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p53 寡聚物的稳定性:p53 的四聚化影响其稳定性。

Stability of p53 oligomers: Tetramerization of p53 impinges on its stability.

机构信息

School of Biology, Indian Institute of Science Education and Research Thiruvananthapuram, Thiruvananthapuram, 695551, Kerala, India.

School of Biology, Indian Institute of Science Education and Research Thiruvananthapuram, Thiruvananthapuram, 695551, Kerala, India.

出版信息

Biochimie. 2021 Oct;189:99-107. doi: 10.1016/j.biochi.2021.06.012. Epub 2021 Jun 28.

DOI:10.1016/j.biochi.2021.06.012
PMID:34197865
Abstract

The p53 protein has been known to exist structurally in three different forms inside the cells. Earlier studies have reported the predominance of the lower oligomeric forms of p53 over its tetrameric form inside the cells, although only the tetrameric p53 contributes to its transcriptional activity. However, it remains unclear the functional relevance of the existence of other p53 oligomers inside the cells. In this study, we characterize the stability and conformational state of tetrameric, dimeric and monomeric p53 that spans both DNA Binding Domain (DBD) and Tetramerization Domain (TD) of human p53 (94-360 amino acid residues). Intriguingly, our studies reveal an unexpected drastic reduction in tetrameric p53 thermal stability in comparison to its dimeric and monomeric form with a higher propensity to aggregate at physiological temperature. Our EMSA study suggests that tetrameric p53, not their lower oligomeric counterpart, exhibit rapid loss of binding to their consensus DNA elements at the physiological temperature. This detrimental effect of destabilization is imparted due to the tetramerization of p53 that drives the DBDs to misfold at a faster pace when compared to its lower oligomeric form. This crosstalk between DBDs is achieved when it exists as a tetramer but not as dimer or monomer. Our findings throw light on the plausible reason for the predominant existence of p53 in dimer and monomer forms inside the cells with a lesser population of tetramer form. Therefore, the transient disruption of tetramerization between TDs could be a potential cue for the stabilization of p53 inside the cells.

摘要

p53 蛋白在细胞内已被证实以三种不同的结构形式存在。早期的研究报告称,p53 的低聚形式在细胞内比其四聚体形式更为普遍,尽管只有四聚体 p53 有助于其转录活性。然而,细胞内其他 p53 低聚物的存在的功能相关性仍不清楚。在这项研究中,我们对跨越人类 p53(94-360 个氨基酸残基)的 DNA 结合域(DBD)和四聚化域(TD)的四聚体、二聚体和单体 p53 的稳定性和构象状态进行了表征。有趣的是,我们的研究揭示了与二聚体和单体形式相比,四聚体 p53 的热稳定性出乎意料地大幅降低,在生理温度下更倾向于聚集。我们的 EMSA 研究表明,四聚体 p53,而不是其低聚体形式,在生理温度下迅速失去与其共识 DNA 元件的结合。这种失稳的有害影响是由于 p53 的四聚化导致 DBD 更快地错误折叠,与低聚体形式相比。当它以四聚体形式存在而不是二聚体或单体形式时,这种 DBD 之间的串扰就会发生。我们的发现揭示了 p53 在细胞内以二聚体和单体形式主要存在而四聚体形式较少的可能原因。因此,TD 之间四聚体的短暂破坏可能是稳定细胞内 p53 的潜在线索。

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