Literature DB >> 11017052

Discovering novel ligands for macromolecules using X-ray crystallographic screening.

V L Nienaber1, P L Richardson, V Klighofer, J J Bouska, V L Giranda, J Greer.   

Abstract

The need to decrease the time scale for clinical compound discovery has led to innovations at several stages in the process, including genomics/proteomics for target identification, ultrahigh-throughput screening for lead identification, and structure-based drug design and combinatorial chemistry for lead optimization. A critical juncture in the process is the identification of a proper lead compound, because a poor choice may generate costly difficulties at later stages. Lead compounds are commonly identified from high-throughput screens of large compound libraries, derived from known substrates/inhibitors, or identified in computational prescreeusing X-ray crystal structures. Structural information is often consulted to efficiently optimize leads, but under the current paradigm, such data require preidentification and confirmation of compound binding. Here, we describe a new X-ray crystallography-driven screening technique that combines the steps of lead identification, structural assessment, and optimization. The method is rapid, efficient, and high-throughput, and it results in detailed crystallographic structure information. The utility of the method is demonstrated in the discovery and optimization of a new orally available class of urokinase inhibitors for the treatment of cancer.

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Year:  2000        PMID: 11017052     DOI: 10.1038/80319

Source DB:  PubMed          Journal:  Nat Biotechnol        ISSN: 1087-0156            Impact factor:   54.908


  50 in total

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5.  Lessons for fragment library design: analysis of output from multiple screening campaigns.

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7.  Computational fragment-based binding site identification by ligand competitive saturation.

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8.  To automate or not to automate: this is the question.

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9.  Discovery of leukotriene A4 hydrolase inhibitors using metabolomics biased fragment crystallography.

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Review 10.  The role of medical structural genomics in discovering new drugs for infectious diseases.

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