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关于DNA结合蛋白GCN4转录位点处DNA双链体形成与稳定性的热力学研究。

A thermodynamic study on the formation and stability of DNA duplex at transcription site for DNA binding proteins GCN4.

作者信息

Cao W, Lai L

机构信息

Institute of Physical Chemistry, College of Chemistry and Molecular Engineering, Peking University, Beijing, China.

出版信息

Biophys Chem. 1999 Aug 30;80(3):217-26. doi: 10.1016/s0301-4622(99)00084-8.

Abstract

Using isothermal titration calorimetry (ITC), we studied the thermodynamic parameters of the 15-mer duplex dsDNA [d(GAGATGACTCATCTC)].[d(GAGATGAGTCATCTC)] formation from its two complementary single strands (S1 and S2) over a range of temperatures. The two complementary single strands d(GAGATGACTCATCTC) (herein called S1) and d(GAGATGAGTCATCTC) (herein called S2) containing palindromic sequences may assume ordered structures at low temperatures, which made the duplex dsDNA formation rather complicated. The thermodynamic parameters for the duplex formation, such as the binding constants (Kb), the enthalpies (delta H0), the free energies (delta G0), the entropies (delta S0) are strongly temperature-dependent. The thermally-induced disruptions of the duplex and its two complementary single strands, S1 and S2, were measured using differential scanning calorimetry (DSC) and CD spectroscopy, the results demonstrate that the DNA duplex is very stable, and its component single strands have an ordered structure at low temperature. This 15-mer specific sequence DNA may act as recognition site for DNA binding proteins GCN4 and plays a key role in transcription regulation of gene expression. Our analyses of the thermodynamic data suggest that the duplex formation is a coupled process between conformational transitions in the two single strands and their binding to form duplex dsDNA.

摘要

我们使用等温滴定量热法(ITC),研究了15聚体双链DNA [d(GAGATGACTCATCTC)].[d(GAGATGAGTCATCTC)]在一系列温度下由其两条互补单链(S1和S2)形成时的热力学参数。两条含有回文序列的互补单链d(GAGATGACTCATCTC)(在此称为S1)和d(GAGATGAGTCATCTC)(在此称为S2)在低温下可能呈现有序结构,这使得双链DNA的形成相当复杂。双链形成的热力学参数,如结合常数(Kb)、焓(ΔH0)、自由能(ΔG0)、熵(ΔS0)强烈依赖于温度。使用差示扫描量热法(DSC)和圆二色光谱法(CD)测量了双链及其两条互补单链S1和S2的热诱导破坏,结果表明DNA双链非常稳定,其组成单链在低温下具有有序结构。这种15聚体特定序列DNA可能作为DNA结合蛋白GCN4的识别位点,并在基因表达的转录调控中起关键作用。我们对热力学数据的分析表明,双链的形成是两条单链构象转变与其结合形成双链DNA之间的耦合过程。

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