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New Means and Challenges in the Targeting of BTK
Vindhya Nawaratne1, Anya K Sondhi1, Omar Abdel-Wahab2
1Sylvester Comprehensive Cancer Center at the University of Miami Miller School of Medicine, Miami, Florida.
Abstract:
Bruton's tyrosine kinase (BTK) is central to the survival of malignant and normal B lymphocytes and has been a crucial therapeutic target of several generations of kinase inhibitors and newly developed degraders. These new means for targeting BTK have added additional agents to the armamentarium for battling cancers dependent on B-cell receptor (BCR) signaling, including chronic lymphocytic leukemia and other non-Hodgkin lymphomas. However, the development of acquired resistance mutations to each of these classes of BTK inhibitors has led to new challenges in targeting BTK as well as novel insights into BCR signaling. The first-generation covalent BTK inhibitor ibrutinib is susceptible to mutations affecting the covalent binding site, cysteine 481 (C481). Newer noncovalent BTK inhibitors, such as pirtobrutinib, overcome C481 mutation-mediated resistance but are susceptible to other kinase domain mutations, particularly at residues Threonine 474 and Leucine 528. In addition, these novel BTK inhibitor resistance mutations have been shown biochemically and in patients to cause cross-resistance to some covalent BTK inhibitors. Importantly, newer generation covalent BTK inhibitors zanubrutinib and acalabrutinib are susceptible to the same mutations that confer resistance to noncovalent inhibitors. The BTK L528W mutation is of particular interest as it disrupts the kinase activity of BTK, rendering it kinase dead. This observation suggests that BTK may act independently of its kinase activity as a scaffold. Thus, the timely development of BTK degrading proteolysis targeting drugs has allowed for degradation, rather than just enzymatic inhibition, of BTK in B-cell lymphomas, and early clinical trials to evaluate BTK degraders are underway.
Insights
Bruton
Area of Science:
- Oncology
- Hematology
- Molecular Biology
Background:
- Bruton's tyrosine kinase (BTK) is a key target in B-cell malignancies, with inhibitors and degraders representing significant therapeutic advancements.
- Resistance mutations to BTK inhibitors pose challenges, necessitating a deeper understanding of B-cell receptor (BCR) signaling pathways.
Purpose of the Study:
- To review the landscape of BTK inhibitors and emerging resistance mechanisms.
- To discuss the implications of novel resistance mutations on therapeutic strategies.
- To highlight the potential of BTK degraders as a next-generation treatment approach.
Main Methods:
- Review of existing literature on BTK inhibitors, resistance mutations, and BCR signaling.
- Analysis of biochemical and clinical data related to BTK inhibitor efficacy and resistance.
Main Results:
- First-generation covalent BTK inhibitors (e.g., ibrutinib) are affected by C481 mutations.
- Newer noncovalent inhibitors (e.g., pirtobrutinib) and newer covalent inhibitors (e.g., zanubrutinib, acalabrutinib) face resistance from mutations at T474 and L528.
- The L528W mutation suggests BTK may function as a scaffold independent of its kinase activity.
Conclusions:
- Acquired resistance mutations present ongoing challenges for BTK-targeted therapies in B-cell lymphomas.
- BTK degraders offer a promising alternative by targeting BTK for degradation, potentially overcoming existing resistance mechanisms.
- Further clinical evaluation of BTK degraders is crucial for their therapeutic application.

