Chen Yang, Gao Tianyong, Wang Yanwei, Yang Guangcan
School of Physics and Electronic Information, Wenzhou University, Wenzhou 325035, China.
Int J Mol Sci. 2017 Jul 21;18(7):1585. doi: 10.3390/ijms18071585.
p53 is a tumor suppressor protein that plays a significant role in apoptosis and senescence, preserving genomic stability, and preventing oncogene expression. Metal ions, such as magnesium and zinc ions, have important influences on p53-DNA interactions for stabilizing the structure of the protein and enhancing its affinity to DNA. In the present study, we systematically investigated the interaction of full length human protein p53 with DNA in metal ion solution by atomic force microscopy (AFM). The p53-DNA complexes at various p53 concentrations were scanned by AFM and their images are used to measure the dissociation constant of p53-DNA binding by a statistical method. We found that the dissociation constant of p53 binding DNA is 328.02 nmol/L in physiological buffer conditions. The influence of magnesium ions on p53-DNA binding was studied by AFM at various ion strengths through visualization. We found that magnesium ions significantly stimulate the binding of the protein to DNA in a sequence-independent manner, different from that stimulated by zinc. Furthermore, the high concentrations of magnesium ions can promote p53 aggregation and even lead to the formation of self-assembly networks of DNA and p53 proteins. We propose an aggregation and self-assembly model based on the present observation and discuss its biological meaning.
p53是一种肿瘤抑制蛋白,在细胞凋亡和衰老、维持基因组稳定性以及抑制癌基因表达方面发挥着重要作用。金属离子,如镁离子和锌离子,对p53与DNA的相互作用具有重要影响,可稳定蛋白质结构并增强其与DNA的亲和力。在本研究中,我们通过原子力显微镜(AFM)系统地研究了全长人p53蛋白在金属离子溶液中与DNA的相互作用。利用AFM扫描不同p53浓度下的p53-DNA复合物,并通过统计方法用其图像测量p53-DNA结合的解离常数。我们发现在生理缓冲条件下,p53与DNA结合的解离常数为328.02 nmol/L。通过可视化,利用AFM在不同离子强度下研究了镁离子对p53-DNA结合的影响。我们发现镁离子以序列非依赖的方式显著刺激蛋白质与DNA的结合,这与锌离子的刺激方式不同。此外,高浓度的镁离子可促进p53聚集,甚至导致DNA和p53蛋白自组装网络的形成。基于目前的观察结果,我们提出了一个聚集和自组装模型,并讨论了其生物学意义。