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Discovery of a Potent, Orally Bioavailable PI4KIIIβ Inhibitor (UCB9608) Able To Significantly Prolong Allogeneic Organ Engraftment in Vivo
Author(s) -
James Reuberson,
Helen Horsley,
Richard J. Franklin,
Daniel Ford,
Judi Neuss,
Daniel C. Brookings,
Qiuya Huang,
Bart Vanderhoydonck,
LingJie Gao,
Miyeon Jang,
Piet Herdewijn,
Anant Ghawalkar,
Farnaz FallahArani,
Adnan R. Khan,
Jamie Henshall,
Mark Jairaj,
Sarah Malcolm,
Eleanor J. Ward,
Lindsay K. Shuttleworth,
Yuan Lin,
Shengqiao Li,
Thierry Louat,
Mark Waer,
Jean Herman,
Andrew Payne,
Tom Ceska,
Carl Doyle,
William R. Pitt,
Mark Calmiano,
Martin Augustin,
Stefan Steinbacher,
Alfred Lammens,
R C Allen
Publication year - 2018
Publication title -
journal of medicinal chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.01
H-Index - 261
eISSN - 1520-4804
pISSN - 0022-2623
DOI - 10.1021/acs.jmedchem.8b00521
Subject(s) - in vivo , chemistry , bioavailability , pharmacology , orally active , in vitro , oral administration , enzyme inhibitor , biochemistry , biology , microbiology and biotechnology
The primary target of a novel series of immunosuppressive 7-piperazin-1-ylthiazolo[5,4- d]pyrimidin-5-amines was identified as the lipid kinase, PI4KIIIβ. Evaluation of the series highlighted their poor solubility and unwanted off-target activities. A medicinal chemistry strategy was put in place to optimize physicochemical properties within the series, while maintaining potency and improving selectivity over other lipid kinases. Compound 22 was initially identified and profiled in vivo, before further modifications led to the discovery of 44 (UCB9608), a vastly more soluble, selective compound with improved metabolic stability and excellent pharmacokinetic profile. A co-crystal structure of 44 with PI4KIIIβ was solved, confirming the binding mode of this class of inhibitor. The much-improved in vivo profile of 44 positions it as an ideal tool compound to further establish the link between PI4KIIIβ inhibition and prolonged allogeneic organ engraftment, and suppression of immune responses in vivo.

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