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金属离子对肿瘤抑制蛋白p53 DNA结合结构域结构稳定性的影响。

Effect of metal ion on the structural stability of tumour suppressor protein p53 DNA-binding domain.

作者信息

Xue Yonglai, Wang Shuai, Feng Xizeng

机构信息

Nankai University at Tianjin, P. R. China.

出版信息

J Biochem. 2009 Aug;146(2):193-200. doi: 10.1093/jb/mvp055. Epub 2009 Apr 3.

Abstract

The tumour suppressor protein p53 is a sequence-specific transcription factor that coordinates one molecule of zinc in the core domain. In our recent study, magnesium can also bind to the p53DBD and enhance its DNA-binding activity. In this study, a systematic analysis of the conformation and stability changes induced by these two metal ions was reported. The spectra of protein intrinsic fluorescence were used to measure the equilibrium unfolding of the p53DBD protein. The stability against chemical denaturation increased in the order apo < Mg(2+) < Zn(2+). The thermal stability monitored by DSC scans showed that the binding of metal ions to p53DBD increased the thermal stability of the protein. To explore additional information of structural changes after the binding of metal ions, we used the fluorescent probes to evaluate the hydrophobic surface exposure. The results established that metal ions binding increased hydrophobic exposure on the surface of p53DBD. Analysis of acrylamide quenching experiments revealed that the binding of metal ions to p53DBD induced a structural modification of the protein and this change provided significant protection against acrylamide quenching. Overall, the present results indicated that p53DBD underwent a conformational change upon the binding of metal ions, which was characterized by an increased stability of the protein.

摘要

肿瘤抑制蛋白p53是一种序列特异性转录因子,它在核心结构域中配位一个锌分子。在我们最近的研究中,镁也可以与p53的DNA结合结构域(p53DBD)结合并增强其DNA结合活性。在本研究中,报道了对这两种金属离子诱导的构象和稳定性变化的系统分析。利用蛋白质固有荧光光谱来测量p53DBD蛋白的平衡去折叠。抗化学变性的稳定性按无金属离子状态<Mg(2+)<Zn(2+)的顺序增加。通过差示扫描量热法(DSC)扫描监测的热稳定性表明,金属离子与p53DBD的结合增加了蛋白质的热稳定性。为了探索金属离子结合后结构变化的更多信息,我们使用荧光探针来评估疏水表面暴露情况。结果表明,金属离子结合增加了p53DBD表面的疏水暴露。丙烯酰胺猝灭实验分析表明,金属离子与p53DBD的结合诱导了蛋白质的结构修饰,这种变化提供了对丙烯酰胺猝灭的显著保护。总体而言,目前的结果表明,p53DBD在金属离子结合后发生了构象变化,其特征是蛋白质稳定性增加。

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