| Literature DB >> 31620235 |
Robert Pulz1, Daniela Angst1, Janet Dawson1, Francois Gessier1, Sascha Gutmann1, Rene Hersperger1, Alexandra Hinniger1, Philipp Janser1, Guido Koch1, Laszlo Revesz1, Anna Vulpetti1, Rudolf Waelchli1, Alfred Zimmerlin1, Bruno Cenni1.
Abstract
Bruton's tyrosine kinase (BTK) is a member of the TEC kinase family and is selectively expressed in a subset of immune cells. It is a key regulator of antigen receptor signaling in B cells and of Fc receptor signaling in mast cells and macrophages. A BTK inhibitor will likely have a positive impact on autoimmune diseases which are caused by autoreactive B cells and immune-complex driven inflammation. We report the design, optimization, and characterization of potent and selective covalent BTK inhibitors. Starting from the selective reversible inhibitor 3 binding to an inactive conformation of BTK, we designed covalent irreversible compounds by attaching an electrophilic warhead to reach Cys481. The first prototype 4 covalently modified BTK and showed an excellent kinase selectivity including several Cys-containing kinases, validating the design concept. In addition, this compound blocked FcγR-mediated hypersensitivity in vivo. Optimization of whole blood potency and metabolic stability resulted in compounds such as 8, which maintained the excellent kinase selectivity and showed improved BTK occupancy in vivo.Entities:
Year: 2019 PMID: 31620235 PMCID: PMC6792172 DOI: 10.1021/acsmedchemlett.9b00317
Source DB: PubMed Journal: ACS Med Chem Lett ISSN: 1948-5875 Impact factor: 4.345