Title of article
Enzyme Inhibition by Allosteric Capture of an Inactive Conformation
Author/Authors
Gregory M. Lee، نويسنده , , Tina Shahian، نويسنده , , Aida Baharuddin، نويسنده , , Jonathan E. Gable، نويسنده , , Charles S. Craik، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
18
From page
999
To page
1016
Abstract
All members of the human herpesvirus protease (HHV Pr) family are active as weakly associating dimers but inactive as monomers. A small-molecule allosteric inhibitor of Kaposiʹs sarcoma-associated herpesvirus protease (KSHV Pr) traps the enzyme in an inactive monomeric state where the C-terminal helices are unfolded and the hydrophobic dimer interface is exposed. NMR titration studies demonstrate that the inhibitor binds to KSHV Pr monomers with low micromolar affinity. A 2.0-Å-resolution X-ray crystal structure of a C-terminal truncated KSHV Pr–inhibitor complex locates the binding pocket at the dimer interface and displays significant conformational perturbations at the active site, 15 Å from the allosteric site. NMR and CD data suggest that the small molecule inhibits human cytomegalovirus protease via a similar mechanism. As all HHV Prs are functionally and structurally homologous, the inhibitor represents a class of compounds that may be developed into broad-spectrum therapeutics that allosterically regulate enzymatic activity by disrupting protein–protein interactions.
Keywords
NMR spectroscopy , small-molecule inhibitor , X-ray crystallography , monomer trap , Protein–protein interactions
Journal title
Journal of Molecular Biology
Serial Year
2011
Journal title
Journal of Molecular Biology
Record number
1254023
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