首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Supercoiling and denaturation in Gal repressor/heat unstable nucleoid protein (HU)-mediated DNA looping
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Supercoiling and denaturation in Gal repressor/heat unstable nucleoid protein (HU)-mediated DNA looping

机译:Gal阻遏物/热不稳定核苷酸蛋白(HU)介导的DNA循环中的超螺旋和变性

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摘要

The overall topology of DNA profoundly influences the regulation of transcription and is determined by DNA flexibility as well as the binding of proteins that induce DNA torsion, distortion, and/or looping. Gal repressor (GalR) is thought to repress transcription from the two promoters of the gal operon of Escherichia coli by forming a DNA loop of ≈40 nm of DNA that encompasses the promoters. Associated evidence of a topological regulatory mechanism of the transcription repression is the requirement for a supercoiled DNA template and the histone-like heat unstable nucleoid protein (HU). By using single-molecule manipulations to generate and finely tune tension in DNA molecules, we directly detected GalR/HU-mediated DNA looping and characterized its kinetics, thermodynamics, and supercoiling dependence. The factors required for gal DNA looping in single-molecule experiments (HU, GalR and DNA supercoiling) correspond exactly to those necessary for gal repression observed both in vitro and in vivo. Our single-molecule experiments revealed that negatively supercoiled DNA, under slight tension, denatured to facilitate GalR/HU-mediated DNA loop formation. Such topological intermediates may operate similarly in other multiprotein complexes of transcription, replication, and recombination.
机译:DNA的整体拓扑结构深刻影响转录的调节,并由DNA的柔韧性以及诱导DNA扭曲,变形和/或成环的蛋白质结合决定。 Gal阻遏物(GalR)被认为通过形成一个约40 nm的DNA环(包括启动子)来抑制大肠杆菌gal操纵子的两个启动子的转录。转录抑制的拓扑调节机制的相关证据是对超螺旋DNA模板和组蛋白样热不稳定核苷酸蛋白(HU)的需求。通过使用单分子操作来生成和微调DNA分子中的张力,我们直接检测了GalR / HU介导的DNA环,并表征了其动力学,热力学和超螺旋依赖性。在单分子实验中,gal DNA环化所需的因子(HU,GalR和DNA超螺旋)与在体内和体外观察到的gal抑制所需的因子完全对应。我们的单分子实验表明,负超螺旋DNA在轻微的张力下会变性,以促进GalR / HU介导的DNA环的形成。这样的拓扑中间体可以在转录,复制和重组的其他多蛋白复合物中类似地起作用。

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