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Detection of DNA looping due to simultaneous interaction of a DNA-binding protein with two spatially separated binding sites on DNA.

机译:由于DNA结合蛋白与DNA上两个空间上分离的结合位点同时相互作用而导致的DNA环的检测。

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摘要

We describe different and relatively rapid biochemical techniques to detect protein-mediated DNA looping. These techniques, based on enhancement of DNA knotting and that of ligase-catalyzed cyclization, were used to show that the replication initiator protein of plasmid R6K can bring together two intramolecular gamma origin of replication sequences located as far apart as 2 kilobases. The site-site interaction causes looping out of the intervening DNA sequence as visualized by electron microscopy. Because the autoregulatory sequence of the initiator cistron also binds initiator protein, we investigated whether the gamma origin-bound protein can participate in autoregulation by interaction of the two sites through a protein bridge. We discovered that the two sites do not interact in vitro at their natural locations when on opposite faces of the double helix. Moving the two sites to the same face of the double helix by introducing a half turn into the intervening sequence allows protein-mediated site-site interaction to occur.
机译:我们描述了不同的且相对较快的生化技术来检测蛋白质介导的DNA循环。这些技术基于增强的DNA打结和连接酶催化的环化技术,用于显示质粒R6K的复制起始蛋白可以将两个分子内的γ起始复制序列相距2个碱基。通过电子显微镜观察,位点-位点的相互作用导致插入DNA序列的循环。由于引发剂顺反子的自动调节序列也结合了引发剂蛋白,因此我们研究了γ-起始结合蛋白是否可以通过蛋白桥通过两个位点的相互作用参与自动调节。我们发现,当在双螺旋的相对面上时,这两个位点在其自然位置处不会在体外相互作用。通过在插入序列中引入半个圈,将两个位点移至双螺旋的同一面,可以发生蛋白质介导的位点-位点相互作用。

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