首页> 外文期刊>Biophysical Journal >DNA modeling reveals an extended lac repressor conformation in classic in vitro binding assays.
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DNA modeling reveals an extended lac repressor conformation in classic in vitro binding assays.

机译:DNA建模揭示了经典体外结合测定中扩展的lac阻遏物构象。

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Protein-mediated DNA looping, such as that induced by the lactose repressor (LacI) of Escherichia coli, is a well-known gene regulation mechanism. Although researchers have given considerable attention to DNA looping by LacI, many unanswered questions about this mechanism, including the role of protein flexibility, remain. Recent single-molecule observations suggest that the two DNA-binding domains of LacI are capable of splaying open about the tetramerization domain into an extended conformation. We hypothesized that if recent experiments were able to reveal the extended conformation, it is possible that such structures occurred in previous studies as well. In this study, we tested our hypothesis by reevaluating two classic in vitro binding assays using a computational rod model of DNA. The experiments and computations evaluate the looping of both linear DNA and supercoiled DNA minicircles over a broad range of DNA interoperator lengths. The computed energetic minima align well with the experimentally observed interoperator length for optimal loop stability. Of equal importance, the model reveals that the most stable loops for linear DNA occur when LacI adopts the extended conformation. In contrast, for DNA minicircles, optimal stability may arise from either the closed or the extended protein conformation depending on the degree of supercoiling and the interoperator length.
机译:蛋白质介导的DNA环形成,例如由大肠杆菌的乳糖阻遏物(LacI)诱导的环,是众所周知的基因调控机制。尽管研究人员对LacI的DNA循环给予了相当大的关注,但是关于该机制的许多未解决的问题,包括蛋白质柔韧性的作用,仍然存在。最近的单分子观察表明,LacI的两个DNA结合结构域能够在四聚化结构域周围展开成扩展的构象。我们假设,如果最近的实验能够揭示扩展的构象,那么以前的研究也可能会出现这种结构。在这项研究中,我们通过使用DNA的计算杆模型重新评估两个经典的体外结合测定法来检验我们的假设。实验和计算评估了线性DNA和超螺旋DNA小圆在宽范围的DNA互操作子长度上的环。计算出的能量最小值与实验观察到的互操作器长度完全吻合,以获得最佳的环路稳定性。同样重要的是,该模型显示,当LacI采用扩展构象时,线性DNA的最稳定环出现。相反,对于DNA小环,取决于超螺旋的程度和互操作者的长度,最佳的稳定性可能来自封闭的或扩展的蛋白质构象。

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