...
首页> 外文期刊>The Journal of Chemical Physics >Entropic elasticity and dynamics of the bacterial chromosome: A simulation study
【24h】

Entropic elasticity and dynamics of the bacterial chromosome: A simulation study

机译:细菌染色体的熵弹性和动力学:模拟研究

获取原文
获取原文并翻译 | 示例
           

摘要

We study the compression and extension dynamics of a DNA-like polymer interacting with non-DNA binding and DNA-binding proteins, by means of computer simulations. The geometry we consider is inspired by recent experiments probing the compressional elasticity of the bacterial nucleoid (DNA plus associated proteins), where DNA is confined into a cylindrical container and subjected to the action of a "piston"-a spherical bead to which an external force is applied. We quantify the effect of steric interactions (excluded volume) on the force-extension curves as the polymer is compressed. We find that non-DNA-binding proteins, even at low densities, exert an osmotic force which can be a lot larger than the entropic force exerted by the compressed DNA. The trends we observe are qualitatively robust with respect to changes in protein sizes and are similar for neutral and charged proteins (and DNA). We also quantify the dynamics of DNA expansion following removal of the "piston": while the expansion is well fitted by power laws, the apparent exponent depends on protein concentration and protein-DNA interaction in a significant way. We further highlight an interesting kinetic process which we observe during the expansion of DNA interacting with DNA-binding proteins when the interaction strength is intermediate: the proteins bind while the DNA is packaged by the compression force, but they "pop-off" one-by-one as the force is removed, leading to a slow unzipping kinetics. Finally, we quantify the importance of supercoiling, which is an important feature of bacterial DNA in vivo. Published by AIP Publishing.
机译:我们通过计算机模拟研究与非DNA结合和DNA结合蛋白相互作用的DNA样聚合物的压缩和扩展动力学。我们考虑的几何体是由最近的实验启发,探测细菌核(DNA加相关蛋白)的压缩弹性,其中DNA被限制在圆柱形容器中并经受外部的“活塞”-a球形珠的作用。施用力量。当聚合物被压缩时,我们量化了空间相互作用(排除体积)对力 - 延伸曲线的影响。我们发现非DNA结合蛋白,即使在低密度下,也施加渗透力,这可能比被压缩DNA施加的熵力大得多。我们观察到的趋势对于蛋白质尺寸的变化而言,具有定性稳健,并且类似于中性和带电蛋白质(和DNA)。我们还通过释放“活塞”后量化DNA扩展的动态:虽然膨胀井是良好的动力法,所以表观指数取决于蛋白质浓度和蛋白质-DNA相互作用以显着的方式。我们进一步突出了一种有趣的动力学过程,当相互作用强度是中间体时,在与DNA结合蛋白相互作用时观察到在与DNA结合蛋白相互作用的膨胀期间:蛋白质粘合,而DNA通过压缩力包装,但它们“弹出”一逐渐被移除,导致缓慢解压缩动力学。最后,我们量化了超级录的重要性,这是体内细菌DNA的重要特征。通过AIP发布发布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号