ArticleAMB Express2024
Identification of novel natural compounds against CFTR p.Gly628Arg pathogenic variant.
Article in AMB Express, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed.
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- Xanthine oxidase inhibitory potential of flavonoids from Pistacia integerrima: insights from molecular docking, MD simulations, SwissADME ADMET analysis and StopTox toxicity profile evaluation.Journal of computer-aided molecular design · 2026Article
- Citrus Flavonoids for Cystic Fibrosis Treatment.Chembiochem : a European journal of chemical biology · 2025Review
- In vitro investigation of Datura innoxia phytocompounds against Mycobacterium tuberculosis H37Ra strain in association with in silico studies.Scientific reports · 2025Article
- A combined in silico and MD simulation approach to discover novel LpxC inhibitors targeting multiple drug resistant Pseudomonas aeruginosa.Scientific reports · 2025Article
- Linalool-based silver nanoconjugates as potential therapeutics for glioblastoma: in silico and in vitro insights.PloS one · 2025Article
- Identifying novel inhibitors against drug-resistant mutant CYP-51 Candida albicans: A computational study to combat fungal infections.PloS one · 2025Article
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Authors and funding
11 authors.
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Abstract
Cystic fibrosis transmembrane conductance regulator (CFTR) protein is an ion channel found in numerous epithelia and controls the flow of water and salt across the epithelium. The aim of our study to find natural compounds that can improve lung function for people with cystic fibrosis (CF) caused by the p.Gly628Arg (rs397508316) mutation of CFTR protein. The sequence of CFTR protein as a target structure was retrieved from UniProt and PDB database. The ligands that included Armepavine, Osthole, Curcumin, Plumbagine, Quercetin, and one Trikafta (R*) reference drug were screened out from PubChem database. Autodock vina software carried out docking, and binding energies between the drug and the target were included using docking-score. The following tools examined binding energy, interaction, stability, toxicity, and visualize protein-ligand complexes. The compounds having binding energies of -6.4, -5.1, -6.6, -5.1, and - 6.5 kcal/mol for Armepavine, Osthole, Curcumin, Plumbagine, Quercetin, and R*-drug, respectively with mutated CFTR (Gly628Arg) structure were chosen as the most promising ligands. The ligands bind to the mutated CFTR protein structure active sites in hydrophobic bonds, hydrogen bonds, and electrostatic interactions. According to ADMET analyses, the ligands Armepavine and Quercetin also displayed good pharmacokinetic and toxicity characteristics. An MD simulation for 200 ns was also established to ensure that Armepavine and Quercetin ligands attached to the target protein favorably and dynamically, and that protein-ligand complex stability was maintained. It is concluded that Armepavine and Quercetin have stronger capacity to inhibit the effect of mutated CFTR protein through improved trafficking and restoration of original function.
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