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预测 MdmX 在精细调节 p53 对 DNA 损伤反应中的功能。

Predicted functions of MdmX in fine-tuning the response of p53 to DNA damage.

机构信息

Laboratory of Molecular Pharmacology, National Cancer Institute, National Institute of Health, Bethesda, Maryland, United States of America.

出版信息

PLoS Comput Biol. 2010 Feb 5;6(2):e1000665. doi: 10.1371/journal.pcbi.1000665.

Abstract

Tumor suppressor protein p53 is regulated by two structurally homologous proteins, Mdm2 and MdmX. In contrast to Mdm2, MdmX lacks ubiquitin ligase activity. Although the essential interactions of MdmX are known, it is not clear how they function to regulate p53. The regulation of tumor suppressor p53 by Mdm2 and MdmX in response to DNA damage was investigated by mathematical modeling of a simplified network. The simplified network model was derived from a detailed molecular interaction map (MIM) that exhibited four coherent DNA damage response pathways. The results suggest that MdmX may amplify or stabilize DNA damage-induced p53 responses via non-enzymatic interactions. Transient effects of MdmX are mediated by reservoirs of p53ratioMdmX and Mdm2ratioMdmX heterodimers, with MdmX buffering the concentrations of p53 and/or Mdm2. A survey of kinetic parameter space disclosed regions of switch-like behavior stemming from such reservoir-based transients. During an early response to DNA damage, MdmX positively or negatively regulated p53 activity, depending on the level of Mdm2; this led to amplification of p53 activity and switch-like response. During a late response to DNA damage, MdmX could dampen oscillations of p53 activity. A possible role of MdmX may be to dampen such oscillations that otherwise could produce erratic cell behavior. Our study suggests how MdmX may participate in the response of p53 to DNA damage either by increasing dependency of p53 on Mdm2 or by dampening oscillations of p53 activity and presents a model for experimental investigation.

摘要

肿瘤抑制蛋白 p53 受两种结构同源的蛋白质 Mdm2 和 MdmX 调控。与 Mdm2 不同,MdmX 缺乏泛素连接酶活性。尽管已知 MdmX 的基本相互作用,但尚不清楚它们如何发挥作用来调节 p53。通过对简化网络的数学建模,研究了 Mdm2 和 MdmX 对 DNA 损伤的肿瘤抑制蛋白 p53 的调节作用。简化网络模型源自显示四个协调一致的 DNA 损伤反应途径的详细分子相互作用图 (MIM)。结果表明,MdmX 可以通过非酶相互作用放大或稳定 DNA 损伤诱导的 p53 反应。MdmX 的瞬时效应通过 p53ratioMdmX 和 Mdm2ratioMdmX 异二聚体的储库介导,其中 MdmX 缓冲 p53 和/或 Mdm2 的浓度。对动力学参数空间的调查揭示了源于此类基于储库的瞬变的开关样行为区域。在对 DNA 损伤的早期反应中,MdmX 根据 Mdm2 的水平正向或负向调节 p53 活性,导致 p53 活性的放大和开关样反应。在对 DNA 损伤的晚期反应中,MdmX 可以抑制 p53 活性的振荡。MdmX 的一个可能作用可能是抑制这种振荡,否则可能导致细胞行为不规则。我们的研究表明,MdmX 如何通过增加 p53 对 Mdm2 的依赖性或通过抑制 p53 活性的振荡来参与 p53 对 DNA 损伤的反应,并提出了一个用于实验研究的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fffa/2824598/56519032f193/pcbi.1000665.g001.jpg

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