| Literature DB >> 33226337 |
Raji E Joseph1, Thomas E Wales2, Neha Amatya1, D Bruce Fulton1, John R Engen2, Amy Andreotti1.
Abstract
Bruton's tyrosine kinase (BTK) is targeted in the treatment of B-cell disorders including leukemias and lymphomas. Currently approved BTK inhibitors, including Ibrutinib, a first-in-class covalent inhibitor of BTK, bind directly to the kinase active site. While effective at blocking the catalytic activity of BTK, consequences of drug binding on the global conformation of full-length BTK are unknown. Here, we uncover a range of conformational effects in full-length BTK induced by a panel of active site inhibitors, including large-scale shifts in the conformational equilibria of the regulatory domains. Additionally, we find that a remote Ibrutinib resistance mutation, T316A in the BTK SH2 domain, drives spurious BTK activity by destabilizing the compact autoinhibitory conformation of full-length BTK, shifting the conformational ensemble away from the autoinhibited form. Future development of BTK inhibitors will need to consider long-range allosteric consequences of inhibitor binding, including the emerging application of these BTK inhibitors in treating COVID-19.Entities:
Keywords: allostery; bruton tyrosine kinase; drug resistance; hydrogen/deuterium exchange mass spectrometry; kinase inhibitor; molecular biophysics; none; nuclear magnetic resonance; structural biology
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Year: 2020 PMID: 33226337 PMCID: PMC7834017 DOI: 10.7554/eLife.60470
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140