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  • Binding of ring-substituted indole-3-acetic acids to human serum albumin.

Binding of ring-substituted indole-3-acetic acids to human serum albumin.

Bioorganic & medicinal chemistry (2007-05-08)
Milan Soskić, Volker Magnus
초록

The plant hormone, indole-3-acetic acid (IAA), and its ring-substituted derivatives have recently attracted attention as promising pro-drugs in cancer therapy. Here we present relative binding constants to human serum albumin for IAA and 34 of its derivatives, as obtained using the immobilized protein bound to a support suitable for high-performance liquid chromatography. We also report their octanol-water partition coefficients (logK(ow)) computed from retention data on a C(18) coated silica gel column. A four-parameter QSPR (quantitative structure-property relationships) model, based on physico-chemical properties, is put forward, which accounts for more than 96% of the variations in the binding affinities of these compounds. The model confirms the importance of lipophilicity as a global parameter governing interaction with serum albumin, but also assigns significant roles to parameters specifically related to the molecular topology of ring-substituted IAAs. Bulky substituents at ring-position 6 increase affinity, those at position 2 obstruct binding, while no steric effects were noted at other ring-positions. Electron-withdrawing substituents at position 5 enhance binding, but have no obvious effect at other ring positions.

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Supelco
3-Indoleacetic acid, PESTANAL®, analytical standard
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Sigma-Aldrich
3-Indoleacetic acid, 98%
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5-Methoxy-3-indoleacetic acid, 98%
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Sigma-Aldrich
5-Hydroxyindole-3-acetic acid, ≥98% (HPLC), crystalline
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