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MDM2–MDM4 molecular interaction investigated by atomic force spectroscopy and surface plasmon resonance

机译:MDM2–MDM4分子相互作用的原子力光谱和表面等离子体共振研究

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摘要

Murine double minute 2 (MDM2) and 4 (MDM4) are known as the main negative regulators of p53, a tumor suppressor. They are able to form heterodimers that are much more effective in the downregulation of p53. Therefore, the MDM2–MDM4 complex could be a target for promising therapeutic restoration of p53 function. To this aim, a deeper understanding of the molecular mechanisms underlining the heterodimerization is needed. The kinetic and thermodynamic characterization of the MDM2–MDM4 complex was performed with two complementary approaches: atomic force spectroscopy and surface plasmon resonance. Both techniques revealed an equilibrium dissociation constant (KD) in the micromolar range for the MDM2–MDM4 heterodimer, similar to related complexes involved in the p53 network. Furthermore, the MDM2–MDM4 complex is characterized by a relatively high free energy, through a single energy barrier, and by a lifetime in the order of tens of seconds. New insights into the MDM2–MDM4 interaction could be highly important for developing innovative anticancer drugs focused on p53 reactivation.
机译:鼠双分2(MDM2)和4(MDM4)被称为p53的主要负调控因子,p53是一种肿瘤抑制因子。它们能够形成异源二聚体,其在下调p53时更为有效。因此,MDM2–MDM4复合物可能成为有望恢复p53功能的靶标。为了这个目的,需要对构成异二聚化基础的分子机理有更深入的了解。 MDM2-MDM4复合物的动力学和热力学表征通过两种互补的方法进行:原子力光谱法和表面等离子体共振。两种技术都揭示了MDM2–MDM4异二聚体的微摩尔范围内的平衡解离常数(KD),类似于p53网络中涉及的相关复合物。此外,MDM2–MDM4复合物的特征是通过单个能量屏障具有相对较高的自由能,并且使用寿命约为数十秒。 MDM2–MDM4相互作用的新见解对于开发专注于p53活化的创新抗癌药物可能非常重要。

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