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Updated: Oct 1, 2025

Flow Cytometry-based Assay for the Monitoring of NK Cell Functions
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Identification and Targeting of the Developmental Blockade in Extranodal Natural Killer/T-cell Lymphoma
Bethany L Mundy-Bosse1,2, Christoph Weigel1,2, Yue-Zhong Wu1,2
1Division of Hematology, Department of Internal Medicine, The Ohio State University, Columbus, Ohio.
Abstract:
Extranodal natural killer/T-cell lymphoma (ENKTL) is an aggressive, rare lymphoma of natural killer (NK) cell origin with poor clinical outcomes. Here we used phenotypic and molecular profiling, including epigenetic analyses, to investigate how ENKTL ontogeny relates to normal NK-cell development. We demonstrate that neoplastic NK cells are stably, but reversibly, arrested at earlier stages of NK-cell maturation. Genes downregulated in the most epigenetic immature tumors were associated with polycomb silencing along with genomic gain and overexpression of EZH2. ENKTL cells exhibited genome-wide DNA hypermethylation. Tumor-specific DNA methylation gains were associated with polycomb-marked regions, involving extensive gene silencing and loss of transcription factor binding. To investigate therapeutic targeting, we treated novel patient-derived xenograft (PDX) models of ENKTL with the DNA hypomethylating agent, 5-azacytidine. Treatment led to reexpression of NK-cell developmental genes, phenotypic NK-cell differentiation, and prolongation of survival. These studies lay the foundation for epigenetic-directed therapy in ENKTL.
Significance:
Through epigenetic and transcriptomic analyses of ENKTL, a rare, aggressive malignancy, along with normal NK-cell developmental intermediates, we identified that extreme DNA hypermethylation targets genes required for NK-cell development. Disrupting this epigenetic blockade in novel PDX models led to ENKTL differentiation and improved survival. This article is highlighted in the In This Issue feature, p. 85.
Insights
Extranodal natural killer/T-cell lymphoma (ENKTL) involves epigenetic silencing of NK-cell development genes. DNA hypomethylating agents reversed this blockade, promoting ENKTL differentiation and improving survival in models.
Area of Science:
- Immunology
- Epigenetics
- Oncology
Background:
- Extranodal natural killer/T-cell lymphoma (ENKTL) is an aggressive hematologic malignancy with poor prognosis.
- The developmental origins and epigenetic landscape of ENKTL remain incompletely understood.
Purpose of the Study:
- To investigate the relationship between ENKTL ontogeny and normal natural killer (NK) cell development using epigenetic and transcriptomic profiling.
- To explore the therapeutic potential of epigenetic modulation in ENKTL.
Main Methods:
- Phenotypic and molecular profiling, including epigenetic analyses, of ENKTL and normal NK-cell developmental intermediates.
- Genome-wide DNA methylation and transcriptomic analyses.
- Treatment of patient-derived xenograft (PDX) models of ENKTL with the DNA hypomethylating agent 5-azacytidine.
Main Results:
- ENKTL cells exhibit stable arrest at early NK-cell maturation stages, characterized by genome-wide DNA hypermethylation.
- Downregulated genes in immature ENKTL tumors were associated with polycomb silencing and EZH2 overexpression.
- Treatment with 5-azacytidine induced reexpression of NK-cell developmental genes, phenotypic differentiation, and prolonged survival in ENKTL PDX models.
Conclusions:
- Epigenetic dysregulation, particularly DNA hypermethylation, is a key mechanism underlying ENKTL pathogenesis.
- Targeting epigenetic alterations with DNA hypomethylating agents represents a promising therapeutic strategy for ENKTL.
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