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Published on: October 28, 2019
Mutations in V-ATPase in follicular lymphoma activate autophagic flux creating a targetable dependency
Fangyang Wang1, Ying Yang2,3, Daniel J Klionsky2,3
1Department of Internal Medicine, Division of Hematology and Oncology, University of Michigan, Ann Arbor, MI, USA.
Abstract:
The recent discovery of recurrent gene mutations in chaperones or components of the vacuolar-type H+-translocating ATPase (V-ATPase) in follicular lymphoma (FL) was an unexpected finding. The application of whole exome sequencing and targeted gene re-sequencing has resulted in the identification of mutations in ATP6AP1, ATP6V1B2 and VMA21 in a combined 30% of FL, together constituting a major novel mutated pathway in this disease. Interestingly, no other human hematological malignancy carries these mutations at more than sporadic occurrences, implicating unique aspects of FL biology requiring these mutations. The mutations in ATP6V1B2 and VMA21 through separate mechanisms impair lysosomal V-ATPase activity resulting in an elevated lysosomal pH. The elevated lysosomal pH impairs protein and peptide hydrolysis and associates with reduced cytoplasmic amino acid concentrations resulting in compensatory activation of autophagic flux. The elevated autophagic flux constitutes a survival dependency for FL cells and can be targeted with inhibitors to ULK1 and multiple recently identified cyclin-dependent kinase inhibitors. Targeting autophagy alone or in combination with other targeted therapies constitutes a novel therapeutic opportunity for FL patients.
Insights
Novel gene mutations in vacuolar-type H+-translocating ATPase (V-ATPase) components are found in 30% of follicular lymphoma (FL) cases. Targeting the resulting elevated autophagy offers a new therapeutic strategy for FL patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Follicular lymphoma (FL) is a common non-Hodgkin lymphoma.
- The genetic landscape of FL is still being uncovered.
- Vacuolar-type H+-translocating ATPase (V-ATPase) plays crucial roles in cellular processes.
Purpose of the Study:
- To identify novel recurrently mutated genes in follicular lymphoma.
- To investigate the functional consequences of these mutations.
- To explore potential therapeutic targets in FL.
Main Methods:
- Whole exome sequencing and targeted gene re-sequencing were employed.
- Functional assays were used to assess V-ATPase activity and lysosomal pH.
- Autophagic flux was measured in FL cells.
Main Results:
- Mutations in ATP6AP1, ATP6V1B2, and VMA21 were identified in 30% of FL cases.
- These mutations impair V-ATPase activity, leading to elevated lysosomal pH.
- Elevated lysosomal pH induces compensatory autophagic flux, essential for FL cell survival.
Conclusions:
- Mutations in V-ATPase components represent a major novel mutated pathway in FL.
- Elevated autophagic flux is a key survival mechanism and a therapeutic vulnerability in FL.
- Targeting autophagy, potentially with ULK1 or CDK inhibitors, presents a promising therapeutic strategy for FL.
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