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Structure‐Based Discovery of Fumiquinazolines as Skp2–Cks1 Protein–Protein Interaction Disruptors: Mechanistic Computational Insights and Experimental Validation

Emadeldin M. Kamel, Ahmed A. Allam, Hassan A. Rudayni, Sarah I. Othman and 3 more

ChemMedChem | Aug 28, 2026

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Findings identify Fumiquinazoline D as an early-stage biochemical hit for disruption of the Skp2-Cks1 interaction and as a potential scaffold for further mechanistic validation and medicinal-chemistry investigation.

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The S‐phase kinase‐associated protein 2 (Skp2)–cyclin‐dependent kinase subunit 1 (Cks1) protein–protein interaction (PPI) plays a central role in recognition of phosphorylated p27 and therefore represents an attractive target for anticancer drug discovery. Herein, we sought to identify new small‐molecule disruptors of the Skp2–Cks1 interface from a focused fumiquinazoline‐scaffold library by combining virtual screening, molecular simulation, and experimental validation. Docking showed that all selected compounds occupied the Skp2–Cks1 interfacial hotspot. However, longer 1000‐ns MD simulations, comparative MM/PBSA calculations, and interface‐related metrics revealed distinct structural, energetic, and dynamic binding profiles among the selected compounds. Consistent with these analyses, comparative MM/PBSA evaluation of PPI stability showed that Fumiquinazoline D produced a positive , indicating weakening of the Skp2–Cks1 interface relative to the apo complex, whereas Ardeemin, Fiscalin A, and Fumiquinazoline F generally yielded negative values consistent with interfacial stabilization. Free energy landscape analysis further supported a more weakly confined and dynamically disruptive binding mode for Fumiquinazoline‐ D. In vitro homogeneous time‐resolved fluorescence assays validated these predictions: Fumiquinazoline D inhibited the Skp2–Cks1 interaction with an IC 50 of 6.33 ± 0.44 µM, whereas Ardeemin, Fiscalin A, and Fumiquinazoline F were substantially weaker. Although ADMET profiling identified substantial absorption and toxicity liabilities requiring future optimization, these findings identify Fumiquinazoline D as an early‐stage biochemical hit for disruption of the Skp2–Cks1 interaction and as a potential scaffold for further mechanistic validation and medicinal‐chemistry investigation.

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Emadeldin M. Kamel

first | Beni-Suef University | ORCID 0000-0002-1279-9564

Ahmed A. Allam

middle | Imam Mohammad ibn Saud Islamic University

Hassan A. Rudayni

middle | Imam Mohammad ibn Saud Islamic University

Sarah I. Othman

middle | Princess Nourah bint Abdulrahman University

Fahad M. Alshabrmi

middle | Qassim University | ORCID 0000-0001-5827-6040

Faris F. Aba Alkhayl

middle | Qassim University | ORCID 0000-0002-5247-8933

Al Mokhtar Lamsabhi

last | Universidad Autónoma de Madrid | ORCID 0000-0002-1509-2513

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BibTeX

@article{Kamel2026Structure,
  title = {Structure‐Based Discovery of Fumiquinazolines as Skp2–Cks1 Protein–Protein Interaction Disruptors: Mechanistic Computational Insights and Experimental Validation},
  author = {Emadeldin M. Kamel and Ahmed A. Allam and Hassan A. Rudayni and Sarah I. Othman and Fahad M. Alshabrmi and Faris F. Aba Alkhayl and Al Mokhtar Lamsabhi},
  journal = {ChemMedChem},
  year = {2026},
  doi = {10.1002/cmdc.70470},
  url = {https://doi.org/10.1002/cmdc.70470}
}

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