Ogunyemi_2025_Bioinform.Adv_5_vbae205

Reference

Title : Identification of promising dipeptidyl peptidase-4 and protein tyrosine phosphatase 1B inhibitors from selected terpenoids through molecular modeling - Ogunyemi_2025_Bioinform.Adv_5_vbae205
Author(s) : Ogunyemi OM , Gyebi GA , Olawale F , Ibrahim IM , Iwaloye O , Fabusiwa MM , Omowaye S , Oloyede OI , Olaiya CO
Ref : Bioinform Adv , 5 :vbae205 , 2025
Abstract :

MOTIVATION: Investigating novel drug-target interactions is crucial for expanding the chemical space of emerging therapeutic targets in human diseases. Herein, we explored the interactions of dipeptidyl peptidase-4 and protein tyrosine phosphatase 1B with selected terpenoids from African antidiabetic plants. RESULTS: Using molecular docking, molecular dynamics simulations, molecular mechanics with generalized Born and surface area solvation-free energy, and density functional theory analyses, the study revealed dipeptidyl peptidase-4 as a promising target. Cucurbitacin B, 6-oxoisoiguesterin, and 20-epi-isoiguesterinol were identified as potential dipeptidyl peptidase-4 inhibitors with strong binding affinities. These triterpenoids interacted with key catalytic and hydrophobic pockets of dipeptidyl peptidase-4, demonstrating structural stability and flexibility under dynamic conditions, as indicated by dynamics simulation parameters. The free energy analysis further supported the binding affinities in dynamic environments. Quantum mechanical calculations revealed favorable highest occupied molecular orbital and lowest unoccupied molecular orbital energy profiles, indicating the suitability of the hits as proton donors and acceptors, which likely enhance their molecular interactions with the targets. Moreover, the terpenoids showed desirable drug-like properties, suggesting their potential as safe and effective dipeptidyl peptidase-4 inhibitors. These findings may pave the way for the development of novel antidiabetic agents and nutraceuticals based on these promising in silico hits. AVAILABILITY AND IMPLEMENTATION: Not applicable.

PubMedSearch : Ogunyemi_2025_Bioinform.Adv_5_vbae205
PubMedID: 39846080

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Citations formats

Ogunyemi OM, Gyebi GA, Olawale F, Ibrahim IM, Iwaloye O, Fabusiwa MM, Omowaye S, Oloyede OI, Olaiya CO (2025)
Identification of promising dipeptidyl peptidase-4 and protein tyrosine phosphatase 1B inhibitors from selected terpenoids through molecular modeling
Bioinform Adv 5 :vbae205

Ogunyemi OM, Gyebi GA, Olawale F, Ibrahim IM, Iwaloye O, Fabusiwa MM, Omowaye S, Oloyede OI, Olaiya CO (2025)
Bioinform Adv 5 :vbae205