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与柔红霉素结合相关的聚(dA)-聚(dT)中的预熔构象转变。

A premelting conformational transition in poly(dA)-Poly(dT) coupled to daunomycin binding.

作者信息

Herrera J E, Chaires J B

机构信息

Department of Biochemistry, University of Mississippi Medical Center, Jackson 39216-4505.

出版信息

Biochemistry. 1989 Mar 7;28(5):1993-2000. doi: 10.1021/bi00431a006.

Abstract

Circular dichroism and UV absorbance spectroscopy were used to monitor and characterize a premelting conformational transition of poly(dA)-poly(dT) from one helical form to another. The transition was found to be broad, with a midpoint of tm = 29.9 degrees C and delta HVH = +19.9 kcal mol-1. The transition renders poly(dA)-poly(dT) more susceptible to digestion by DNase I and facilitates binding of the intercalator daunomycin. Dimethyl sulfoxide was found to perturb poly(dA)-poly(dT) structure in a manner similar to temperature. These combined results suggest that disruption of bound water might be linked to the observed transition. A thermodynamic analysis of daunomycin binding to poly(dA)-poly(dT) shows that antibiotic binding is coupled to the polynucleotide conformational transition. Daunomycin binding renders poly(dA)-poly(dT) more susceptible to DNase I digestion at low binding ratios, in contrast to the normal behavior of intercalators, indicating that antibiotic binding alters the conformation of the polynucleotide. The unusual thermodynamic profiles previously observed for the binding of many antibiotics to poly(dA)-poly(dT) can be explained by our results as arising from the coupling of ligand binding to the polynucleotide conformational transition. Our data further suggest a physical basis for the temperature dependence of DNA bending.

摘要

利用圆二色性和紫外吸收光谱来监测和表征聚(dA)-聚(dT)从一种螺旋形式到另一种螺旋形式的预熔构象转变。发现该转变很宽,中点温度tm = 29.9℃,焓变ΔHVH = +19.9千卡/摩尔。这种转变使聚(dA)-聚(dT)更易被DNase I消化,并促进嵌入剂柔红霉素的结合。发现二甲基亚砜以类似于温度的方式扰乱聚(dA)-聚(dT)的结构。这些综合结果表明,结合水的破坏可能与观察到的转变有关。对柔红霉素与聚(dA)-聚(dT)结合的热力学分析表明,抗生素的结合与多核苷酸的构象转变相关联。与嵌入剂的正常行为相反,柔红霉素在低结合比率下的结合使聚(dA)-聚(dT)更易被DNase I消化,这表明抗生素的结合改变了多核苷酸的构象。我们的结果可以解释先前观察到的许多抗生素与聚(dA)-聚(dT)结合时异常的热力学曲线,这是由于配体结合与多核苷酸构象转变的耦合所致。我们的数据进一步表明了DNA弯曲对温度依赖性的物理基础。

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