Johnson T, Zhu J, Wartell R M
School of Biology, Georgia Institute of Technology, Atlanta 30332-0230, USA.
Biochemistry. 1998 Sep 1;37(35):12343-50. doi: 10.1021/bi981093o.
Base pair stacking free energy parameters in a low ionic strength solvent were determined from an analysis of DNA fragments using temperature gradient gel electrophoresis (TGGE). Transition midpoint temperatures (Tu) were determined for the first melting domain (52 +/- 4 bp) of 16, 339 bp DNAs that differed from each other by single base pair substitutions. The data were combined with previously obtained Tu data from 17 similar DNAs that had single base pair changes at different sites [Ke, S. H., and Wartell, R. M. (1995) Biochemistry 34, 4593-4599]. The Tu values were used to evaluate free energy differences (deltaDeltaG) between 31 pairs of DNAs. Linear equations relating the deltaDeltaG values to changes in base pair stacking were analyzed by singular value decomposition (SVD) to determine the 10 nearest neighbor free energy parameters. The order of stability of the parameters, TA < AT < AA < AG < GT approximately TC approximately TG < CC < GC approximately CG, was essentially the same as the hierarchy determined in 1 M Na+ [Allawi, H. T., and SantaLucia, J., Jr. (1997) Biochemistry 36, 10581-10594]. The experimental free energy differences were in good agreement with predictions made using nearest-neighbor parameters determined from several previous studies conducted in medium or high salt concentrations. Conversely the parameters determined in the current study produced good predictions of free energy differences previously determined from 59 DNA oligomers in 1 M Na+. The results indicate that differences between base pair stacking energies are conserved across a wide range of ionic conditions, and in both oligomer and polymer DNA contexts.
通过温度梯度凝胶电泳(TGGE)分析DNA片段,确定了低离子强度溶剂中的碱基对堆积自由能参数。测定了16个339 bp DNA的第一个解链结构域(52±4 bp)的解链中点温度(Tu),这些DNA彼此之间存在单碱基对替换差异。将这些数据与之前从17个在不同位点有单碱基对变化的相似DNA中获得的Tu数据相结合[Ke, S. H., and Wartell, R. M. (1995) Biochemistry 34, 4593 - 4599]。Tu值用于评估31对DNA之间的自由能差异(ΔΔG)。通过奇异值分解(SVD)分析将ΔΔG值与碱基对堆积变化相关的线性方程,以确定10个最邻近的自由能参数。参数的稳定性顺序为TA < AT < AA < AG < GT ≈ TC ≈ TG < CC < GC ≈ CG,与在1 M Na⁺中确定的层次结构基本相同[Allawi, H. T., and SantaLucia, J., Jr. (1997) Biochemistry 36, 10581 - 10594]。实验得到的自由能差异与使用先前在中等或高盐浓度下进行的几项研究确定的最邻近参数所做的预测吻合良好。相反,本研究中确定的参数对先前从1 M Na⁺中的59个DNA寡聚物确定的自由能差异做出了良好预测。结果表明,碱基对堆积能量之间的差异在广泛的离子条件下以及寡聚物和聚合物DNA环境中都是保守的。