Literature DB >> 24900238

Design of a high fragment efficiency library by molecular graph theory.

Jennifer Venhorst1, Sara Núñez1, Chris G Kruse1.   

Abstract

Molecular graph theory was used to design a unique and diverse, high-efficiency fragment screening collection. A data set retrieved from the annotated database AurSCOPE GPS was used as the reference set, and the GDB-13 database, a virtual library of enumerated organic molecules, was used as a source for the fragment selection. The data graph collection of Discngine as implemented in PipelinePilot was applied to perform the graph pharmacophore similarity matching between the reference and the GDB-13 data sets, leading to the ultimate fragment screening library. The relevance of this unique fragment collection was demonstrated by means of a virtual screening exercise using human trypsin as a test case. Several novel entities with high similarity to known trypsin inhibitors were identified in the in silico exercise. The application of this unique, high fragment efficiency collection to other protein targets in the framework of fragment-based drug discovery is warranted.

Entities:  

Keywords:  Fragment screening; GDB-13; graph pharmacophore; ligand efficiency; trypsin inhibition; virtual screening

Year:  2010        PMID: 24900238      PMCID: PMC4007847          DOI: 10.1021/ml100163s

Source DB:  PubMed          Journal:  ACS Med Chem Lett        ISSN: 1948-5875            Impact factor:   4.345


  28 in total

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Review 5.  How good is your screening library?

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Review 6.  Recent progress in fragment-based lead discovery.

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7.  970 million druglike small molecules for virtual screening in the chemical universe database GDB-13.

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8.  Assessment of scaffold hopping efficiency by use of molecular interaction fingerprints.

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9.  New substructure filters for removal of pan assay interference compounds (PAINS) from screening libraries and for their exclusion in bioassays.

Authors:  Jonathan B Baell; Georgina A Holloway
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10.  Crystal structure reveals basis for the inhibitor resistance of human brain trypsin.

Authors:  Gergely Katona; Gunnar I Berglund; Janos Hajdu; László Gráf; László Szilágyi
Journal:  J Mol Biol       Date:  2002-02-01       Impact factor: 5.469

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4.  Design of a fragment library that maximally represents available chemical space.

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