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Structure-Activity Relationships of Small Molecule Autotaxin Inhibitors with a Discrete Binding Mode.

Lisa M Miller ,
Willem-Jan Keune ,
Diana Castagna ,
Louise C Young ,
Emma L Duffy ,
Frances Potjewyd ,
Fernando Salgado-Polo ,
Paloma Engel García ,
Dima Semaan ,
John M Pritchard ,
Anastassis Perrakis ,
Simon J F Macdonald ,
Craig Jamieson ,
Allan J B Watson

Abstract

Autotaxin (ATX) is a secreted enzyme responsible for the hydrolysis of lysophosphatidylcholine (LPC) to the bioactive lysophosphatidic acid (LPA) and choline. The ATX-LPA signaling pathway is implicated in cell survival, migration, and proliferation; thus, the inhibition of ATX is a recognized therapeutic target for a number of diseases including fibrotic diseases, cancer, and inflammation, among others. Many of the developed synthetic inhibitors for ATX have resembled the lipid chemotype of the native ligand; however, a small number of inhibitors have been described that deviate from this common scaffold. Herein, we report the structure-activity relationships (SAR) of a previously reported small molecule ATX inhibitor. We show through enzyme kinetics studies that analogues of this chemotype are noncompetitive inhibitors, and by using a crystal structure with ATX we confirm the discrete binding mode.

More about this publication

Journal of medicinal chemistry

Volume 60
Issue nr. 2
Pages 722-748
Publication date 26-01-2017

Full text links

Publisher website (DOI) 10.1021/acs.jmedchem.6b01597
Europe PubMed Central 27982588
Pubmed 27982588

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