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Identification of C-2 hydroxyethyl imidazopyrrolopyridines as potent JAK1 inhibitors with favorable physicochemical properties and high selectivity over JAK2

Authors :
Kathy Barrett
Paul Gibbons
Steven Shia
Jane R. Kenny
Mark Zak
Charles Ellwood
Sharada Labadie
Richard James Bull
Chris Hamman
Peter H. Crackett
Peter Gribling
Peter S. Dragovich
Scott Savage
Jiangpeng Liao
Jason DeVoss
Christine Chang
Paroma Chakravarty
Mercedesz Balazs
Wyne P. Lee
Tony Johnson
Rebecca Pulk
Michael F. T. Koehler
Gauri Deshmukh
Marya Liimatta
Janusz J. Kulagowski
Pawan Bir Kohli
Anne van Abbema
Austin John Reeve
Rohan Mendonca
Adam R. Johnson
Ignacio Aliagas
Simon Gaines
Charles Eigenbrot
Yisong Xiao
Nico Ghilardi
Jing Yang
Christopher A. Hurley
Philippe Bergeron
Wade S. Blair
Peter Hewitt
Stuart Ward
Eric Harstad
Micah Steffek
Barbara Avitabile-Woo
Stefan Gradl
Raman Narukulla
Savita Ubhayakar
Source :
Journal of medicinal chemistry. 56(11)
Publication Year :
2013

Abstract

Herein we report on the structure-based discovery of a C-2 hydroxyethyl moiety which provided consistently high levels of selectivity for JAK1 over JAK2 to the imidazopyrrolopyridine series of JAK1 inhibitors. X-ray structures of a C-2 hydroxyethyl analogue in complex with both JAK1 and JAK2 revealed differential ligand/protein interactions between the two isoforms and offered an explanation for the observed selectivity. Analysis of historical data from related molecules was used to develop a set of physicochemical compound design parameters to impart desirable properties such as acceptable membrane permeability, potent whole blood activity, and a high degree of metabolic stability. This work culminated in the identification of a highly JAK1 selective compound (31) exhibiting favorable oral bioavailability across a range of preclinical species and robust efficacy in a rat CIA model.

Details

ISSN :
15204804
Volume :
56
Issue :
11
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry
Accession number :
edsair.doi.dedup.....53d0d607376d7e1e01099fe1e9376df8