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MDM2 is a gene that encodes a protein involved in cell survival, growth, and DNA repair. It has been implicated in the development and progression of glioblastoma (GBM). Inhibition of the MDM2-p53 interaction has emerged as a promising strategy for treating GBM. In this study, we performed comprehensive transcriptomic expression analysis from diverse datasets and observed MDM2 overexpression in a subset of GBM cases. MDM2 negatively regulates the major onco-suppressor p53. The interaction between MDM2 and p53 is a promising target for cancer therapy, as it can trigger p53-mediated cell death in response to different stress conditions, such as oncogene activation or DNA damage. In this study, we have identified a peptide-based inhibition of MDM2 as a therapeutic strategy for GBM. We have further validated the stability of the MDM2-peptide interaction using a molecular structural dynamics approach. The major trajectories, including root mean square of deviation (RMSD), root mean square of fluctuation (RMSF), and radius of gyration (RoG), indicate that the candidate peptides have a more stable binding compared to the native ligand and control drug. The stability of the binding interaction was further estimated by MMGBSA analysis, which also suggests that MDM2 has a stable binding with both peptide molecules. Based on these results, peptides P-1843 and P-3837 could be tested further for experimental validation to confirm their targeted inhibition of MDM-2. This approach could provide a highly selective and efficient inhibitor with potentially fewer side effects and less toxicity compared to small drug-based molecules.
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http://dx.doi.org/10.1016/j.bioorg.2024.107620 | DOI Listing |
Research (Wash D C)
September 2025
Department of Urology, Fudan University Shanghai Cancer Center, State Key Laboratory of Genetics and Development of Complex Phenotypes, School of Life Sciences, Human Phenome Institute, Fudan University, Shanghai 200433, China.
Collecting duct carcinoma (CDC) is a rare but aggressive form of renal cell carcinoma (RCC) that has limited understanding and an undefined systemic therapeutic regimen. Herein, we conducted a comprehensive proteogenomic analysis of CDC tumors and normal adjacent tissues to elucidate the biology of the disease. CDC exhibited high heterogeneity in tumor mutational burden, and enhanced ribosome biogenesis was the most striking malignant feature of CDC, even compared with other common kidney carcinomas.
View Article and Find Full Text PDFBioorg Med Chem Lett
September 2025
Department of Radiology, The University of Chicago, Chicago, IL 60637, United States. Electronic address:
Murine double minute 2 (MDM2, also known as human double minute 2 or HDM2) is a negative regulator of the tumor suppressor protein p53 and is overexpressed in many cancers. Over the past two decades, substantial progress has been made in developing inhibitors of the MDM2-p53 interaction, thereby allowing the p53 protein to exert antitumor effects through cell apoptosis and cycle arrest. While there are currently no FDA-approved MDM2 inhibitors available, several small molecule MDM2 inhibitors and a stapled peptide inhibitor of the MDM2-p53 interaction are in clinical development.
View Article and Find Full Text PDFCancer Med
September 2025
Department of Radiation Oncology, Qilu Hospital of Shandong University, Jinan, China.
Background: This study investigates the mechanisms by which GNL3L influences ESCC progression.
Methods: GNL3L expression was analyzed via immunohistochemistry in ESCC tissues. Cell proliferation (EdU and CCK8 assays), migration, invasion (wound healing and Transwell assays), cell cycle, and apoptosis (flow cytometry) were assessed.
Clin Cancer Res
August 2025
Stanford University, Stanford, CA, United States.
Purpose: MDM2 is an E3 ubiquitin ligase that degrades the tumor suppressor p53. In cancers, MDM2 amplification (MDM2amp) leads to overexpression of MDM2, inducing p53 degradation and a p53-null phenotype even in the absence of TP53 mutations. We report here the pre-clinical and clinical activity of milademetan, a potent and selective oral small molecule inhibitor of the MDM2-p53 interaction, in MDM2amp, TP53-wildtype (wt) solid tumors.
View Article and Find Full Text PDFACS Omega
July 2025
Department of Nuclear Medicine, Peking University Shenzhen Hospital, 1120 Lianhua Road, Shenzhen 518036, Guangdong, China.
The murine double minute 2 (MDM2)-p53 interaction inhibitor APG-115 demonstrates therapeutic potential in advanced malignancies. However, its molecular mechanism, especially for programmed death ligand 1 (PD-L1) immunotherapy modulation, remains poorly understood in thyroid cancer (TC). Herein, we conducted a series of in vitro and in vivo studies to investigate the therapeutic effect of APG-115 and the underlying molecular mechanisms in TC.
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