Novel tetralone-derived retinoic acid metabolism blocking agents: Synthesis and in vitro evaluation with liver microsomal and MCF-7 CYP26A1 cell assays

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Abstract

The potent inhibitory activity of novel 2-benzyltetralone and 2-benzylidenetetralone derivatives vs liver microsomal retinoic acid metabolizing enzymes and a MCF-7 CYP26A1 cell assay is described. In the liver microsomal assay, the 2-biphenylmethyl-6-hydroxytetralone derivatives 16a and 16b were found to be potent inhibitors (IC50 = 0.5 and 0.8 μM) compared with the broad spectrum P450 inhibitor ketoconazole and the retinoid mimetic R115866 (IC50 = 18.0 and 9.0 μM, respectively). In the MCF-7 CYP26A1 cell assay, the 2-(4-hydroxybenzyl)-6-methoxytetralone 5 and unsaturated benzylidene precursor 6 were found to be the most potent (IC 50 = 7 and 5 μM, respectively), which was comparable with liarozole (7 μM) but considerably less active than R115866 (IC50 = 5 nM). With a CYP26A1 homology model, the tetralones were shown to be positioned in a hydrophobic tunnel with additional interactions, e.g., transition metal coordination and hydrogen-bonding interactions with GLY300, observed for the potent 4-hydroxyphenyl substituted inhibitors. © 2005 American Chemical Society.

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Yee, S. W., Jarno, L., Gomaa, M. S., Elford, C., Ooi, L. L., Coogan, M. P., … Simons, C. (2005). Novel tetralone-derived retinoic acid metabolism blocking agents: Synthesis and in vitro evaluation with liver microsomal and MCF-7 CYP26A1 cell assays. Journal of Medicinal Chemistry, 48(23), 7123–7131. https://doi.org/10.1021/jm0501681

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