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Published on: November 26, 2018
Variant B cell receptor isotype functions differ in hairy cell leukemia with mutated BRAF and IGHV genes
Nicola J Weston-Bell1, Francesco Forconi2, Hanneke C Kluin-Nelemans3
1Tumour Immunogenetics Group, Cancer Sciences Academic Unit, Faculty of Medicine, University of Southampton, Southampton, United Kingdom.
Insights
In hairy cell leukemia (HCL), the B-cell receptor (BCR) shows complex signaling. While IgD BCR signaling promotes tumor cell survival, other isotypes trigger apoptosis, revealing isotype-specific functions in this B-cell malignancy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- A functional B-cell receptor (BCR) is crucial for normal B-cell survival, but its role in B-cell malignancies like Hairy Cell Leukemia (HCL) is not fully understood.
- Typical HCL uniquely expresses multiple surface immunoglobulin (sIg) isotypes (mult-HCL) and harbors a mutated BRAF V(600)E lesion, raising questions about BCR signaling in this context.
Purpose of the Study:
- To investigate the functional relevance of BCR signaling in mult-HCL, particularly how mutated BRAF influences signal transduction.
- To delineate the distinct roles of co-expressed immunoglobulin (Ig) isotypes in BCR signaling and their impact on mult-HCL cell survival.
Main Methods:
- Analysis of BCR signaling pathways, including Ca(2+) flux, ERK activation, and BCR endocytosis, in mult-HCL cases with mutated BRAF and IGHV genes.
- Examination of the functional status of individual sIg isotypes (IgD, sIgM, sIgL) and their downstream effects on tumor cell survival and apoptosis upon anti-BCR stimulation ex-vivo.
Main Results:
- Two functional BCR signaling sets were identified based on IgD co-expression: IgD(+) mult-HCL showed persistent Ca(2+) flux and ERK activation, while IgD(-) mult-HCL had restricted signaling with dysfunctional sIgM.
- Individual sIg isotypes exhibited discordant functions; functional non-IgD isotypes induced apoptosis, whereas IgD stimuli promoted tumor cell viability.
- Despite mutated BRAF, BCR signaling augmented ERK1/2 phosphorylation, but isotype-specific outcomes (survival vs. apoptosis) were observed, suggesting complex regulation.
Conclusions:
- The B-cell receptor in mult-HCL is subject to complex regulation, with IgD playing a critical role in promoting tumor cell survival.
- Discordant signaling by co-expressed isotypes, particularly the pro-survival function of IgD, highlights unique BCR regulation in mult-HCL.
- Mutated BRAF may bypass normal BCR constraints, leading to altered signaling pathways that favor tumor cell persistence in HCL.
Abstract:
A functional B-cell receptor (BCR) is critical for survival of normal B-cells, but whether it plays a comparable role in B-cell malignancy is as yet not fully delineated. Typical Hairy Cell Leukemia (HCL) is a rare B-cell tumor, and unique in expressing multiple surface immunoglobulin (sIg) isotypes on individual tumor cells (mult-HCL), to raise questions as to their functional relevance. Typical mult-HCL also displays a mutated BRAF V(600)E lesion. Since wild type BRAF is a primary conduit for transducing normal BCR signals, as revealed by deletion modelling studies, it is as yet not apparent if mutated BRAF alters BCR signal transduction in mult-HCL. To address these questions, we examined BCR signalling in mult-HCL cases uniformly displaying mutated BRAF and IGHV genes. Two apparent functional sets were delineated by IgD co-expression. In sIgD(+ve) mult-HCL, IgD mediated persistent Ca(2+) flux, also evident via >1 sIgH isotype, linked to increased ERK activation and BCR endocytosis. In sIgD(-ve) mult-HCL however, BCR-mediated signals and downstream effects were restricted to a single sIgH isotype, with sIgM notably dysfunctional and remaining immobilised on the cell surface. These observations reveal discordance between expression and function of individual isotypes in mult-HCL. In dual sIgL expressing cases, only a single sIgL was fully functional. We examined effects of anti-BCR stimuli on mult-HCL survival ex-vivo. Significantly, all functional non-IgD isotypes increased ERK1/2 phosphorylation but triggered apoptosis of tumor cells, in both subsets. IgD stimuli, in marked contrast retained tumor viability. Despite mutant BRAF, BCR signals augment ERK1/2 phosphorylation, but isotype dictates functional downstream outcomes. In mult-HCL, sIgD retains a potential to transduce BCR signals for tumor survival in-vivo. The BCR in mult-HCL emerges as subject to complex regulation, with apparent conflicting signalling by individual isotypes when co-expressed with sIgD. This suggests the possibility that mutant BRAF by-passes BCR constraints in mult-HCL.
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