Biophysical Chemistry Laboratory, Indian Institute of Chemical Biology (CSIR), 4, Raja S. C. Mullick Road, Jadavpur, Kolkata 700 032, India.
Phys Chem Chem Phys. 2010 Oct 21;12(39):12771-9. doi: 10.1039/c001062f. Epub 2010 Aug 20.
The base specificity and energetics of DNA binding of the phenazinium dyes phenosafranine and safranine-O have been studied using various biophysical tools. The guanine-cytosine base specificity of both compounds was established from binding affinity values and competition dialysis results and also from circular dichroism, thermal melting, and calorimetric studies. Both dyes bind to DNA with affinity of the order of 10(5) M(-1), but the values are significantly higher for the guanine-cytosine rich DNAs over adenine-thymine rich ones and for phenosafranine over safranine-O. Calorimetric studies revealed that the binding reactions were exothermic and favoured by negative enthalpy as well as predominantly large positive entropy contributions. The temperature dependence of enthalpy changes yielded negative heat capacity values, which were higher for phenosafranine, compared to safranine-O, suggesting substantial contribution from hydrophobic forces in the binding process. Enthalpy-entropy compensation behaviour was also observed for the binding of both dyes to DNAs, revealing the molecular aspects of the interaction. Taken together, the spectroscopic and calorimetric data reflect clearly the guanine-cytosine base specificity of these molecules and a stronger DNA binding of PSF over SO. The results also provide some insights into the role of a bulkier substituent in the phenazinium ring in the binding process.
使用各种生物物理工具研究了苯并嗪染料酚嗪和磺基罗丹明-O 与 DNA 结合的碱基特异性和能量学。从结合亲和力值和竞争透析结果以及圆二色性、热融和量热研究确定了这两种化合物的鸟嘌呤-胞嘧啶碱基特异性。两种染料与 DNA 的结合亲和力均为 10(5) M(-1) 左右,但对于富含鸟嘌呤-胞嘧啶的 DNA,其值明显高于富含腺嘌呤-胸腺嘧啶的 DNA,对于酚嗪,其值也高于磺基罗丹明-O。量热研究表明,结合反应是放热的,由负焓和主要的大正熵贡献有利于结合。焓变的温度依赖性产生了负热容值,对于酚嗪,其值高于磺基罗丹明-O,这表明结合过程中存在大量的疏水作用力。两种染料与 DNA 结合也观察到了焓熵补偿行为,揭示了相互作用的分子方面。总之,光谱和量热数据清楚地反映了这些分子的鸟嘌呤-胞嘧啶碱基特异性,以及 PSF 相对于 SO 更强的 DNA 结合能力。结果还提供了一些关于苯并嗪环中大取代基在结合过程中的作用的见解。