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核小体的稳定性及其 DNA 对蛋白质的可及性。

Nucleosome stability and accessibility of its DNA to proteins.

机构信息

Instituut Lorentz, Universiteit Leiden, P.O. Box 9506, 2300 RA Leiden, The Netherlands.

出版信息

Biochimie. 2010 Dec;92(12):1722-8. doi: 10.1016/j.biochi.2010.08.008. Epub 2010 Aug 13.

Abstract

In this paper we present a theoretical description of the accessibility of nucleosomal DNA to proteins. We reassess the classical analysis of Polach and Widom (1995) who demonstrated that proteins (in their case restriction enzymes) gain access to buried binding sites inside a nucleosome through spontaneous unwrapping of DNA from the protein spool. We introduce a straightforward nucleosome model the predictions of which show good agreement with experimental data. By fitting the model to the data we obtain the values of two quantities: the adsorption energy to the histone octamer per length of DNA and the extra length that the DNA needs to unwrap beyond the binding site of an enzyme before the enzyme can act as effectively as on bare DNA. Our results indicate that the effective binding energy is surprisingly low which suggests that the nucleosomal parameters are tuned such that two large energies, the DNA bending energy and the pure adsorption energy, nearly cancel. This paper is based on a lecture presented at the summer school "DNA and Chromosomes 2009: Physical and Biological Applications". We follow the lecture as closely as possible which is why we spend more time than usual on issues that are already well-known in the field, and why we discuss some well-known results from a different perspective.

摘要

本文提出了一种核小体 DNA 与蛋白质可及性的理论描述。我们重新评估了 Polach 和 Widom(1995)的经典分析,他们证明了蛋白质(在他们的案例中是限制酶)通过从蛋白质线轴上自发解开 DNA,从而获得进入核小体内部埋藏结合位点的能力。我们引入了一个简单的核小体模型,其预测与实验数据吻合良好。通过将模型拟合到数据中,我们得到了两个量的值:每长度 DNA 的组蛋白八聚体的吸附能和 DNA 解开超过酶结合位点所需的额外长度,以便酶能够像在裸露 DNA 上一样有效地发挥作用。我们的结果表明,有效结合能出人意料地低,这表明核小体参数被调谐,使得两个大能量,即 DNA 弯曲能和纯吸附能,几乎相互抵消。本文基于在“2009 年 DNA 和染色体:物理和生物学应用”暑期学校的演讲。我们尽可能紧密地遵循演讲,这就是为什么我们比通常情况下花费更多的时间讨论该领域已经熟知的问题,以及为什么我们从不同的角度讨论一些著名的结果。

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