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描述蛋白质配体与同一DNA寡聚物上特异性和非特异性位点竞争性相互作用的分析性结合等温线。

Analytic binding isotherms describing competitive interactions of a protein ligand with specific and nonspecific sites on the same DNA oligomer.

作者信息

Tsodikov O V, Holbrook J A, Shkel I A, Record M T

机构信息

Department of Chemistry, University of Wisconsin-Madison, 53706, USA.

出版信息

Biophys J. 2001 Oct;81(4):1960-9. doi: 10.1016/S0006-3495(01)75847-X.

Abstract

Many studies of specific protein-nucleic acid binding use short oligonucleotides or restriction fragments, in part to minimize the potential for nonspecific binding of the protein. However, when the specificity ratio is low, multiple nonspecifically bound proteins may occupy the region of DNA corresponding to one specific site; this situation was encountered in our recent calorimetric study of binding of integration host factor (IHF) protein to its specific 34-bp H' DNA site. Here, beginning from the analytical McGhee and von Hippel infinite-lattice nonspecific binding isotherm, we derive a novel analytic isotherm for nonspecific binding of a ligand to a finite lattice. This isotherm is an excellent approximation to the exact factorial-based Epstein finite lattice isotherm even for short lattices and therefore is of great practical significance for analysis of experimental data and for analytic theory. Using this isotherm, we develop an analytic treatment of the competition between specific and nonspecific binding of a large ligand to the same finite lattice (i.e., DNA oligomer) containing one specific and multiple overlapping nonspecific binding sites. Analysis of calorimetric data for IHF-H' DNA binding using this treatment yields enthalpies and binding constants for both specific and nonspecific binding and the nonspecific site size. This novel analysis demonstrates the potential contribution of nonspecific binding to the observed thermodynamics of specific binding, even with very short DNA oligomers, and the need for reverse (constant protein) titrations or titrations with nonspecific DNA to resolve specific and nonspecific contributions. The competition treatment is useful in analyzing low-specificity systems, including those where specificity is weakened by mutations or the absence of specificity factors.

摘要

许多针对特定蛋白质 - 核酸结合的研究使用短寡核苷酸或限制性片段,部分原因是为了尽量减少蛋白质非特异性结合的可能性。然而,当特异性比率较低时,多个非特异性结合的蛋白质可能占据与一个特定位点相对应的DNA区域;在我们最近关于整合宿主因子(IHF)蛋白与其特定的34碱基对H' DNA位点结合的量热研究中就遇到了这种情况。在此,我们从分析性的麦吉(McGhee)和冯·希佩尔(von Hippel)无限晶格非特异性结合等温线出发,推导出一种用于配体与有限晶格非特异性结合的新型分析等温线。即使对于短晶格,该等温线也是基于阶乘的精确爱泼斯坦有限晶格等温线的极佳近似,因此对于实验数据分析和分析理论具有重要的实际意义。利用这个等温线,我们对一个大配体与包含一个特定和多个重叠非特异性结合位点的相同有限晶格(即DNA寡聚物)的特异性和非特异性结合之间的竞争进行了分析处理。使用这种处理方法对IHF - H' DNA结合的量热数据进行分析,得出了特异性和非特异性结合的焓、结合常数以及非特异性位点大小。这种新颖的分析表明,即使使用非常短的DNA寡聚物,非特异性结合对观察到的特异性结合热力学也可能有潜在贡献,并且需要进行反向(恒定蛋白质)滴定或用非特异性DNA滴定来区分特异性和非特异性贡献。这种竞争处理方法在分析低特异性系统时很有用,包括那些因突变或缺乏特异性因子而导致特异性减弱的系统。

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