pepmg_

Study summary · research use only

Peptide Inhibitors Targeting FOXO4-p53 Interactions and Inducing Senescent Cancer Cell-specific Apoptosis

Study · human · Journal of medicinal chemistry · 2025 · DOI 10.1021/acs.jmedchem.5c00537 · PMID 40739602

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This study (species not specified) used NMR spectroscopy to characterize the FOXO4-p53 interaction implicated in survival of therapy-induced senescent cancer cells, finding that hydrophobic interactions in the p53 transactivation domain contribute to FOXO4 forkhead domain binding. Based on this, the authors designed a peptide inhibitor with reduced negative charges and a cationic cell-penetrating peptide component, termed CPP-CAND, for cellular delivery. The abstract reports CPP-CAND showed high selectivity for senescent cells, disrupted nuclear FOXO4-p53 foci, and induced caspase-dependent apoptosis, including cytotoxicity against senescent cancer cells generated using the chemotherapeutic agents doxorubicin and cisplatin.

Abstract

Cellular senescence, marked by irreversible cell cycle arrest and senescence-associated secretory phenotype, contributes to aging and cancer recurrence. While chemotherapy can induce senescence in cancer cells, these therapy-induced senescent cells often resist apoptosis and promote tumor recurrence. The nuclear interaction between FOXO4 and p53 is crucial for senescent cell survival. Using NMR spectroscopy, we identified that hydrophobic interactions in the p53 transactivation domain play a key role in FOXO4 forkhead domain binding. Based on this structural information, we designed an optimized peptide inhibitor with reduced negative charges and incorporated a cationic cell-penetrating peptide for enhanced cellular delivery (CPP-CAND). CPP-CAND exhibited high selectivity for senescent cells, effectively disrupting nuclear FOXO4-p53 foci and inducing caspase-dependent apoptosis. Notably, it showed cytotoxicity against senescent cancer cells induced by different chemotherapeutic agents including doxorubicin and cisplatin. With its enhanced selectivity, l-amino acid composition, and shorter length, CPP-CAND represents a promising therapeutic candidate for targeting therapy-induced senescent cancer cells.

Read the full study on PubMed ↗

pepmg summarizes the peer-reviewed literature and links to every source — it sells nothing, ships nothing, and gives no medical, dosing, or human-use guidance. Don't just trust this summary: follow the citation to its source and read it yourself. Research use only.