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Autoimmune pathways in mice and humans are blocked by pharmacological stabilization of the TYK2 pseudokinase domain

Authors :
Jenny Xie
Sha Li
Adriana Zupa-Fernandez
Celia D’Arienzo
Xiaoxia Yang
Mark D. Cunningham
Moslin Ryan M
Xiadi Zhou
Kim W. McIntyre
Kathleen M. Gillooly
James R. Burke
Joann Strnad
Ian M. Catlett
Charu Chaudhry
Shawn M. Rose
Julie Carman
David S. Weinstein
Elizabeth M. Heimrich
Jinwen Huang
Luisa Salter-Cid
Jian Pang
Stephen T. Wrobleski
Dana Banas
Qihong Zhao
Lihong Cheng
Yifan Zhang
Anjaneya Chimalakonda
Source :
Science Translational Medicine. 11
Publication Year :
2019
Publisher :
American Association for the Advancement of Science (AAAS), 2019.

Abstract

TYK2 is a nonreceptor tyrosine kinase involved in adaptive and innate immune responses. A deactivating coding variant has previously been shown to prevent receptor-stimulated activation of this kinase and provides high protection from several common autoimmune diseases but without immunodeficiency. An agent that recapitulates the phenotype of this deactivating coding variant may therefore represent an important advancement in the treatment of autoimmunity. BMS-986165 is a potent oral agent that similarly blocks receptor-stimulated activation of TYK2 allosterically and with high selectivity and potency afforded through optimized binding to a regulatory domain of the protein. Signaling and functional responses in human TH17, TH1, B cells, and myeloid cells integral to autoimmunity were blocked by BMS-986165, both in vitro and in vivo in a phase 1 clinical trial. BMS-986165 demonstrated robust efficacy, consistent with blockade of multiple autoimmune pathways, in murine models of lupus nephritis and inflammatory bowel disease, supporting its therapeutic potential for multiple immune-mediated diseases.

Details

ISSN :
19466242 and 19466234
Volume :
11
Database :
OpenAIRE
Journal :
Science Translational Medicine
Accession number :
edsair.doi.dedup.....5548473043f7e0b73a9eff8ff661ebb4
Full Text :
https://doi.org/10.1126/scitranslmed.aaw1736