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蛋白质 - 核酸相互作用中的有限协同性。大肠杆菌单链结合蛋白与处于“串珠状”(SSB)65模式的单链核酸相互作用的热力学模型。

Limited co-operativity in protein-nucleic acid interactions. A thermodynamic model for the interactions of Escherichia coli single strand binding protein with single-stranded nucleic acids in the "beaded", (SSB)65 mode.

作者信息

Bujalowski W, Lohman T M

机构信息

Department of Biochemistry and Biophysics, Texas A & M University, College Station 77843.

出版信息

J Mol Biol. 1987 Jun 20;195(4):897-907. doi: 10.1016/0022-2836(87)90493-1.

Abstract

We present a statistical thermodynamic model ("tetramer/octamer" model) that describes the equilibrium binding of the Escherichia coli single strand binding (SSB) protein to single-stranded nucleic acids in its "beaded" binding mode, which seems to be equivalent to the high site size, (SSB)65 binding mode. The method of sequence-generating functions is used to derive the model, which accounts for the observation that clustering of bound SSB tetramers is limited to the formation of octamers, which have been observed as "beads" in the electron microscope. The model also accounts for the overlap of potential protein binding sites on the nucleic acid. The "tetramer/octamer" model is fully described by only three parameters: the site size, n; the intrinsic equilibrium constant, K; and the co-operativity parameter, omega, and we obtain exact, closed form expressions for the binding isotherm as well as the distribution of DNA-bound SSB tetramers and octamers. The closed form expressions allow one to calculate easily average binding properties and analyze experimental binding isotherms to obtain estimates of K and omega. In order to test the tetramer/octamer model, we have determined the equilibrium binding isotherm for the E. coli SSB protein-poly(U) interaction in 0.2 M-NaCl over a wide range of binding densities. These are conditions in which the low co-operativity (SSB)65 binding mode solely exists. The tetramer/octamer model provides a much better description of the experimental isotherm over the entire binding density range than a model that assumes the formation of clusters of unlimited size. A co-operativity parameter of omega = 420 +/- 80 provides a good fit to data for SSB binding to poly(dA) and poly(U), corresponding to an interaction free energy of -3.6 kcal/mol of SSB octamer formed. On the basis of this moderate value of omega, the tetramer/octamer model predicts that at low to intermediate binding densities, a significant fraction of bound SSB exists in the form of tetramers co-existing with octamers. In the case of E. coli SSB protein binding in the "beaded", (SSB)65 mode this model provides a significant improvement over previous treatments which assume unlimited nearest-neighbor interactions, since the binding parameters, K and omega, represent physically meaningful interaction constants rather than fitting parameters.

摘要

我们提出了一种统计热力学模型(“四聚体/八聚体”模型),该模型描述了大肠杆菌单链结合(SSB)蛋白以其“串珠状”结合模式与单链核酸的平衡结合,这种模式似乎等同于高位点大小的(SSB)65结合模式。利用序列生成函数的方法推导出该模型,该模型解释了以下观察结果:结合的SSB四聚体的聚集仅限于八聚体的形成,八聚体在电子显微镜下被观察为“珠子”。该模型还考虑了核酸上潜在蛋白质结合位点的重叠。“四聚体/八聚体”模型仅由三个参数完全描述:位点大小(n)、内在平衡常数(K)和协同参数(\omega),我们得到了结合等温线以及与DNA结合的SSB四聚体和八聚体分布的精确封闭形式表达式。这些封闭形式表达式使人们能够轻松计算平均结合特性,并分析实验结合等温线以获得(K)和(\omega)的估计值。为了测试四聚体/八聚体模型,我们确定了在0.2 M NaCl中,在广泛的结合密度范围内大肠杆菌SSB蛋白与聚(U)相互作用的平衡结合等温线。这些是仅存在低协同性(SSB)65结合模式的条件。与假设形成无限大小簇的模型相比,四聚体/八聚体模型在整个结合密度范围内对实验等温线的描述要好得多。协同参数(\omega = 420 \pm 80)能很好地拟合SSB与聚(dA)和聚(U)结合的数据,对应于形成的SSB八聚体的相互作用自由能为 -3.6 kcal/mol。基于(\omega)的这个适中值,四聚体/八聚体模型预测,在低至中等结合密度下,相当一部分结合的SSB以与八聚体共存的四聚体形式存在。对于以“串珠状”(SSB)65模式结合的大肠杆菌SSB蛋白,该模型相对于先前假设无限最近邻相互作用的处理方法有显著改进,因为结合参数(K)和(\omega)代表具有物理意义的相互作用常数,而不是拟合参数。

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