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核酸稳定性的能量学:恒压热容变化(ΔCP)的影响

Energetics of nucleic acid stability: the effect of DeltaCP.

作者信息

Tikhomirova Anna, Taulier Nicolas, Chalikian Tigran V

机构信息

Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy, University of Toronto, 19 Russell Street, Toronto, Ontario M5S 2S2, Canada.

出版信息

J Am Chem Soc. 2004 Dec 22;126(50):16387-94. doi: 10.1021/ja046387d.

Abstract

We report high-resolution differential scanning calorimetric data on the poly(dAdT)poly(dAdT), poly(dA)poly(dT), poly(dIdC)poly(dIdC), poly(dGdC)poly(dGdC), poly(rA)poly(rU), and poly(rI)poly(rC) nucleic acid duplexes. We use these data to evaluate the melting temperatures, TM, enthalpy changes, DeltaHM, and heat capacity changes, DeltaCP, accompanying helix-to-coil transitions of each polymeric duplex studied in this work at different NaCl concentrations. In agreement with previous reports, we have found that DeltaCP exhibits a positive, nonzero value, which, on average, equals 268 +/- 33 J mol(-1) K(-1). With DeltaCP, we have calculated the transition free energies, DeltaG, enthalpies, DeltaH, and entropies, DeltaS, for the duplexes as a function of temperature. Since, DeltaG, DeltaH, and DeltaS all strongly depend on temperature, the thermodynamic comparison between DNA and/or RNA duplexes (that may differ from one another with respect to sequence, composition, conformation, etc.) is physically meaningful only if extrapolated to a common temperature. We have performed such comparative analyses to derive differential thermodynamic parameters of formation of GC versus AT, AU, and IC base pairs as well as B' versus A and B helix conformations. We have proposed some general microscopic interpretations for the observed sequence-specific and conformation-specific thermodynamic differences between the duplexes.

摘要

我们报告了聚(dAdT)聚(dAdT)、聚(dA)聚(dT)、聚(dIdC)聚(dIdC)、聚(dGdC)聚(dGdC)、聚(rA)聚(rU)和聚(rI)聚(rC)核酸双链体的高分辨率差示扫描量热数据。我们利用这些数据评估了在不同NaCl浓度下,本研究中所研究的每个聚合物双链体从螺旋到线圈转变时的解链温度(TM)、焓变(ΔHM)和热容变化(ΔCP)。与先前的报道一致,我们发现ΔCP呈现正值且不为零,其平均值等于268±33 J mol⁻¹ K⁻¹。利用ΔCP,我们计算了双链体的转变自由能(ΔG)、焓(ΔH)和熵(ΔS)随温度的变化函数。由于ΔG、ΔH和ΔS都强烈依赖于温度,所以只有外推到一个共同温度时,DNA和/或RNA双链体之间(在序列、组成、构象等方面可能彼此不同)的热力学比较才有实际意义。我们进行了这样的比较分析,以得出GC与AT、AU和IC碱基对形成以及B'与A和B螺旋构象的差异热力学参数。我们对双链体之间观察到的序列特异性和构象特异性热力学差异提出了一些一般性的微观解释。

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