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[5-(Benzyloxy)-1H-indol-1-yl]acetic acid, an aldose reductase inhibitor and PPARγ ligand
Author(s) -
Marta Šoltésová Prnová,
Magdaléna Májeková,
Ivana Miláčková,
Beatriz Díez-Dacal,
Dolores PérezSala,
Müşerref Şeyma Ceyhan,
Sreeparna Banerjee,
Milan Štefek
Publication year - 2015
Publication title -
acta biochimica polonica
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.452
H-Index - 78
eISSN - 1734-154X
pISSN - 0001-527X
DOI - 10.18388/abp.2014_953
Subject(s) - aldose reductase , aldehyde reductase , chemistry , aldo keto reductase , ligand (biochemistry) , sorbitol , biochemistry , enzyme , aldose reductase inhibitor , reductase , ic50 , docking (animal) , aldose , stereochemistry , sorbinil , in vitro , receptor , medicine , nursing , glycoside
Based on overlapping structural requirements for both efficient aldose reductase inhibitors and PPAR ligands, [5-(benzyloxy)-1H-indol-1-yl]acetic acid (compound 1) was assessed for inhibition of aldose reductase and ability to interfere with PPARγ. Aldose reductase inhibition by 1 was characterized by IC50 in submicromolar and low micromolar range, for rat and human enzyme, respectively. Selectivity in relation to the closely related rat kidney aldehyde reductase was characterized by approx. factor 50. At organ level in isolated rat lenses, compound 1 significantly inhibited accumulation of sorbitol in a concentration-dependent manner. To identify crucial interactions within the enzyme binding site, molecular docking simulations were performed. Based on luciferase reporter assays, compound 1 was found to act as a ligand for PPARγ, yet with rather low activity. On balance, compound 1 is suggested as a promising lead-like scaffold for agents with the potential to interfere with multiple targets in diabetes.

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