Dipartimento di Scienze Farmaceutiche, Università degli Studi di Perugia, Via del Liceo, 1, 06123 Perugia, Italy.
PhD program in Sciences of Nutrition, Metabolism, Ageing and Gender Medicine, Catholic University of Rome, Roma, Italy; Institute of Biochemistry and Cell Biology, National Research Council (CNR), Via E. Ramarini, 32, 00015 Monterotondo Scalo, Rome, Italy.
Bioorg Med Chem. 2024 Nov 1;113:117937. doi: 10.1016/j.bmc.2024.117937. Epub 2024 Oct 2.
In recent years, the restoration of p53 physiological functions has become an attractive therapeutic approach to develop novel and efficacious cancer therapies. Among other mechanisms, the oncosuppressor protein p53 is functionally regulated by MDM2 through its E3 ligase function. MDM2 promotes p53 ubiquitination and degradation following homodimerization or heterodimerization with MDM4. Recently, we discovered Pep3 (1, Pellegrino et al., 2015), a novel peptidic inhibitor of MDM2 dimerization able to restore p53 oncosuppressive functions both in vitro and in vivo. In this work, we were able to identify the key interactions between peptide 1 and MDM2 RING domain and to design peptide 2, a truncated version of 1 that is still able to bind MDM2. Integrating both computational and biophysical techniques, we show that peptide 2 maintains the conserved peptide 1-MDM2 interactions and is still able to bind to full-length MDM2.
近年来,恢复 p53 的生理功能已成为开发新型有效癌症疗法的一种有吸引力的治疗方法。除其他机制外,抑癌蛋白 p53 通过其 E3 连接酶功能被 MDM2 进行功能性调节。MDM2 通过与 MDM4 同源二聚化或异源二聚化来促进 p53 的泛素化和降解。最近,我们发现了 Pep3(1,Pellegrino 等人,2015 年),一种新型的 MDM2 二聚化肽抑制剂,能够在体外和体内恢复 p53 的抑癌功能。在这项工作中,我们能够确定肽 1 与 MDM2 RING 结构域之间的关键相互作用,并设计了肽 2,它是肽 1 的截短版本,仍然能够与 MDM2 结合。综合使用计算和生物物理技术,我们表明肽 2 保持了保守的肽 1-MDM2 相互作用,并且仍然能够与全长 MDM2 结合。