| Title : Antioxidative Potential of 3-Methoxyluteolin: Density Functional Theory (DFT), Molecular Docking, and Dynamics-A Combined Experimental and Computational Study - Trang_2024_Chem.Biodivers__e202402993 |
| Author(s) : Trang VM , Ha NX , Son NT |
| Ref : Chem Biodivers , :e202402993 , 2024 |
|
Abstract :
The current study first describes the antioxidative potential of 3-methoxyluteolin. The experimental result is supported by computational approaches. The studied flavone (IC(50) 12.40 microg/mL) was comparable to ascorbic acid in antioxidative activity against 2,2-diphenyl-1-picrylhydrazyl (DPPH) radicals (IC(50) 11.38 microg/mL). From DFT (density functional theory) calculations, its principal radical mechanism in gas and lipid was the FHT (formal hydrogen transfer), whereas the SPL-ET (sequential proton loss-electron transfer) was the main way in water. Hydroxyl groups were crucial radical scavenging sites, especially at carbon C-4'. Kinetic evidence indicated that the reactions between the studied compound with HOO radicals resulted in the k(overall) (overall rate constant) of 2.5 x 10(9) and 1.07 x 10(3) (M s)(-1) in water and pentyl ethanoate, respectively. The studied molecule also chelated to Zn metal ion to form Zn(3-methoxyluteolin)(2) complex with the lowest binding energy value of -322.911 kcal/mol. Considering the neurodegenerative inhibitory potentials of the studied compound, molecular docking results revealed that 3-methoxyluteolin interacted with the active sites of both acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) with the binding affinities of -9.493 and -8.812 kcal/mol, respectively, which are stronger than the reference compound tacrine. To assess the structural stability and binding interactions with each studied protein, molecular dynamics simulations were conducted. The results indicated that the 3-methoxyluteolin complexes with AChE and BChE remained stable during a simulation period. |
| PubMedSearch : Trang_2024_Chem.Biodivers__e202402993 |
| PubMedID: 39660782 |
Trang VM, Ha NX, Son NT (2024)
Antioxidative Potential of 3-Methoxyluteolin: Density Functional Theory (DFT), Molecular Docking, and Dynamics-A Combined Experimental and Computational Study
Chem Biodivers
:e202402993
Trang VM, Ha NX, Son NT (2024)
Chem Biodivers
:e202402993