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Development of Potential Multi-Target Inhibitors for Human Cholinesterases and Beta-Secretase 1: A Computational Approach

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Publisher MDPI
Specialty Chemistry
Date 2023 Dec 23
PMID 38139784
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Abstract

Alzheimer's disease causes chronic neurodegeneration and is the leading cause of dementia in the world. The causes of this disease are not fully understood but seem to involve two essential cerebral pathways: cholinergic and amyloid. The simultaneous inhibition of AChE, BuChE, and BACE-1, essential enzymes involved in those pathways, is a promising therapeutic approach to treat the symptoms and, hopefully, also halt the disease progression. This study sought to identify triple enzymatic inhibitors based on stereo-electronic requirements deduced from molecular modeling of AChE, BuChE, and BACE-1 active sites. A pharmacophore model was built, displaying four hydrophobic centers, three hydrogen bond acceptors, and one positively charged nitrogen, and used to prioritize molecules found in virtual libraries. Compounds showing adequate overlapping rates with the pharmacophore were subjected to molecular docking against the three enzymes and those with an adequate docking score ( = 12) were evaluated for physicochemical and toxicological parameters and commercial availability. The structure exhibiting the greatest inhibitory potential against all three enzymes was subjected to molecular dynamics simulations (100 ns) to assess the stability of the inhibitor-enzyme systems. The results of this in silico approach indicate ZINC1733 can be a potential multi-target inhibitor of AChE, BuChE, and BACE-1, and future enzymatic assays are planned to validate those results.

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References
1.
Lu S, Wu J, Liu H, Zhao J, Liu K, Chuang C . The discovery of potential acetylcholinesterase inhibitors: a combination of pharmacophore modeling, virtual screening, and molecular docking studies. J Biomed Sci. 2011; 18:8. PMC: 3036604. DOI: 10.1186/1423-0127-18-8. View

2.
John S, Thangapandian S, Sakkiah S, Lee K . Potent BACE-1 inhibitor design using pharmacophore modeling, in silico screening and molecular docking studies. BMC Bioinformatics. 2011; 12 Suppl 1:S28. PMC: 3044283. DOI: 10.1186/1471-2105-12-S1-S28. View

3.
Salentin S, Schreiber S, Haupt V, Adasme M, Schroeder M . PLIP: fully automated protein-ligand interaction profiler. Nucleic Acids Res. 2015; 43(W1):W443-7. PMC: 4489249. DOI: 10.1093/nar/gkv315. View

4.
Fang L, Pan Y, Muzyka J, Zhan C . Active site gating and substrate specificity of butyrylcholinesterase and acetylcholinesterase: insights from molecular dynamics simulations. J Phys Chem B. 2011; 115(27):8797-805. PMC: 3135420. DOI: 10.1021/jp112030p. View

5.
Delogu G, Matos M, Fanti M, Era B, Medda R, Pieroni E . 2-Phenylbenzofuran derivatives as butyrylcholinesterase inhibitors: Synthesis, biological activity and molecular modeling. Bioorg Med Chem Lett. 2016; 26(9):2308-13. DOI: 10.1016/j.bmcl.2016.03.039. View