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蛋白质和DNA对蛋白质-DNA复合物协同组装贡献的分析。

Analysis of protein and DNA-mediated contributions to cooperative assembly of protein-DNA complexes.

作者信息

Senear D F, Ross J B, Laue T M

机构信息

Department of Molecular Biology and Biochemistry, University of California at Irvine, Irvine, California, 92697, USA. dfsenear.uci.edu

出版信息

Methods. 1998 Sep;16(1):3-20. doi: 10.1006/meth.1998.0641.

Abstract

The cooperative assembly of protein-DNA complexes is a widespread phenomenon that is of particular significance to transcriptional regulation. Assembly of these complexes is controlled by the chemistry of the macromolecular interactions. In this sense, transcriptional regulation is a chemical issue. The purpose of this review is to present an analytical approach designed to understand this regulation from a chemical perspective. By investigating the solution interactions between all combinations of molecules, protein-protein, protein-ligand, and protein-DNA, and the interplay between them, it is possible to determine the relative free energies of the different configurations of the regulatory complex. This governs their distribution and thereby controls the biological activity. To illustrate the approach, we will address the molecular basis for cooperativity in the bacteriophage lambda, lysogenic-lytic switch mechanism, a system that has long served as a paradigm for gene regulation. The driving force for cooperativity in the assembly of gene regulatory complexes is generally thought to be provided by direct protein-protein interactions. However, other interactions mediated by both proteins and DNA are also involved and may be critical to the regulatory mechanism. We will review advances over the past several years in the application of biophysical chemical methods to investigate protein-protein and protein-DNA interactions. Many of these applications were first employed for the lambda system. In addition to describing the physical basis for the methods, we will focus on the unique information that can be gained and how to combine the information obtained from several techniques to develop a comprehensive view of the critical regulatory interactions.

摘要

蛋白质 - DNA 复合物的协同组装是一种广泛存在的现象,对转录调控具有特别重要的意义。这些复合物的组装由大分子相互作用的化学性质控制。从这个意义上讲,转录调控是一个化学问题。本综述的目的是提出一种分析方法,旨在从化学角度理解这种调控。通过研究分子的所有组合(蛋白质 - 蛋白质、蛋白质 - 配体和蛋白质 - DNA)之间的溶液相互作用以及它们之间的相互作用,可以确定调节复合物不同构型的相对自由能。这决定了它们的分布,从而控制生物活性。为了说明该方法,我们将探讨噬菌体λ溶原 - 裂解开关机制中协同作用的分子基础,该系统长期以来一直是基因调控的范例。基因调控复合物组装中协同作用的驱动力通常被认为是由直接的蛋白质 - 蛋白质相互作用提供的。然而,蛋白质和 DNA 介导的其他相互作用也参与其中,并且可能对调控机制至关重要。我们将回顾过去几年在应用生物物理化学方法研究蛋白质 - 蛋白质和蛋白质 - DNA 相互作用方面取得的进展。这些应用中的许多最初是用于λ系统的。除了描述这些方法的物理基础外,我们将重点关注可以获得的独特信息,以及如何将从几种技术获得的信息结合起来,以全面了解关键的调控相互作用。

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