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首页> 外文期刊>Journal of Molecular Biology >Quantitative analysis of multiple-hit footprinting studies to characterize DNA conformational changes in protein-DNA complexes: Application to DNA opening by E sigma(70) RNA polymerase
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Quantitative analysis of multiple-hit footprinting studies to characterize DNA conformational changes in protein-DNA complexes: Application to DNA opening by E sigma(70) RNA polymerase

机译:定量分析多击脚印研究以表征蛋白质-DNA复合物中DNA构象变化的定量分析:通过E sigma(70)RNA聚合酶在DNA开放中的应用

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Formation of many site-specific protein-nucleic acid complexes involves sequential conformational changes subsequent to initial binding which create functionally active assemblies. Characterization of population distributions and structural characteristics of intermediate and product conformations is necessary to understand both the mechanisms and the thermodynamics of these processes. For these purposes, here we develop the quantitative method of multiple hit footprinting (MHF), where chemical or enzymatic probing is performed as a function of either concentrations of the footprinting agent and/or time of exposure to it, in the multiple hit regime where many of the population or subpopulation of reactive DNA molecules are modified at more than one site. Properly controlled MHF experiments yield both the population distribution of different conformers and reactivity rate constants of the footprinting agent at all reactive positions in each conformer, which may be interpreted in terms of the accessibility of the site or the local concentration of the reagent. MHF experiments are particularly well-suited for dissecting effects at sites where unbound DNA is non-reactive and bound DNA is reactive with base-specific probes (e.g. KMnO4, DMS). We suggest that this method will also be applicable to analysis of enhancements in reactivity of other footprinting agents (e.g. DNase I, HO). To demonstrate the utility of the MHF analysis, we quantify fragment distributions and individual site reactivities from multiple-hit KMnO4 footprinting of the non-template strand of E sigma(70) RNA polymerase-lambda P-R promoter DNA complexes populated at binding equilibrium at 37 degrees C and transiently populated at a fixed time after a temperature downshift from 37 degrees C to 0 degrees C. For this system, a MHF analysis directly addresses the following questions: (i) what fraction of the population of promoter DNA molecules is open in the vicinity of the transcription start site (RPo) both at 37 degrees C and (transiently) after a downshift to 0 degrees C; (ii) does opening of the start site region in RPo occur entirely in one mechanistic step at the lambda P-R promoter and (iii) does the structure of RPo vary with temperature? In addition, we use the MHF-determined population distribution of KMnO4-reactive (RPo) and non-reactive promoter DNA to normalize the biphasic kinetics of decay of RPo to free promoter DNA after a 37 degrees to 0 degrees C temperature downshift, and thereby characterize the kinetics of the conformational changes involved in forming RPo. (C) 1998 Academic Press. [References: 24]
机译:许多位点特异性蛋白质-核酸复合物的形成涉及初始结合后的顺序构象变化,这会产生功能活性的装配体。要了解这些过程的机理和热力学,必须对种群分布以及中间体和产物构象的结构特征进行表征。为此,我们在此开发了多次撞击足迹(MHF)的定量方法,其中在多次撞击的情况下,根据足迹物质的浓度和/或暴露时间的不同,执行化学或酶促探测。反应性DNA分子的许多种群或亚群都在一个以上的位点被修饰。正确控制的MHF实验会得出不同构象异构体的分布以及在每个构象异构体所有反应位置上的足迹剂的反应速率常数,这可以根据位点的可及性或试剂的局部浓度来解释。 MHF实验特别适合在未结合的DNA不具有反应性且结合的DNA与碱基特异性探针(例如KMnO4,DMS)具有反应性的位点进行解剖。我们建议该方法还将适用于分析其他印迹剂(例如DNase I,HO)的反应性增强。为了证明MHF分析的效用,我们从E sigma(70)RNA聚合酶-λPR启动子DNA复合物的非模板链的多次命中KMnO4足迹中量化片段分布和单个位点反应性,以结合平衡在37度下组装温度从37摄氏度降到0摄氏度后,在固定的时间瞬时填充C。对于该系统,MHF分析直接解决了以下问题:(i)启动子DNA分子中有多少部分是开放的转录起始位点(RPo)在37摄氏度和降档至0摄氏度后(短暂)附近; (ii)RPo中起始位点区域的开放是否完全在一个机理步骤中在λP-R启动子上发生?(iii)RPo的结构是否随温度变化?此外,我们使用MHF确定的KMnO4反应性(RPo)和非反应性启动子DNA的种群分布来归一化温度从37摄氏度降低到0摄氏度后RPo降解为自由启动子DNA的双相动力学,从而表征形成RPo涉及的构象变化的动力学。 (C)1998年学术出版社。 [参考:24]

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