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1.
J Biomol Struct Dyn ; : 1-15, 2023 Sep 28.
Article in English | MEDLINE | ID: mdl-37768055

ABSTRACT

A series of arylcoumarin derivatives and two novel biscoumarin derivatives were investigated for their human recombinant glutathione S-transferase P1-1 (GSTP1-1) enzyme inhibitory activities for the first time. 4-(3,4-Dihydroxyphenyl)-6,7-dihydroxycoumarin (compound 24) was observed to be the most active coumarin derivative (IC50: 0.14 µM). The inhibition was found to be time-dependent and irreversible. Hypothetical binding modes of the ten most active compounds were calculated by molecular docking. Ligand efficiency indices (LEI) were estimated to better understand the binding performance of the coumarin derivatives. Extensive structure-activity relationship studies showed that hydroxy substitution on both the coumarin and the aryl ring enhanced the biological activity and the position of hydroxy group on the coumarin ring is critical for the binding pose and the activity. Top three ligands were subjected to molecular dynamics simulations and MM/PBSA for further investigation. Binding mode of compound 24 suggested that its high inhibitory activity might be attributed to its position between Tyr7 and the cofactor, glutathione (GS-DNB). Exhibiting favorable druglikeness profiles and pharmacokinetics based on ADME studies, compound 5 and 24 can be considered as potential drug leads in future studies for further development.Communicated by Ramaswamy H. Sarma.

2.
Bioorg Med Chem Lett ; 74: 128917, 2022 10 15.
Article in English | MEDLINE | ID: mdl-35926797

ABSTRACT

Development of new selective reversible monoamine oxidase (MAO) B inhibitors is still essential for the treatment of Alzheimer's and Parkinson's disease. Phthalonitrile compounds have been shown to display MAO inhibitory activity with MAO-B selectivity. In this study, we synthesized and evaluated the inhibitory activities of a new series of phthalonitrile compounds. Compound 3, 4 and 5 presented selective MAO-B inhibition, compound 5 being the most selective (75.16-fold). Additionally, molecular docking simulations were carried out. Investigation of binding modes of each compound with both isoforms were carried out to elaborate structure-activity relationships. Druglikeness was calculated for each compound, revealing that the lipophilicity of compound 5 (logP = 3.37) is optimal to cross membranes.


Subject(s)
Monoamine Oxidase Inhibitors , Parkinson Disease , Humans , Molecular Docking Simulation , Monoamine Oxidase/metabolism , Monoamine Oxidase Inhibitors/chemistry , Parkinson Disease/drug therapy , Structure-Activity Relationship
3.
Arch Pharm (Weinheim) ; 353(10): e1900378, 2020 Oct.
Article in English | MEDLINE | ID: mdl-32648617

ABSTRACT

Cardiovascular diseases are one of the primary causes of deaths worldwide, and the development of atherosclerosis is closely related to hypercholesterolemia. As the reduction of the low-density lipoprotein cholesterol level is critical for treating these diseases, the inhibition of 3-hydroxy-3-methyl-glutaryl coenzyme A (HMG-CoA) reductase, which is essentially responsible for cholesterol biosynthesis, stands out as a key solution to lower plasma cholesterol levels. In this study, we synthesized several dihydroxycoumarins and investigated their antioxidant and in vitro HMG-CoA reductase inhibitory effects. Furthermore, we carried out in silico studies and examined the quantum-chemical properties of the coumarin derivatives. We also performed molecular docking experiments and analyzed the binding strength of each coumarin derivative. Our results revealed that compound IV displayed the highest HMG-CoA reductase inhibitory activity (IC50 = 42.0 µM) in vitro. Cupric-reducing antioxidant capacity and ferric-reducing antioxidant power assays demonstrated that coumarin derivatives exhibit potent antioxidant activities. Additionally, a close relationship was found between the lowest unoccupied molecular orbital energy levels and the antioxidant activities.


Subject(s)
Antioxidants/pharmacology , Coumarins/pharmacology , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Antioxidants/chemistry , Computer Simulation , Coumarins/chemistry , Humans , Hydroxymethylglutaryl CoA Reductases/drug effects , Hydroxymethylglutaryl CoA Reductases/metabolism , Hydroxymethylglutaryl-CoA Reductase Inhibitors/chemistry , Inhibitory Concentration 50 , Molecular Docking Simulation
4.
Comput Biol Chem ; 77: 87-96, 2018 Dec.
Article in English | MEDLINE | ID: mdl-30245350

ABSTRACT

Phthalocyanines are considered as good DNA binders, which makes them promising anti-tumor drug leads. The purpose of this study is to investigate the interactions between DNA and quaternary metallophthalocyanine derivatives (Q-MPc) possessing varying metals (M = Zn, Ni, Cu, Fe, Mg and Ca) by molecular docking since there seems to be a lack of information in the literature regarding this issue. In this direction, Autodock Vina and Molegro Virtual Docker programs were employed. Autodock Vina results reveal that each Q-MPc derivative binds to DNA strongly with similar binding energies and almost identical binding modes. They bind to the grooves of DNA by constituting favorable interactions between phosphate groups of DNA and Q-MPcs. Although changing the metal has no significant effect on binding, presence of quaternary amine substituents increases the binding constant Kb by about 2-fold comparing to the core Pc (ZnPc). Contrary to Autodock Vina, the calculated Molegro Virtual Docker binding scores have been more diverse indicating that the scoring function of Molegro is better in differentiating these metals. Despite the fact that Molegro is superior to Autodock Vina in terms of metal characterization, Autodock Vina and Molegro exhibit similar binding sites for the studied metallophthalocyanines. We propose that Q-MPc derivatives designed in this study are promising anti-tumor lead compounds since they tightly bind to DNA with considerably high Kb values. Cationic substituents and presence of metal have both positive effects on DNA binding which is critical for designing DNA-active drugs. Additional calculations employing molecular dynamics (MD) simulations verified the stability of Q-MPc-DNA complexes which remained in contact after 20 ns via attractive interactions mainly between DNA backbone and the Pc metal center.


Subject(s)
DNA/chemistry , Indoles/chemistry , Molecular Docking Simulation , Molecular Dynamics Simulation , Binding Sites , Crystallography, X-Ray , Isoindoles , Ligands , Molecular Structure
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