Biophysics and Nanoscience Centre, CNISM, Facoltà di Scienze, Università della Tuscia, Largo, dell'Università-01100 Viterbo, Italy.
Phys Chem Chem Phys. 2011 Feb 21;13(7):2738-43. doi: 10.1039/c0cp01474e. Epub 2010 Dec 10.
The complex between the tumor suppressor p53 and its down-regulator Mdm2 has been studied by dynamic force spectroscopy and the unbinding data have been analyzed in the framework of the Jarzynski theoretical approach. Accordingly, the unbinding equilibrium free energy has been determined from the work done along several non-equilibrium paths from the bound to the unbound state in the single molecule regime. An unbinding free energy of -8.4 kcal mol(-1) has been found for the complex; such a value is in a good agreement with that measured both in the bulk by isothermal titration calorimetry and that obtained from theoretical computing at the single molecule level. The determination of the unbinding free energy, together with the knowledge of the dissociation rate constant and energy barrier width, as previously obtained by dynamic force spectroscopy, adds rewarding insights on the energy landscape for this complex which is currently at the focus of anticancer drug design.
已通过动态力谱研究了肿瘤抑制因子 p53 与其下调因子 Mdm2 之间的复合物,并在 Jarzynski 理论方法的框架内分析了非平衡路径的解结合数据。因此,从单分子状态下从结合态到非结合态的多条非平衡路径所做的功中确定了非平衡结合平衡自由能。复合物的非平衡结合自由能为-8.4 kcal/mol;该值与通过等温热滴定法在体测量的值以及通过单分子水平的理论计算得到的值非常吻合。非平衡结合自由能的测定,以及先前通过动态力谱获得的解离速率常数和能量势垒宽度的知识,为目前处于抗癌药物设计焦点的这种复合物的能量景观提供了有价值的见解。