TIN − A Combinatorial Compound Collection of Synthetically Feasible Multicomponent Synthesis Products

The synthetic feasibility of any compound library used for virtual screening is critical to the drug discovery process. TIN, a recursive acronym for ‘TIN Is Not commercial’, is a virtual combinatorial database enumeration of diversity-orientated multicomponent syntheses (MCR). Using a ‘one-pot’ synt...

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Veröffentlicht in:Journal of chemical information and modeling 2011-05, Vol.51 (5), p.986-995
Hauptverfasser: Dorschner, Kristl V., Toomey, David, Brennan, Marian P., Heinemann, Tim, Duffy, Fergal J., Nolan, Kevin B., Cox, Dermot, Adamo, Mauro F. A., Chubb, Anthony J.
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Sprache:eng
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Zusammenfassung:The synthetic feasibility of any compound library used for virtual screening is critical to the drug discovery process. TIN, a recursive acronym for ‘TIN Is Not commercial’, is a virtual combinatorial database enumeration of diversity-orientated multicomponent syntheses (MCR). Using a ‘one-pot’ synthetic technique, 12 unique small molecule scaffolds were developed, predominantly styrylisoxazoles and bis-acetylenic ketones, with extensive derivatization potential. Importantly, the scaffolds were accessible in a single operation from commercially available sources containing R-groups which were then linked combinatorially. This resulted in a combinatorial database of over 28 million product structures, each of which is synthetically feasible. These structures can be accessed through a free Web-based 2D structure search engine or downloaded in SMILES, MOL2, and SDF formats. Subsets include a 10% diversity subset, a drug-like subset, and a lead-like subset that are also freely available for download and virtual screening (http://mmg.rcsi.ie:8080/tin).
ISSN:1549-9596
1549-960X
DOI:10.1021/ci100443x