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抗癌生物碱血根碱与双链RNA的结合:对结构和能量学方面的见解。

Binding of the anticancer alkaloid sanguinarine to double stranded RNAs: insights into the structural and energetics aspects.

作者信息

Chowdhury Sebanti Roy, Islam Md Maidul, Kumar Gopinatha Suresh

机构信息

Biophysical Chemistry Laboratory, Indian Institute of Chemical Biology (CSIR), 4, Raja S. C. Mullick Road, Kolkata 700032, India.

出版信息

Mol Biosyst. 2010 Jul;6(7):1265-76. doi: 10.1039/b927001a. Epub 2010 May 4.

Abstract

Elucidation of the molecular aspects of small molecule-RNA complexation is of prime importance for rational RNA targeted drug design strategies. Towards this, the interaction of the cytotoxic plant alkaloid sanguinarine to three double stranded ribonucleic acids, poly (A).poly(U), poly(I).poly(C) and poly(C).poly(G) was studied using various biophysical and thermodynamic techniques. Absorbance and fluorescence studies showed that the alkaloid bound cooperatively to these RNAs with binding affinities of the order 10(4) M(-1). Fluorescence quenching and hydrodynamic studies gave evidence for intercalation of sanguinarine to these RNA duplexes. Isothermal titration calorimetric studies revealed that the binding was characterized by negative enthalpy and positive entropy changes and the affinity constants derived were in agreement with the overall binding affinity values obtained from spectroscopic data. The binding of sanguinarine stabilized the melting of poly(A). poly(U) and poly(I).poly(C) and the binding data evaluated from the melting data were in agreement with that obtained from other techniques. The overall binding affinity of sanguinarine to these double stranded RNAs varied in the order, poly(A).poly(U) > poly(I).poly(C) >> poly(C).poly(G). The temperature dependence of the enthalpy changes afforded negative values of heat capacity changes for the binding of sanguinarine to poly(A).poly(U) and poly(I).poly(C), suggesting substantial hydrophobic contribution in the binding process. Further, enthalpy-entropy compensation phenomena was also seen in poly(A).poly(U) and poly(I).poly(C) systems that correlated to the strong binding involving a multiplicity of weak noncovalent interactions compared to the weak binding with poly(C).poly(G). These results further advance our understanding on the binding of small molecules that are specific binders to double stranded RNA sequences.

摘要

阐明小分子与RNA复合的分子层面问题对于合理的RNA靶向药物设计策略至关重要。为此,使用各种生物物理和热力学技术研究了细胞毒性植物生物碱血根碱与三种双链核糖核酸聚(A)·聚(U)、聚(I)·聚(C)和聚(C)·聚(G)的相互作用。吸光度和荧光研究表明,该生物碱与这些RNA协同结合,结合亲和力约为10⁴ M⁻¹。荧光猝灭和流体动力学研究为血根碱插入这些RNA双链体提供了证据。等温滴定量热法研究表明,结合的特征是焓变为负、熵变为正,所得的亲和常数与从光谱数据获得的总体结合亲和力值一致。血根碱的结合稳定了聚(A)·聚(U)和聚(I)·聚(C)的解链,从解链数据评估的结合数据与从其他技术获得的数据一致。血根碱与这些双链RNA的总体结合亲和力顺序为:聚(A)·聚(U)>聚(I)·聚(C)>>聚(C)·聚(G)。焓变的温度依赖性表明,血根碱与聚(A)·聚(U)和聚(I)·聚(C)结合时热容量变化为负值,这表明结合过程中有大量疏水作用。此外,在聚(A)·聚(U)和聚(I)·聚(C)体系中也观察到焓-熵补偿现象,这与聚(C)·聚(G)的弱结合相比,涉及多种弱非共价相互作用的强结合相关。这些结果进一步加深了我们对与双链RNA序列特异性结合的小分子结合的理解。

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