Variable induction of PRDM1 and differentiation in chronic lymphocytic leukemia is associated with anergy
Andrew Duckworth1, Mark Glenn1, Joseph R Slupsky1
1Haematology, Department of Molecular and Clinical Cancer Medicine, Institute of Translational Medicine, University of Liverpool, Liverpool, United Kingdom; and.
Insights
Chronic lymphocytic leukemia (CLL) cells fail to differentiate due to anergy, a nonresponsive state. Reactivating PRDM1 expression via epigenetic drugs may restore CLL cell differentiation.
Area of Science:
- Immunology
- Hematology
- Molecular Biology
Background:
- Chronic lymphocytic leukemia (CLL) cells exhibit impaired terminal differentiation despite intact B-cell receptor (BCR) signaling.
- CLL cell anergy, a state of nonresponsiveness to stimulation, is linked to reduced differentiation capacity in normal B cells.
Purpose of the Study:
- To investigate the role of anergy in CLL cell differentiation failure.
- To explore the potential of differentiation-promoting agents and their impact on PRDM1 induction in CLL cells.
Main Methods:
- Assessed CLL cell responses to IL-21 and CpG-ODN.
- Measured PRDM1 (Blimp-1) induction and correlated it with anergy markers (intracellular Ca2+ mobilization).
- Analyzed transcriptional and epigenetic regulation of the PRDM1 gene.
Main Results:
- PRDM1 induction by IL-21 and CpG-ODN varied among CLL cases but correlated with differentiation markers.
- PRDM1 induction was inversely correlated with the extent of BCR-induced anergy.
- Differential transcriptional and epigenetic regulation of PRDM1 was observed.
Conclusions:
- Reduced differentiation capacity in CLL may stem from anergy.
- Epigenetic modulation of PRDM1 offers a potential therapeutic strategy for CLL differentiation therapy.
Abstract:
Despite antigen engagement and intact B-cell-receptor (BCR) signaling, chronic lymphocytic leukemia (CLL) cells fail to undergo terminal differentiation. We hypothesized that such failure may be due to anergy, as CLL cells exhibit variable levels of nonresponsiveness to surface IgM stimulation that is reversible in vitro. Moreover, anergy is associated with reduced differentiation capacity in normal B cells. We investigated responses of CLL cells to two potent differentiation-promoting agents, IL-21 and cytosine guanine dinucleotide-enriched oligo-deoxynucleotides. The induction of PR domain-containing protein 1 (PRDM1; also known as Blimp-1), a critical regulator of plasmacytic differentiation, by these agents was closely correlated but varied between individual cases, despite functionally intact IL-21 receptor- and Toll-like receptor 9-mediated signal transducer and activator of transcription 3, and nuclear factor-κB pathways. PRDM1 induction was inversely correlated with the extent of anergy as measured by the ability to mobilize intracellular Ca(2+) following BCR crosslinking. PRDM1 responsiveness was associated with other markers of differentiation and proliferation but not with differences in apoptosis. The ability to induce PRDM1 did correlate with differential transcriptional and epigenetic regulation of the PRDM1 gene. These studies extend our understanding of CLL pathobiology, demonstrating that reduced differentiation capacity may be a consequence of anergy. Epigenetic drugs may offer possibilities to reactivate PRDM1 expression as part of novel differentiation therapy approaches.
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