Aug 2026· Pharmaceuticals· Vol 19, pp. 1320· 0 citations· 52 references
Medicine
TL;DR
The workflow identified three preliminary alkaloid hits, with CID 101691758 showing the most favorable combined computational and cell-viability profile, however, the MTT assay does not establish direct CDK2 inhibition or kinase selectivity.
Abstract
Background/Objectives: Cyclin-dependent kinase 2 (CDK2) is a key regulator of cell-cycle progression and a potential anticancer target. This study aimed to identify alkaloid-derived CDK2 ligands using an integrated computational workflow and to obtain preliminary evidence of their effects on cancer-cell viability. Methods: Molecular docking with mVina and fast pulling of ligand (FPL) simulations were benchmarked using 20 experimentally characterized CDK2 inhibitors. A library of 2692 PubChem-derived alkaloids was screened, followed by ADMET evaluation, 100 ns molecular dynamics simulations, and FPL-based relative-affinity re-ranking. The three prioritized compounds were evaluated in HepG2 and HGC-27 cells using an MTT assay after 48 h of exposure. Results: Docking and FPL showed correlations with experimental affinity data of RDock = 0.549 ± 0.180 and RW = −0.676 ± 0.119, respectively. CID 636885, CID 46184320, and CID 101691758 were prioritized for detailed evaluation. All three compounds reduced cell viability, with lower IC50 values observed in HepG2 cells than in HGC-27 cells. CID 101691758 exhibited the highest growth-inhibitory activity among the tested compounds, with IC50 values of 15.37 ± 0.46 µg mL−1 in HepG2 cells and 52.64 ± 1.33 µg mL−1 in HGC-27 cells. Conclusions: The workflow identified three preliminary alkaloid hits, with CID 101691758 showing the most favorable combined computational and cell-viability profile. However, the MTT assay does not establish direct CDK2 inhibition or kinase selectivity. Biochemical CDK2 inhibition, target-engagement, and kinase-panel studies are therefore required.
Comparison in silico analysis provides structural insights into the binding behavior of clinical CDK4/6 inhibitors and may contribute to future optimization and development of CDK-targeted therapies.
Şeyma Yaşar· Anatolian Journal of Pharmac...· 0 citations
Mechanistic studies revealed that compound 7e induced significant apoptosis, promoted S-phase cell cycle arrest, and effectively inhibited cell migration in HCT-116 cells, identifying him as a promising dual VEGFR-2/CDK6 inhibitor with potent and selective anticancer activity.
Hazem Elkady, Walid E. Elgammal, I. Eissa et al.· RSC Advances· 0 citations
Genistein and hematoxylin demonstrate promising molecular interactions and pharmacological profiles as potential natural RR inhibitors and supports further preclinical development as anticancer agents.
Oun Deli Khudhair, Muhammad Azrul Zabidi, A. M. Gazzali et al.· Current Computer - Aided Dru...· 0 citations
Overall, MD1-MD5 demonstrated excellent binding, structural stability, and pharmacokinetic properties, making them strong candidates for future CDK2-targeted anticancer research.
Dharmesh A. Patel, Apurva Prajapati, Siddharth S. Patel et al.· Biotechnology and applied bi...· 0 citations
Cancer cells show accelerated glucose metabolism, a
significant hallmark, supporting their growth and
survival. The first rate-limiting step of glycolysis is
catalyzed by an enzyme Hexokinase-2 (HK2) and is
commonly overexpressed in many cancers compared to
normal cells. Our previous microarray and validation
by qPCR showed overexpression of HK2 in
transformed fibroblast cells, generated by cellmediated adhesion, as well as in the generated tumors.
An epigenetic modification in the promoter region of
HK2 and its release into the bloodstream was also
observed in the clinical samples of cancer (unpublished
data). Because of its strong association with cancer
progression and tissue-specific expression, the present
study considered HK2 as a promising target for
anticancer strategies.
A structure-based virtual screening procedure and
300ns MD simulations were used to identify potential
lead molecules to inhibit HK2 activity in cancer cells
by screening a large in-house library of 1.28 million
compounds. Identified lead molecules were evaluated
based on XPG docking score, MM/GBSA analysis,
ADMET and MD simulations across the selected three
HK2 co-crystal structures with open and closed
conformation states. Among the several lead molecules
obtained, lead 1 of each target exhibited favourable
XPG and MM/GBSA scores, steady binding
trajectories and sustained interactions.
Mythreyi Jannu, B. Krishnan, U. Amineni et al.· Research journal of biotechn...· 0 citations
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