Petruska J, Goodman M F
Department of Biological Sciences, University of Southern California, Los Angeles 90089-1340.
J Biol Chem. 1995 Jan 13;270(2):746-50. doi: 10.1074/jbc.270.2.746.
We investigate enthalpy-entropy compensation for melting of nearest-neighbor doublets in DNA. Based on data for 10 normal doublets and for doublets containing a mispaired or analog base, the correlation of delta Szero with delta Hzero follows a rectangular hyperbola. Doublet melting temperature relates linearly to delta Hzero by Tm = T(o) + delta Hzero/a, where T(o) = 273 K and a = 80 cal/mol-K. Thus Tm is proportional to delta Hzero + aTo rather than to delta Hzero alone as previously thought by assuming delta Szero to be constant. The term aTo = 21.8 kcal/mol may reflect a constant enthalpy change in solvent accompanying the DNA enthalpy change for doublet melting and is roughly equivalent to breaking four H-bonds between water molecules for each melted doublet. The solvent entropy change (aTo/Tm) declines with increasing Tm, while the DNA entropy change (delta Hzero/Tm) rises, so the combined DNA + solvent entropy change stays constant at 80 cal/K/mol of doublet. If such constancy in DNA + solvent entropy changes also holds for enzyme clefts as "solvent," then free energy differences for competing correct and incorrect base pairs in polymerase clefts may be as large as enthalpy differences and possibly sufficient to account for DNA polymerase accuracy. The hyperbolic relationship between delta Szero and delta Hzero observed in 1 M salt can be used to evaluate delta Hzero and delta Szero from Tm at lower, physiologically relevant, salt concentrations.
我们研究了DNA中相邻碱基对熔解的焓-熵补偿。基于10个正常碱基对以及含有错配或类似碱基的碱基对的数据,ΔS⁰与ΔH⁰的相关性遵循矩形双曲线。碱基对熔解温度与ΔH⁰呈线性关系,即Tm = Tₒ + ΔH⁰/a,其中Tₒ = 273 K,a = 80 cal/mol-K。因此,Tm与ΔH⁰ + aTₒ成正比,而不是像之前假设ΔS⁰为常数时所认为的仅与ΔH⁰成正比。项aTₒ = 21.8 kcal/mol可能反映了伴随碱基对熔解的DNA焓变时溶剂中的恒定焓变,大致相当于每个熔解的碱基对破坏了四个水分子之间的氢键。溶剂熵变(aTₒ/Tm)随Tm升高而下降,而DNA熵变(ΔH⁰/Tm)上升,所以DNA +溶剂的总熵变在每个碱基对为80 cal/K/mol时保持恒定。如果DNA +溶剂熵变的这种恒定性对于作为“溶剂”的酶裂隙也成立,那么聚合酶裂隙中竞争的正确和错误碱基对之间的自由能差可能与焓差一样大,并且可能足以解释DNA聚合酶的准确性。在1 M盐中观察到的ΔS⁰与ΔH⁰之间的双曲线关系可用于在较低的、生理相关的盐浓度下根据Tm评估ΔH⁰和ΔS⁰。