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首页> 外文期刊>Journal of Structural Biology >Polymer-mediated compaction and internal dynamics of isolated Escherichia coli nucleoids
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Polymer-mediated compaction and internal dynamics of isolated Escherichia coli nucleoids

机译:聚合物介导的压实和分离的大肠杆菌核苷的内部动力学

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摘要

Nucleoids of Escherichia coli were isolated by osmotic shock under conditions of low salt in the absence of added polyamines or Mg2+. As determined by fluorescence microscopy, the isolated nucleoids in 0.2 M NaCl are expanded structures with an estimated volume of about 27 mum(3) according to a procedure based on a 50% threshold for the fluorescence intensity. The nucleoid volume is measured as a function of the concentration of added polyethylene glycol. The collapse is a continuous process, so that a coil-globule transition is not witnessed. The Helmholtz free energy of the nucleoids is determined via the depletion interaction between the DNA helix and the polyethylene glycol chains. The resulting compaction relation is discussed in terms of the current theory of branched DNA supercoils and it is concluded that the in vitro nucleoid is crosslinked in a physical sense. Despite the congested and crosslinked state of the nucleoid, the relaxation rate of its superhelical segments, as monitored by dynamic light scattering, turns out to be purely diffusional. At small scales, the nucleoid behaves as a fluid.
机译:在低盐条件下,在不添加多胺或Mg2 +的情况下,通过渗透休克法分离大肠埃希氏菌。如通过荧光显微镜检查所确定的,根据基于50%荧光强度阈值的方法,0.2 M NaCl中分离的核苷为扩展结构,估计体积约为27 mum(3)。根据添加的聚乙二醇的浓度来测量核苷体积。坍塌是一个连续的过程,因此不会看到线圈-小球过渡。核苷的亥姆霍兹自由能是通过DNA螺旋和聚乙二醇链之间的耗竭相互作用确定的。根据目前分支的DNA超螺旋理论讨论了产生的紧密关系,并得出结论,体外核苷在物理意义上是交联的。尽管核苷处于拥挤和交联状态,但通过动态光散射监测,其超螺旋节段的弛豫速率却证明是纯粹的扩散。在小规模上,类核仁表现为流体。

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