Masum Abdulla Al, Chakraborty Maharudra, Pandya Prateek, Halder Umesh Chandra, Islam Md Maidul, Mukhopadhyay Subrata
Department of Chemistry, Aliah University , Sector V, Salt Lake City, Kolkata 700 091, India.
J Phys Chem B. 2014 Nov 20;118(46):13151-61. doi: 10.1021/jp509326r. Epub 2014 Nov 10.
In this paper, the interaction of rhodamine123 (R123) with calf thymus DNA has been studied using molecular modeling and other biophysical methods like UV-vis spectroscopy, fluoremetry, optical melting, isothermal titration calorimetry, and circular dichroic studies. Results showed that the binding energy is about -6 to -8 kcal/mol, and the binding process is favored by both negative enthalpy change and positive entropy change. A new method to determine different thermodynamic properties like calorimetric enthalpy and heat capacity change has been introduced in this paper. The obtained data has been crossed-checked by other methods. After dissecting the free-energy contribution, it was observed that the binding was favored by both negative hydrophobic free energy and negative molecular free energy which compensated for the positive free energies due to the conformational change loss of rotational and transitional freedom of the DNA helix.
本文采用分子建模以及紫外可见光谱、荧光光谱、光熔解、等温滴定量热法和圆二色性研究等其他生物物理方法,研究了罗丹明123(R123)与小牛胸腺DNA的相互作用。结果表明,结合能约为-6至-8千卡/摩尔,结合过程同时受到负焓变和正熵变的促进。本文引入了一种测定量热焓和热容变化等不同热力学性质的新方法。所得数据已通过其他方法进行交叉核对。在剖析自由能贡献后发现,负疏水自由能和负分子自由能均有利于结合,这补偿了由于DNA螺旋旋转和过渡自由度构象变化损失而产生的正自由能。