Lia Giuseppe, Bensimon David, Croquette Vincent, Allemand Jean-Francois, Dunlap David, Lewis Dale E A, Adhya Sankar, Finzi Laura
Department of Biology, University of Milan, 20133 Milan, Italy.
Proc Natl Acad Sci U S A. 2003 Sep 30;100(20):11373-7. doi: 10.1073/pnas.2034851100. Epub 2003 Sep 18.
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 approximately 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.
DNA的整体拓扑结构深刻影响转录调控,它由DNA柔韧性以及诱导DNA扭转、扭曲和/或成环的蛋白质结合所决定。人们认为,半乳糖阻遏蛋白(GalR)通过形成一个包含约40纳米DNA且环绕启动子的DNA环,来抑制大肠杆菌半乳糖操纵子两个启动子的转录。转录抑制的拓扑调控机制的相关证据是需要超螺旋DNA模板和类组蛋白热不稳定核仁蛋白(HU)。通过使用单分子操作在DNA分子中产生并微调张力,我们直接检测到GalR/HU介导的DNA成环,并对其动力学、热力学和超螺旋依赖性进行了表征。单分子实验中半乳糖DNA成环所需的因素(HU、GalR和DNA超螺旋)与体外和体内观察到的半乳糖抑制所需因素完全一致。我们的单分子实验表明,在轻微张力下,负超螺旋DNA会变性以促进GalR/HU介导的DNA环形成。这种拓扑中间体可能在转录、复制和重组的其他多蛋白复合物中发挥类似作用。