5ai6 Citations

Successful generation of structural information for fragment-based drug discovery.

Drug Discov Today 20 1104-11 (2015)

Abstract

Fragment-based drug discovery relies upon structural information for efficient compound progression, yet it is often challenging to generate structures with bound fragments. A summary of recent literature reveals that a wide repertoire of experimental procedures is employed to generate ligand-bound crystal structures successfully. We share in-house experience from setting up and executing fragment crystallography in a project that resulted in 55 complex structures. The ligands span five orders of magnitude in affinity and the resulting structures are made available to be of use, for example, for development of computational methods. Analysis of the results revealed that ligand properties such as potency, ligand efficiency (LE) and, to some degree, clogP influence the success of complex structure generation.

Articles - 5ai6 mentioned but not cited (2)

  1. Fragment Pose Prediction Using Non-equilibrium Candidate Monte Carlo and Molecular Dynamics Simulations. Lim NM, Osato M, Warren GL, Mobley DL. J Chem Theory Comput 16 2778-2794 (2020)
  2. 15-deoxy-Δ12,14-Prostaglandin J2 inhibits human soluble epoxide hydrolase by a dual orthosteric and allosteric mechanism. Abis G, Charles RL, Kopec J, Yue WW, Atkinson RA, Bui TTT, Lynham S, Popova S, Sun YB, Fraternali F, Eaton P, Conte MR. Commun Biol 2 188 (2019)


Reviews citing this publication (6)

  1. Applications of (19)F-NMR in Fragment-Based Drug Discovery. Norton RS, Leung EW, Chandrashekaran IR, MacRaild CA. Molecules 21 E860 (2016)
  2. The ways and means of fragment-based drug design. Doak BC, Norton RS, Scanlon MJ. Pharmacol Ther 167 28-37 (2016)
  3. Protein-protein interactions as antibiotic targets: A medicinal chemistry perspective. Cossar PJ, Lewis PJ, McCluskey A. Med Res Rev 40 469-494 (2020)
  4. Guidelines for the successful generation of protein-ligand complex crystals. Müller I. Acta Crystallogr D Struct Biol 73 79-92 (2017)
  5. Phosphatase activity of soluble epoxide hydrolase. Kramer J, Proschak E. Prostaglandins Other Lipid Mediat 133 88-92 (2017)
  6. Structural biology data archiving - where we are and what lies ahead. Kleywegt GJ, Velankar S, Patwardhan A. FEBS Lett 592 2153-2167 (2018)

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