首页> 外文期刊>DNA and Cell Biology >RNA-Binding Potential of Protoberberine Alkaloids: Spectroscopic and Calorimetric Studies on the Binding of Berberine, Palmatine, and Coralyne to Protonated RNA Structures
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RNA-Binding Potential of Protoberberine Alkaloids: Spectroscopic and Calorimetric Studies on the Binding of Berberine, Palmatine, and Coralyne to Protonated RNA Structures

机译:小to碱生物碱的RNA结合潜力:小Ber碱,Palmatine和Coralyne结合到质子化的RNA结构的光谱和量热研究。

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摘要

Interaction of the protoberberine alkaloids berberine, palmatine, and coralyne with the two double-stranded RNA homopolymers of cytidine-guanosine (CG) and inosine-cytidine (IC) sequences in the protonated conformation was investigated using various biophysical techniques. All the three alkaloids bound polyC(+)G in a cooperative way. The binding of coralyne to both the polyribonucleotides was stronger than that of berberine and palmatine. Evidence for the intercalative binding of coralyne was revealed from fluorescence quenching studies. Isothermal titration calorimetry results suggested that the binding of berberine to both the polymers and palmatine to polyIC(+) was very weak while that of palmatine and coralyne to polyC(+)G and polyIC(+) was predominantly entropy driven. Circular dichroic results provided evidence for the perturbation of the RNA conformation with the bound coralyne in a more deeply intercalated position compared to berberine and palmatine as revealed by induced circular dichroism peaks. Taken together, the present study suggests that planarity of coralyne results in a more favorable and stronger binding to the double-stranded RNA conformations compared to berberine and palmatine that may potentiate its use in RNA-targeted drug design.
机译:使用各种生物物理技术研究了原小ber碱生物碱小ber碱,棕榈碱和珊瑚烯与胞苷-鸟苷(CG)和肌苷-胞苷(IC)序列的两种双链RNA均聚物之间的相互作用。这三种生物碱都以协同方式结合了polyC(+)G。珊瑚素与两个多核糖核苷酸的结合均比小ber碱和棕榈碱的结合强。通过荧光猝灭研究揭示了珊瑚环的嵌入结合的证据。等温滴定量热法的结果表明,小ber碱与聚合物的结合以及棕榈碱与polyIC(+)的结合非常弱,而棕榈碱和珊瑚碱与polyC(+)G和polyIC(+)的结合主要由熵驱动。圆形二向色性结果提供了证据,证明与小ber碱和巴马汀相比,结合的珊瑚虫在更深层的插入位置上干扰了构象的RNA构象,这由诱导的圆形二向色性峰揭示。综上所述,本研究表明,与小ber碱和巴马汀相比,coralyne的平面性导致与双链RNA构象更有利和更强的结合,这可能会增强其在RNA靶向药物设计中的用途。

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