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果蝇热休克因子的DNA结合结构域与其同源DNA位点的相互作用:利用分析型超速离心进行的热力学分析

Interaction of the DNA-binding domain of Drosophila heat shock factor with its cognate DNA site: a thermodynamic analysis using analytical ultracentrifugation.

作者信息

Kim S J, Tsukiyama T, Lewis M S, Wu C

机构信息

Laboratory of Biochemistry, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Protein Sci. 1994 Jul;3(7):1040-51. doi: 10.1002/pro.5560030706.

Abstract

Heat shock transcription factor (HSF) mediates the activation of heat shock genes by binding to its cognate sites with high affinity and specificity. The high-affinity binding of HSF is dependent on the formation of an HSF homotrimer, which interacts specifically with the heat shock response element (HSE), comprised of 3 inverted repeats of the 5-bp sequence NGAAN. In order to investigate the thermodynamic basis of the interaction between HSF and HSE, we have overexpressed and purified a polypeptide (dHSF(33-163)) encompassing only the DNA-binding domain of HSF from Drosophila and analyzed its binding to DNA by equilibrium analytical ultracentrifugation using a multiwavelength scan technique. We demonstrate that dHSF(33-163) can bind as a monomer with 1:1 stoichiometry to a synthetic 13-bp DNA containing a single NGAAN sequence. The values of the thermodynamic parameters obtained from the temperature dependence of the equilibrium binding constants indicate that the changes of free energy for the binding of dHSF(33-163) to the wild-type site and a mutant DNA site are predominantly characterized by substantial negative changes of enthalpy. Binding to the wild-type DNA is characterized by a significant positive change of entropy, whereas binding to the mutant DNA is distinguished by a negative change of entropy of comparable magnitude. The binding to the mutant DNA was also highly sensitive to increasing salt concentrations, indicating a dominance of ionic interactions. The sequence-specific, 1:1 binding of dHSF(33-163) to the NGAAN sequence provides a basis for the analysis of higher order interactions between HSF trimers and the HSE.

摘要

热休克转录因子(HSF)通过以高亲和力和特异性结合其同源位点来介导热休克基因的激活。HSF的高亲和力结合依赖于HSF同三聚体的形成,该同三聚体与由5个碱基序列NGAAN的3个反向重复组成的热休克反应元件(HSE)特异性相互作用。为了研究HSF与HSE之间相互作用的热力学基础,我们过表达并纯化了一种仅包含果蝇HSF DNA结合结构域的多肽(dHSF(33 - 163)),并使用多波长扫描技术通过平衡分析超速离心分析其与DNA的结合。我们证明dHSF(33 - 163)可以以1:1的化学计量比作为单体与包含单个NGAAN序列的合成13碱基对DNA结合。从平衡结合常数的温度依赖性获得的热力学参数值表明,dHSF(33 - 163)与野生型位点和突变DNA位点结合的自由能变化主要以焓的大幅负变为特征。与野生型DNA的结合以熵的显著正变为特征,而与突变DNA的结合则以相当大小的熵变为特征。与突变DNA的结合对盐浓度的增加也高度敏感,表明离子相互作用占主导。dHSF(33 - 163)与NGAAN序列的序列特异性1:1结合为分析HSF三聚体与HSE之间的高阶相互作用提供了基础。

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