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Follicular Lymphoma-associated BTK Mutations are Inactivating Resulting in Augmented AKT Activation
Nan Hu1, Fangyang Wang1, Tianyu Sun1
1Department of Internal Medicine, Division of Hematology and Oncology, University of Michigan, Ann Arbor, Michigan.
Purpose:
On the basis of the recent discovery of mutations in Bruton tyrosine kinase (BTK) in follicular lymphoma, we studied their functional properties.
Experimental Design:
We identified novel somatic BTK mutations in 7% of a combined total of 139 follicular lymphoma and 11 transformed follicular lymphoma cases, none of which had received prior treatment with B-cell receptor (BCR) targeted drugs. We reconstituted wild-type (WT) and mutant BTK into various engineered lymphoma cell lines. We measured BCR-induced signal transduction events in engineered cell lines and primary human follicular lymphoma B cells.
Results:
We uncovered that all BTK mutants destabilized the BTK protein and some created BTK kinase-dead mutants. The phospholipase C gamma 2 (PLCγ2) is a substrate of BTK but the BTK mutants did not alter PLCγ2 phosphorylation. Instead, we discovered that BTK mutants induced an exaggerated AKT phosphorylation phenotype in anti-Ig-treated recombinant lymphoma cell lines. The short hairpin RNA-mediated knockdown of BTK expression in primary human nonmalignant lymph node-derived B cells resulted in strong anti-Ig-induced AKT activation, as did the degradation of BTK protein in cell lines using ibrutinib-based proteolysis targeting chimera. Finally, through analyses of primary human follicular lymphoma B cells carrying WT or mutant BTK, we detected elevated AKT phosphorylation following surface Ig crosslinking in all follicular lymphoma B cells, including all BTK-mutant follicular lymphoma. The augmented AKT phosphorylation following BCR crosslinking could be abrogated by pretreatment with a PI3Kδ inhibitor.
Conclusions:
Altogether, our data uncover novel unexpected properties of follicular lymphoma-associated BTK mutations with direct implications for targeted therapy development in follicular lymphoma.See related commentary by Afaghani and Taylor, p. 2123.
Insights
Novel Bruton tyrosine kinase (BTK) mutations in follicular lymphoma destabilize the protein and enhance AKT signaling, impacting targeted therapy development. These findings reveal unexpected properties of BTK mutations in lymphoma.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Recent discovery of Bruton tyrosine kinase (BTK) mutations in follicular lymphoma.
- BTK is a key regulator of B-cell receptor (BCR) signaling.
Purpose of the Study:
- Investigate the functional properties of novel somatic BTK mutations identified in follicular lymphoma.
- Determine the impact of these mutations on BCR-induced signal transduction pathways.
Main Methods:
- Identified BTK mutations in follicular lymphoma and transformed follicular lymphoma cases.
- Reconstituted wild-type (WT) and mutant BTK in engineered lymphoma cell lines.
- Measured BCR-induced signaling events in cell lines and primary human follicular lymphoma B cells.
Main Results:
- BTK mutants destabilized BTK protein; some were kinase-dead.
- BTK mutants induced exaggerated AKT phosphorylation in response to BCR crosslinking.
- Elevated AKT phosphorylation was observed in all follicular lymphoma B cells, irrespective of BTK mutation status.
Conclusions:
- Follicular lymphoma-associated BTK mutations exhibit novel, unexpected functional properties.
- These findings have direct implications for the development of targeted therapies for follicular lymphoma.
- Augmented AKT signaling in follicular lymphoma can be targeted by PI3Kδ inhibitors.
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