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一种利用源自参考大分子的光谱信号分析配体与竞争性大分子结合的通用方法。应用于大肠杆菌复制解旋酶DnaB蛋白与核酸的相互作用。

A general method of analysis of ligand binding to competing macromolecules using the spectroscopic signal originating from a reference macromolecule. Application to Escherichia coli replicative helicase DnaB protein nucleic acid interactions.

作者信息

Jezewska M J, Bujalowski W

机构信息

Department of Human Biological Chemistry & Genetics, University of Texas Medical Branch at Galveston 77555-1053, USA.

出版信息

Biochemistry. 1996 Feb 20;35(7):2117-28. doi: 10.1021/bi952344l.

Abstract

Quantitative and accurate analyses of protein-nucleic acid interactions in solution are greatly facilitated if the formation of the complex is accompanied by a large change of the spectroscopic signal (e.g., fluorescence) originating from the protein or nucleic acid. However, there are many instances when protein-nucleic acid interactions do not induce adequate changes in spectroscopic properties of the interacting macromolecules. We describe the theoretical and experimental aspects of a general method to analyze such protein-nucleic acid interactions. The method is based on quantitative titrations of a reference nucleic acid with the protein in the presence of a competing nucleic acid whose interaction parameters with the protein are to be determined. The Macromolecule Competition Titration (MCT) method allows for the determination of the absolute average binding density and the free protein ligand concentration over a large binding density range, unavailable by other methods, and construction of a model-independent true binding isotherm. Moreover, the determination of the absolute binding density of the ligand on nonfluorescent nucleic acid is independent of a priori knowledge of the binding characteristics of the protein to the reference fluorescent nucleic acid. Although the MCT method is applicable to any type of physicochemical signal that can be used to monitor the binding, we discuss the details of the method as it applies to the analysis monitored by a change in the nucleic acid fluorescence intensity and anisotropy upon binding a ligand. Moreover, the interaction parameters for a given nucleic acid can be determined by using as a reference the long polymer nucleic acid as well as short oligomers. In particular, the analysis is greatly simplified if the short fluorescent nucleic acid fragment, spanning the exact site-size of the complex and binding with only a 1:1 stoichiometry to the protein, is used as a reference macromolecule. We have illustrated the MCT method by applying it to the binding of the Escherichia coli DnaB helicase to unmodified, nonfluorescent single-stranded nucleic acids where the interactions are not accompanied by any adequate spectroscopic signal changes. In order to analyze simultaneous binding of a ligand to different competing nucleic acid lattices, we introduced the combined application of the McGhee-von Hippel theory and the Epstein combinatorial approach for the binding of a large ligand to a linear, homogeneous nucleic acid lattice. Our approach allows one to perform a direct fit of the entire experimental isotherm for the protein binding to two competing nucleic acid lattices without resorting to complex numerical calculations.

摘要

如果蛋白质 - 核酸复合物的形成伴随着源自蛋白质或核酸的光谱信号(如荧光)的大幅变化,那么溶液中蛋白质 - 核酸相互作用的定量和准确分析将得到极大的便利。然而,在许多情况下,蛋白质 - 核酸相互作用并不会在相互作用的大分子的光谱性质上引起足够的变化。我们描述了一种分析此类蛋白质 - 核酸相互作用的通用方法的理论和实验方面。该方法基于在存在竞争核酸的情况下,用蛋白质对参考核酸进行定量滴定,而竞争核酸与蛋白质的相互作用参数有待确定。大分子竞争滴定(MCT)方法能够在其他方法无法达到的大结合密度范围内测定绝对平均结合密度和游离蛋白质配体浓度,并构建一个与模型无关的真实结合等温线。此外,配体在非荧光核酸上的绝对结合密度的测定不依赖于对蛋白质与参考荧光核酸结合特性的先验知识。尽管MCT方法适用于任何可用于监测结合的物理化学信号类型,但我们将详细讨论该方法在通过结合配体时核酸荧光强度和各向异性变化进行监测的分析中的应用。此外,给定核酸的相互作用参数可以使用长聚合物核酸以及短寡聚物作为参考来确定。特别地,如果使用跨越复合物精确位点大小且仅以1:1化学计量比与蛋白质结合的短荧光核酸片段作为参考大分子,分析将大大简化。我们通过将MCT方法应用于大肠杆菌DnaB解旋酶与未修饰的非荧光单链核酸的结合来说明该方法,其中这种相互作用不会伴随任何足够的光谱信号变化。为了分析配体与不同竞争核酸晶格的同时结合,我们引入了McGhee - von Hippel理论和Epstein组合方法的联合应用,用于大配体与线性均匀核酸晶格的结合。我们的方法允许直接拟合蛋白质与两个竞争核酸晶格结合的整个实验等温线,而无需借助复杂的数值计算。

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