首页> 外文期刊>Journal of chemical theory and computation: JCTC >Effects of Protein-Induced Local Bending and Sequence Dependence on the Configurations of Supercoiled DNA Minicircles
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Effects of Protein-Induced Local Bending and Sequence Dependence on the Configurations of Supercoiled DNA Minicircles

机译:蛋白质诱导的局部弯曲和序列依赖性对超硅酸DNA小碱基配置的影响

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摘要

The statistical mechanics of a short circularized DNA molecule, a DNA minicircle, with a prescribed linking number depends heavily on the mechanical and geometrical properties of the DNA, which are known to be functions of the sequence. A description of a general numerical scheme used for the performed advanced simulation is presented with examples that reveal the effects of sequence dependence and local deformations, caused by protein binding, on the configurations in a canonical ensemble of a supercoiled minicircle. Using a realistic course grain model in which the sequence-dependent elasticity, the intramolecular electrostatic interactions, and the impenetrability of the DNA molecule are taken into account, the bifurcation of equilibria of supercoiled minicircle DNA with the induced bending as a parameter is shown. The unique Monte Carlo scheme for constrained DNA molecules was utilized in order to calculate site-to-site distance probabilities for each pair of sites in the molecule. The simulated examples show not only that the sequence alone can play a significant role in bringing two remote sites to a contact but also the possible existence of several competing regions of contact. The results suggest that the local deformation caused by protein binding can yield a global configurational change, dominated by slithering motion, which brings two (originally) remote sites to close proximity, and that the nature of such effect is related to the sequence architecture.
机译:短圆形DNA分子(DNA Minicircle)的统计力学,具有规定的连接数大量取决于DNA的机械和几何特性,已知是序列的功能。用于执行的高级模拟的一般数值方案的描述提出了揭示由蛋白质结合引起的序列依赖性和局部变形的效果的实例,在超硅砾碎石的规范集合中的配置中。考虑到序列依赖弹性,分子内静电相互作用和DNA分子的普遍能量的现实课程晶粒模型,示出了作为参数的诱导弯曲的超硅酸型小核DNA的平衡分叉。利用约束DNA分子的独特蒙特卡罗方案以计算分子中每对位点的部位对现场距离概率。模拟的实施例不仅示出了单独的序列可以在将两个远程站点带到联系人中来发挥重大作用,而且可以在接触到触点中可能存在的可能存在。结果表明,由蛋白质结合引起的局部变形可以产生由滑动运动主导的全局配置变化,这使两个(最初)远程站点靠近,并且这种效果的性质与序列架构有关。

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