4.6 Article

Accelerated Discovery of Novel Benzodiazepine Ligands by Experiment-Guided Virtual Screening

Journal

ACS CHEMICAL BIOLOGY
Volume 9, Issue 8, Pages 1854-1859

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cb5001873

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Funding

  1. Swiss National Science Foundation [31003A-132806/1]

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High throughput discovery of ligand scaffolds for target proteins can accelerate development of leads and drug candidates enormously. Here we describe an innovative workflow for the discovery of high affinity ligands for the benzodiazepine-binding site on the so far not crystallized mammalian GABA(A) receptors. The procedure includes chemical biology techniques that may be generally applied to other proteins. Prerequisites are a ligand that can be chemically modified with cysteine-reactive groups, knowledge of amino acid residues contributing to the drug-binding pocket, and crystal structures either of proteins homologous to the target protein or, better, of the target itself. Part of the protocol is virtual screening that without additional rounds of optimization in many cases results only in low affinity ligands, even when a target protein has been crystallized. Here we show how the integration of functional data into structure-based screening dramatically improves the performance of the virtual screening. Thus, lead compounds with 14 different scaffolds were identified on the basis of an updated structural model of the diazepam-bound state of the GABA(A) receptor. Some of these compounds show considerable preference for the alpha(3)beta(2)gamma(2) GABA(A) receptor subtype.

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