉素优先结合交替的嘌呤-嘧啶序列,而这些序列是唯一能够发生B-Z转变的序列,这里描述的变构效应对于理解该药物抑制DNA复制事件的机制可能很重要。(摘要截短于250字)