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特异性识别 p53 四聚体的肽源于 p53 相互作用蛋白。

Specific recognition of p53 tetramers by peptides derived from p53 interacting proteins.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem, Israel.

出版信息

PLoS One. 2012;7(5):e38060. doi: 10.1371/journal.pone.0038060. Epub 2012 May 31.

Abstract

Oligomerization plays a major role in regulating the activity of many proteins, and in modulating their interactions. p53 is a homotetrameric transcription factor that has a pivotal role in tumor suppression. Its tetramerization domain is contained within its C-terminal domain, which is a site for numerous protein-protein interactions. Those can either depend on or regulate p53 oligomerization. Here we screened an array of peptides derived from proteins known to bind the tetrameric p53 C-terminal domain (p53CTD) and identified ten binding peptides. We quantitatively characterized their binding to p53CTD using fluorescence anisotropy. The peptides bound tetrameric p53CTD with micromolar affinities. Despite the high charge of the binding peptides, electrostatics contributed only mildly to the interactions. NMR studies indicated that the peptides bound p53CTD at defined sites. The most significant chemical shift deviations were observed for the peptides WS100B(81-92), which bound directly to the p53 tetramerization domain, and PKCα(281-295), which stabilized p53CTD in circular dichroism thermal denaturation studies. Using analytical ultracentrifugation, we found that several of the peptides bound preferentially to p53 tetramers. Our results indicate that the protein-protein interactions of p53 are dependent on the oligomerization state of p53. We conclude that peptides may be used to regulate the oligomerization of p53.

摘要

寡聚化在调节许多蛋白质的活性和调节它们的相互作用方面起着重要作用。p53 是一种四聚体转录因子,在肿瘤抑制中起着关键作用。它的四聚体化结构域包含在其 C 端结构域内,该结构域是许多蛋白质-蛋白质相互作用的位点。这些相互作用可以依赖于或调节 p53 的寡聚化。在这里,我们筛选了一组源自已知与四聚体 p53 C 端结构域(p53CTD)结合的蛋白质的肽,并鉴定出十个结合肽。我们使用荧光各向异性定量地描述了它们与 p53CTD 的结合。这些肽以微摩尔亲和力结合四聚体 p53CTD。尽管结合肽的电荷很高,但静电相互作用的贡献很轻微。NMR 研究表明,这些肽在特定的位点结合 p53CTD。观察到最显著的化学位移偏差的肽是 WS100B(81-92),它直接结合到 p53 四聚化结构域,PKCα(281-295)在圆二色性热变性研究中稳定 p53CTD。使用分析超速离心,我们发现有几个肽优先结合 p53 四聚体。我们的结果表明,p53 的蛋白质-蛋白质相互作用依赖于 p53 的寡聚化状态。我们得出结论,肽可以用于调节 p53 的寡聚化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec4c/3365014/04c959217082/pone.0038060.g001.jpg

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