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用于计算基因调控中DNA-蛋白质-药物结合的通用转移矩阵形式:应用于噬菌体λ的OR操纵子

General transfer matrix formalism to calculate DNA-protein-drug binding in gene regulation: application to OR operator of phage lambda.

作者信息

Teif Vladimir B

机构信息

Institute of Bioorganic Chemistry, Belarus National Academy of Sciences, Street Kuprevich 5/2, 220141, Minsk, Belarus.

出版信息

Nucleic Acids Res. 2007;35(11):e80. doi: 10.1093/nar/gkm268. Epub 2007 May 25.

Abstract

The transfer matrix methodology is proposed as a systematic tool for the statistical-mechanical description of DNA-protein-drug binding involved in gene regulation. We show that a genetic system of several cis-regulatory modules is calculable using this method, considering explicitly the site-overlapping, competitive, cooperative binding of regulatory proteins, their multilayer assembly and DNA looping. In the methodological section, the matrix models are solved for the basic types of short- and long-range interactions between DNA-bound proteins, drugs and nucleosomes. We apply the matrix method to gene regulation at the O(R) operator of phage lambda. The transfer matrix formalism allowed the description of the lambda-switch at a single-nucleotide resolution, taking into account the effects of a range of inter-protein distances. Our calculations confirm previously established roles of the contact CI-Cro-RNAP interactions. Concerning long-range interactions, we show that while the DNA loop between the O(R) and O(L) operators is important at the lysogenic CI concentrations, the interference between the adjacent promoters P(R) and P(RM) becomes more important at small CI concentrations. A large change in the expression pattern may arise in this regime due to anticooperative interactions between DNA-bound RNA polymerases. The applicability of the matrix method to more complex systems is discussed.

摘要

转移矩阵方法被提议作为一种系统工具,用于对基因调控中涉及的DNA-蛋白质-药物结合进行统计力学描述。我们表明,考虑到调控蛋白的位点重叠、竞争性、协同性结合、它们的多层组装以及DNA环化,使用这种方法可以计算由几个顺式调控模块组成的遗传系统。在方法部分,针对DNA结合蛋白、药物和核小体之间短程和长程相互作用的基本类型求解矩阵模型。我们将矩阵方法应用于噬菌体λ的O(R)操纵子处的基因调控。转移矩阵形式主义能够在单核苷酸分辨率下描述λ开关,同时考虑到一系列蛋白间距离的影响。我们的计算证实了先前确立的CI-Cro-RNAP接触相互作用的作用。关于长程相互作用,我们表明,虽然在溶原性CI浓度下,O(R)和O(L)操纵子之间的DNA环很重要,但在低CI浓度下,相邻启动子P(R)和P(RM)之间的干扰变得更加重要。由于DNA结合的RNA聚合酶之间的反协同相互作用,在这种情况下可能会出现表达模式的巨大变化。本文还讨论了矩阵方法对更复杂系统的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3510/1920246/a741e922487d/gkm268f1.jpg

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