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首页> 外文期刊>Journal of Molecular Biology >Decreased imino proton exchange and base-pair opening in the IHF-DNA complex measured by NMR.
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Decreased imino proton exchange and base-pair opening in the IHF-DNA complex measured by NMR.

机译:通过NMR测定,IHF-DNA络合物中亚氨基质子交换和碱基对开放性降低。

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Integration Host Factor, IHF, is an E. coli DNA binding protein that imposes a substantial bend on DNA. Previous footprinting studies and bending assays have characterized several recognition sequences in the bacterial and lambda phage genome as unique in the way they are bound by IHF. We have chosen one of the lambda phage sites, H1, for study because it presents a small yet sequence-specific substrate for NMR analysis of the complex. A 19 base-pair duplex, H19, corresponding to the recognition sequence at the H1 site was constructed by isotopically labeling one of the strands with 15N. (1H, 15N) heteronuclear NMR experiments aided in assigning the imino proton resonances of the DNA alone and in complex with IHF. The NMR results are consistent with a mode of binding observed in the recent crystal structure of IHF bound to another of its sites from the lambda phage genome. Additionally, the dramatic change that IHF imposes on the imino proton chemical shifts is indicative of a severe deviation from canonical B-DNA structure. In order to understand the dynamic properties of the DNA in the complex with IHF, the exchange rates of the imino protons with the solvent have been measured for H19 with and without IHF bound. A drastic reduction in exchange is observed for the imino protons in the IHF bound DNA. In the DNA-protein complex, groups of adjacent base-pair exchange at the same rate, and appear to close more slowly than the rate of imino proton exchange with bulk water, since their exchange rate is independent of catalyst concentration. We infer that segments of the double helix as large as 6 bp open in a cooperative process, and remain open much longer than is typical for opening fluctuations in naked duplex DNA. We discuss these results in terms of the specific protein-DNA contacts observed in the crystal structure. Copyright 1999 Academic Press.
机译:整合宿主因子IHF是一种大肠杆菌DNA结合蛋白,可对DNA产生实质性影响。先前的足迹研究和弯曲测定已将细菌和λ噬菌体基因组中的几个识别序列表征为与IHF结合的独特方式。我们选择了一个λ噬菌体位点H1进行研究,因为它为核磁共振谱分析提供了一个小的序列特异性底物。通过用15N同位素标记一条链,构建了对应于H1位点识别序列的19个碱基对双链体H19。 (1H,15N)异核NMR实验有助于确定DNA单独或与IHF配合使用时的亚氨基质子共振。 NMR结果与在IHF的最新晶体结构中观察到的结合模式相吻合,该IHF与λ噬菌体基因组的另一个位点结合。另外,IHF对亚氨基质子化学位移的剧烈变化表明与标准B-DNA结构存在严重偏差。为了了解DNA在具有IHF的复合物中的动态特性,已测量了有和没有IHF结合的H19的亚氨基质子与溶剂的交换速率。在IHF结合的DNA中观察到亚氨基质子交换的急剧减少。在DNA-蛋白质复合物中,相邻碱基对的基团以相同的速率交换,并且闭合的速度似乎比亚氨基质子与散装水的交换速率更慢,因为它们的交换速率与催化剂浓度无关。我们推断,在合作过程中,双螺旋片段的最大片段为6 bp,并且与裸露的双链DNA的开放波动相比,开放的时间长得多。我们根据在晶体结构中观察到的特定蛋白质-DNA接触来讨论这些结果。版权所有1999,学术出版社。

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