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同时测定配体-DNA复合物中的螺旋解旋角和固有缔合常数:DNA与加利车霉素B之间的相互作用

Simultaneous determination of helical unwinding angles and intrinsic association constants in ligand-DNA complexes: the interaction between DNA and calichearubicin B.

作者信息

Zeman S M, Depew K M, Danishefsky S J, Crothers D M

机构信息

Department of Chemistry, Yale University, 225 Prospect Street, New Haven, CT, 06511, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Apr 14;95(8):4327-32. doi: 10.1073/pnas.95.8.4327.

Abstract

We present a helical unwinding assay for reversibly binding DNA ligands that uses closed circular DNA, topoisomerase I (Topo I), and two-dimensional agarose gel electrophoresis. Serially diluted Topo I relaxation reactions at constant DNA/ligand ratio are performed, and the resulting apparent unwinding of the closed circular DNA is used to calculate both ligand unwinding angle (phi) and intrinsic association constant (Ka). Mathematical treatment of apparent unwinding is formally analogous to that of apparent extinction coefficient data for optical binding titrations. Extrapolation to infinite DNA concentration yields the true unwinding angle of a given ligand and its association constant under Topo I relaxation conditions. Thus this assay delivers simultaneous structural and thermodynamic information describing the ligand-DNA complex. The utility of this assay has been demonstrated by using calichearubicin B (CRB), a synthetic hybrid molecule containing the anthraquinone chromophore of (DA) and the carbohydrate domain of calicheamicin gamma1I. The unwinding angle for CRB calculated by this method is -5. 3 +/- 0.5 degrees. Its Ka value is 0.20 x 10(6) M-1. For comparison, the unwinding angles of ethidium bromide and DA have been independently calculated, and the results are in agreement with canonical values for these compounds. Although a stronger binder to selected sites, CRB is a less potent unwinder than its parent compound DA. The assay requires only small amounts of ligand and offers an attractive option for analysis of DNA binding by synthetic and natural compounds.

摘要

我们提出了一种用于可逆结合DNA配体的螺旋解旋测定法,该方法使用闭环DNA、拓扑异构酶I(Topo I)和二维琼脂糖凝胶电泳。在恒定的DNA/配体比例下进行系列稀释的Topo I松弛反应,并利用由此产生的闭环DNA的表观解旋来计算配体解旋角(φ)和内在缔合常数(Ka)。表观解旋的数学处理在形式上类似于光学结合滴定的表观消光系数数据。外推至无限DNA浓度可得出给定配体在Topo I松弛条件下的真实解旋角及其缔合常数。因此,该测定法可同时提供描述配体-DNA复合物的结构和热力学信息。通过使用加利车霉素B(CRB),一种含有柔红霉素(DA)的蒽醌发色团和加利车霉素γ1I的碳水化合物结构域的合成杂合分子,证明了该测定法的实用性。用该方法计算出的CRB的解旋角为-5.3±0.5度。其Ka值为0.20×10⁶ M⁻¹。为作比较,已独立计算出溴化乙锭和DA的解旋角,结果与这些化合物的标准值一致。尽管CRB对选定位点的结合力更强,但它作为解旋剂的效力低于其母体化合物DA。该测定法只需要少量的配体,为分析合成和天然化合物与DNA的结合提供了一个有吸引力的选择。

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本文引用的文献

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Site selectivity of daunomycin.柔红霉素的位点选择性
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