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

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.

Authors

Institutions

Publication Details

Journal
ChemMedChem
Published
2026-08-28
DOI
https://doi.org/10.1002/cmdc.70470
Primary Topic
Cancer-related Molecular Pathways
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

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

Al Mokhtar Lamsabhi, Fahad M. Alshabrmi, Emadeldin M. Kamel, Faris F. Aba Alkhayl et al.
ChemMedChem
Cancer-related Molecular Pathways
article

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

Al Mokhtar Lamsabhi, Fahad M. Alshabrmi, Emadeldin M. Kamel, Faris F. Aba Alkhayl, Hassan A. Rudayni, Ahmed A. Allam, Sarah I. Othman
article en

Abstract

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.

ChemMedChemVol. 21(17)
Princess Nourah bint Abdulrahman University (SA), Beni-Suef University (EG), Qassim University (SA), Imam Mohammad ibn Saud Islamic University (SA), Buraydah Colleges (SA), Universidad Autónoma de Madrid (ES)
Ministerio de Ciencia, Innovación y Universidades, Princess Nourah Bint Abdulrahman University, Ministerio de Ciencia e Innovación
Openalex Percentile: Top 13%
Cancer-related Molecular Pathways
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.