posted on 2016-04-04, 00:00authored byChris J. Radoux, Tjelvar S. G. Olsson, Will R. Pitt, Colin
R. Groom, Tom L. Blundell
Locating
a ligand-binding site is an important first step in structure-guided
drug discovery, but current methods do little to suggest which interactions
within a pocket are the most important for binding. Here we illustrate
a method that samples atomic hotspots with simple molecular probes
to produce fragment hotspot maps. These maps specifically highlight
fragment-binding sites and their corresponding pharmacophores. For
ligand-bound structures, they provide an intuitive visual guide within
the binding site, directing medicinal chemists where to grow the molecule
and alerting them to suboptimal interactions within the original hit.
The fragment hotspot map calculation is validated using experimental
binding positions of 21 fragments and subsequent lead molecules. The
ligands are found in high scoring areas of the fragment hotspot maps,
with fragment atoms having a median percentage rank of 97%. Protein
kinase B and pantothenate synthetase are examined in detail. In each
case, the fragment hotspot maps are able to rationalize a Free–Wilson
analysis of SAR data from a fragment-based drug design project.