首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Differential Salt-Induced Dissociation of the p53 Protein Complexes with Circular and Linear Plasmid DNA Substrates Suggest Involvement of a Sliding Mechanism
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Differential Salt-Induced Dissociation of the p53 Protein Complexes with Circular and Linear Plasmid DNA Substrates Suggest Involvement of a Sliding Mechanism

机译:盐诱导的p53蛋白复合物与圆形和线性质粒DNA底物的差异离解表明涉及滑动机制。

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摘要

A study of the effects of salt conditions on the association and dissociation of wild type p53 with different ~3 kbp long plasmid DNA substrates (supercoiled, relaxed circular and linear, containing or lacking a specific p53 binding site, p53CON) using immunoprecipitation at magnetic beads is presented. Salt concentrations above 200 mM strongly affected association of the p53 protein to any plasmid DNA substrate. Strikingly different behavior was observed when dissociation of pre-formed p53-DNA complexes in increased salt concentrations was studied. While contribution from the p53CON to the stability of the p53-DNA complexes was detected between 100 and 170 mM KCl, p53 complexes with circular DNAs (but not linear) exhibited considerable resistance towards salt treatment for KCl concentrations as high as 2 M provided that the p53 basic C-terminal DNA binding site (CTDBS) was available for DNA binding. On the contrary, when the CTDBS was blocked by antibody used for immunoprecipitation, all p53-DNA complexes were completely dissociated from the p53 protein in KCl concentrations ≥200 mM under the same conditions. These observations suggest: (a) different ways for association and dissociation of the p53-DNA complexes in the presence of the CTDBS; and (b) a critical role for a sliding mechanism, mediated by the C-terminal domain, in the dissociation process.
机译:使用磁珠免疫沉淀研究盐条件对野生型p53与不同〜3 kbp长质粒DNA底物(超螺旋,松弛圆形和线性,含有或缺乏特定p53结合位点p53CON)的缔合和解离的影响被表达。盐浓度超过200 mM会强烈影响p53蛋白与任何质粒DNA底物的结合。当研究盐浓度升高时预形成的p53-DNA复合物的解离时,观察到了惊人的不同行为。虽然在100至170 mM KCl之间检测到p53CON对p53-DNA复合物稳定性的贡献,但对于高达2 M的KCl浓度,具有环状DNA(但不是线性)的p53复合物表现出相当大的抗盐处理能力。 p53基本的C端DNA结合位点(CTDBS)可用于DNA结合。相反,当CTDBS被用于免疫沉淀的抗体封闭时,在相同条件下,KCl浓度≥200 mM时,所有p53-DNA复合物都与p53蛋白完全分离。这些观察结果表明:(a)在存在CTDBS的情况下p53-DNA复合物缔合和解离的不同方式; (b)在解离过程中由C末端结构域介导的滑动机制的关键作用。

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