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Fis 蛋白二聚体在 DNA 上的多种结合构象:促进解链与协同解链。

Multiple Binding Configurations of Fis Protein Pairs on DNA: Facilitated Dissociation versus Cooperative Dissociation.

机构信息

Department of Chemistry , Tamkang University , New Taipei City 25137 , Taiwan (R.O.C.).

出版信息

J Am Chem Soc. 2019 Nov 13;141(45):18113-18126. doi: 10.1021/jacs.9b08287. Epub 2019 Nov 1.

Abstract

As a master transcription regulator, the Fis protein influences over two hundred genes of . The Fis protein's nonspecific binding to DNA is widely acknowledged, and its kinetics of dissociation from DNA is strongly influenced by its surroundings: the dissociation rate increases as the concentration of the Fis protein in the solution phase increases. In this study, we use computational methods to explore the global binding energy landscape of the Fis1:Fis2:DNA ternary complex. The complex contains a binary-Fis molecular dyad whose formation relies on complex structural rearrangements. The simulations allow us to distinguish several different pathways for the dissociation of the protein from DNA with different functional outcomes and involving different protein stoichiometries: (1) simple exchange of proteins and (2) cooperative unbinding of two Fis proteins to yield bare DNA. In the case of exchange, the protein on the DNA is replaced by the solution-phase protein through competition for DNA binding sites. This process seen in fluorescence imaging experiments has been called facilitated dissociation. In the latter case of cooperative unbinding of pairs, two neighboring Fis proteins on DNA form a unique binary-Fis configuration via protein-protein interactions, which in turn leads to the codissociation of both molecules simultaneously, a process akin to the "molecular stripping" seen in the NFκB/IκB genetic broadcasting system. This simulation shows that the existence of multiple binding configurations of transcription factors can have a significant impact on the kinetics and outcome of transcription factor dissociation from DNA, with important implications for the systems biology of gene regulation by Fis.

摘要

作为一个主要的转录调控因子,Fis 蛋白影响着超过两百个基因。Fis 蛋白与 DNA 的非特异性结合已被广泛认可,其与 DNA 的解离动力学受其周围环境的强烈影响:随着溶液相中 Fis 蛋白浓度的增加,其解离速率增加。在这项研究中,我们使用计算方法来探索 Fis1:Fis2:DNA 三元复合物的整体结合能景观。该复合物包含一个二元-Fis 分子二聚体,其形成依赖于复杂的结构重排。模拟允许我们区分出几种不同的蛋白质从 DNA 解离的途径,这些途径具有不同的功能结果,并涉及不同的蛋白质化学计量比:(1)蛋白质的简单交换和(2)两个 Fis 蛋白的协同解绑以产生裸露的 DNA。在交换的情况下,蛋白质通过竞争 DNA 结合位点被溶液相中的蛋白质取代。在荧光成像实验中观察到的这个过程被称为促进解离。在后一种情况下,两个相邻的 Fis 蛋白在 DNA 上通过蛋白质-蛋白质相互作用形成独特的二元-Fis 构型,这反过来又导致两个分子同时同时解偶联,这一过程类似于在 NFκB/IκB 遗传广播系统中看到的“分子剥离”。该模拟表明,转录因子的多个结合构型的存在会对转录因子从 DNA 解离的动力学和结果产生重大影响,这对 Fis 基因调控的系统生物学具有重要意义。

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