Computer-aided drug design approach for alkaloids isolated from Stephania glandulifera Miers as potential acetylcholinesterase inhibitors

被引:0
作者
Dhungel, Jhalnath [1 ,2 ]
Shyaula, Sajan L. [3 ]
Faizan, Mishal [4 ]
Rathnayaka, Rajitha Kalum [4 ]
Agrawal, Mohit [5 ]
机构
[1] Nep Biotech Pvt Ltd, Kathmandu, Nepal
[2] Tribhuvan Univ, Natl Coll, Dept Biotechnol, Nayabazar, Nepal
[3] Nepal Acad Sci & Technol, Fac Sci, Lalitpur, Nepal
[4] Univ Colombo, Inst Biochem Mol Biol & Biotechnol, Colombo, Sri Lanka
[5] KR Mangalam Univ, Sch Med & Allied Sci, Gurugram, Haryana, India
关键词
Acetylcholinesterase inhibitor; alkaloids; molecular docking; molecular dynamics simulations; in silico pharmacokinetics; Alzheimer's disease; BIOLOGICAL EVALUATION; ALZHEIMERS; DONEPEZIL; LIGANDS; PLANTS;
D O I
10.1080/07391102.2025.2474054
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Considering the medicinal importance of alkaloids from Stephania glandulifera Miers, five major compounds (stepharine, stepharanine, stepholidine, palmatine and tetrahydropalmatine) from the plant were analyzed for their acetylcholinesterase activity using molecular docking, molecular dynamics simulations and in silico pharmacokinetics. As acetylcholinesterase has been significantly studied for their role in Alzheimer's disease, the enzyme from Torpedo californica (PDB ID: 1QTI) was taken as a receptor protein. AutoDock Vina was used to study the docking affinities during the initial screening of compounds where, stepharine showed promising binding energy (-10.3 kcal/mol) forming crucial interactions with active site residues (His 440, Tyr 121, and Trp 84). Molecular dynamics simulations were performed for 200 ns to analyze the stability of the docked complex. The study of trajectories obtained after simulation showed stepharine with a strong binding affinity and stability with AChE. Moreover, drug likeness and ADMET analysis conducted via Swiss ADME and pKCSM affirmed stepharine's favorable pharmacological properties. Overall, this research highlights stepharine as a potent acetylcholinesterase inhibitor which could be further developed as potential drug against Alzheimer's disease.
引用
收藏
页数:14
相关论文
共 54 条
[11]   Regulation of protein-ligand binding affinity by hydrogen bond pairing [J].
Chen, Deliang ;
Oezguen, Numan ;
Urvil, Petri ;
Ferguson, Colin ;
Dann, Sara M. ;
Savidge, Tor C. .
SCIENCE ADVANCES, 2016, 2 (03)
[12]   Acetylcholinesterase Inhibitors: Pharmacology and Toxicology [J].
Colovic, Mirjana B. ;
Krstic, Danijela Z. ;
Lazarevic-Pasti, Tamara D. ;
Bondzic, Aleksandra M. ;
Vasic, Vesna M. .
CURRENT NEUROPHARMACOLOGY, 2013, 11 (03) :315-335
[13]   SwissADME: a free web tool to evaluate pharmacokinetics, drug-likeness and medicinal chemistry friendliness of small molecules [J].
Daina, Antoine ;
Michielin, Olivier ;
Zoete, Vincent .
SCIENTIFIC REPORTS, 2017, 7
[14]  
Dar A.M., 2017, J. Anal. Bioanal. Tech., V8, P356, DOI DOI 10.4172/2155-9872.1000356
[15]  
David CC, 2014, METHODS MOL BIOL, V1084, P193, DOI 10.1007/978-1-62703-658-0_11
[16]   Cytotoxic Activity of Alkaloids Isolated from Stephania glandulifera Miers [J].
Dhungel, Jhalnath ;
Marasini, Bishnu P. ;
Manandhar, Erendra ;
Rathnayaka, Rajitha K. ;
Samarakoon, Sameera R. ;
Shyaula, Sajan L. .
JOURNAL OF BIOLOGICALLY ACTIVE PRODUCTS FROM NATURE, 2023, 13 (02) :118-128
[17]   Acetylcholinesterase: From 3D structure to function [J].
Dvir, Hay ;
Silman, Israel ;
Harel, Michal ;
Rosenberry, Terrone L. ;
Sussman, Joel L. .
CHEMICO-BIOLOGICAL INTERACTIONS, 2010, 187 (1-3) :10-22
[18]   Alzheimer's Disease: Targeting the Cholinergic System [J].
Ferreira-Vieira, Talita H. ;
Guimaraes, Isabella M. ;
Silva, Flavia R. ;
Ribeiro, Fabiola M. .
CURRENT NEUROPHARMACOLOGY, 2016, 14 (01) :101-115
[19]  
Fisher SK, 2012, BASIC NEUROCHEMISTRY: PRINCIPLES OF MOLECULAR, CELLULAR, AND MEDICAL NEUROBIOLOGY, 8THEDITION, P258
[20]   In Silico Pharmacokinetics, ADMET Study and Conceptual DFT Analysis of Two Plant Cyclopeptides Isolated From Rosaceae as a Computational Peptidology Approach [J].
Flores-Holguin, Norma ;
Frau, Juan ;
Glossman-Mitnik, Daniel .
FRONTIERS IN CHEMISTRY, 2021, 9