Biophysics and Nanoscience Centre, CNISM, Facoltà di Scienze, Università della Tuscia, Viterbo, Italy.
J Mol Recognit. 2011 Jul-Aug;24(4):707-14. doi: 10.1002/jmr.1105.
The tumour suppressor p53 plays a crucial role in cell stress response and its anticancer activity is mainly down-regulated by the oncoprotein Mdm2 that, upon binding to p53, blocks its transcriptional activity and promotes its ubiquitin-dependent degradation. Targeting Mdm2-p53 interaction is believed to be the most direct of all p53-activating strategies to treat tumours in which p53 has retained its wild-type function. The bacterial protein Azurin has been shown to bind p53, inhibiting cancer cell proliferation likely through a post-translational increasing of the p53 level. This apparent antagonist action with respect to the Mdm2-p53 functional interaction suggests that binding of Azurin to p53 might interfere with the Mdm2-p53 association and, thus, preventing p53 from degradation. Toward this end, a detailed kinetic characterization of the binding interaction of these three proteins has been performed by surface plasmon resonance. The occurrence of specific binary interactions of both Azurin and Mdm2 with p53, as investigated more appropriately in their full-length conformation, is ascertained and the corresponding association and dissociation rate constants are measured. Interestingly enough, the three proteins are likely engaged in a ternary interaction, whose kinetics points out that binding of Azurin to p53 causes a significant decrease of the Mdm2-p53 association rate constant and binding affinity, without hindering the accessibility of Mdm2 to the binding pocket of p53. The Azurin-induced p53 conformational change, as demonstrated by circular dichroism, suggests that the protein may affect Mdm2-p53 association through an allosteric mechanism, which could give an useful insight into designing new anticancer drugs.
肿瘤抑制因子 p53 在细胞应激反应中发挥着关键作用,其抗癌活性主要受到癌蛋白 Mdm2 的下调,Mdm2 与 p53 结合后,会阻断其转录活性并促进其泛素依赖性降解。靶向 Mdm2-p53 相互作用被认为是所有激活 p53 治疗肿瘤的最直接策略,这些肿瘤保留了野生型 p53 功能。已经表明细菌蛋白 Azurin 可以与 p53 结合,通过翻译后增加 p53 水平来抑制癌细胞增殖。这种与 Mdm2-p53 功能相互作用的明显拮抗作用表明,Azurin 与 p53 的结合可能干扰 Mdm2-p53 的结合,从而防止 p53 降解。为此,通过表面等离子体共振对这三种蛋白质的结合相互作用进行了详细的动力学特征分析。通过全长构象更恰当地研究了 Azurin 和 Mdm2 与 p53 的特定二元相互作用的发生,并测量了相应的结合和解离速率常数。有趣的是,这三种蛋白质可能参与了三元相互作用,其动力学表明,Azurin 与 p53 的结合导致 Mdm2-p53 结合速率常数和结合亲和力的显著降低,而不阻碍 Mdm2 与 p53 结合口袋的结合。圆二色性实验表明,Azurin 诱导的 p53 构象变化表明该蛋白可能通过变构机制影响 Mdm2-p53 的结合,这为设计新的抗癌药物提供了有用的见解。