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首页> 外文期刊>Journal of Molecular Biology >One-Dimensional Sliding of p53 Along DNA Is Accelerated in the Presence of Ca2+ or Mg2+ at Millimolar Concentrations
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One-Dimensional Sliding of p53 Along DNA Is Accelerated in the Presence of Ca2+ or Mg2+ at Millimolar Concentrations

机译:在Ca2 +或Mg2 +浓度为毫摩尔的条件下,p53沿DNA的一维滑动得以加速。

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摘要

One-dimensional (1D) sliding of the tumor suppressor p53 along DNA is an essential dynamics required for its efficient search for the binding sites in the genome. To address how the search process of p53 is affected by the changes in the concentration of Mg2+ and Ca2+ after the cell damages, we investigated its sliding dynamics at different concentrations of the divalent cations. The 1D sliding trajectories of p53 along the stretched DNA were measured by using single-molecule fluorescence microscopy. The averaged diffusion coefficient calculated from the mean square displacement of p53 on DNA increased significantly at the higher concentration of Mg2+ or Ca2+, indicating that the divalent cations accelerate the sliding likely by weakening the DNA p53 interaction. In addition, two distributions were identified in the displacement of the observed trajectories of p53, demonstrating the presence of the fast and slow sliding modes having large and small diffusion coefficients, respectively. A coreless mutant of p53, in which the core domain was deleted, showed only a single mode whose diffusion coefficient is about twice that of the fast mode for the full-length p53. Thus, the two modes are likely the result of the tight and loose interactions between the core domain of p53 and DNA. These results demonstrated clearly that the 1D sliding dynamics of p53 is strongly dependent on the concentration of Mg2+ and Ca2+, which maintains the search distance of p53 along DNA in cells that lost homeostatic control of the divalent cations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:肿瘤抑制因子p53沿DNA的一维(1D)滑动是有效搜索基因组结合位点所需的基本动力学。为了解决细胞损伤后Mg2 +和Ca2 +浓度变化对p53的搜索过程的影响,我们研究了在不同浓度的二价阳离子下其滑动动力学。通过使用单分子荧光显微镜测量p53沿着拉伸的DNA的一维滑动轨迹。在较高的Mg2 +或Ca2 +浓度下,根据p53在DNA上的均方位移计算出的平均扩散系数显着增加,表明二价阳离子可能通过削弱DNA p53相互作用来加速滑动。此外,在观察到的p53轨迹的位移中发现了两个分布,这表明分别存在具有大和小的扩散系数的快速和慢速滑动模式。 p53的无核突变体(其中的核心结构域被删除)仅显示出单一模式,其扩散系数约为全长p53快速模式的扩散系数的两倍。因此,这两种模式可能是p53核心结构域与DNA之间紧密和松散相互作用的结果。这些结果清楚地表明,p53的一维滑动动力学强烈依赖于Mg2 +和Ca2 +的浓度,从而维持了p53在失去对二价阳离子稳态控制的细胞中沿着DNA的搜索距离。 (C)2015 Elsevier Ltd.保留所有权利。

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