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Updated: Jun 1, 2026

In Vitro Differentiation Model of Human Normal Memory B Cells to Long-lived Plasma Cells
Published on: January 20, 2019
Uniform expression of Notch1, suppressor of B-cell-specific gene expression, in plasmablastic lymphoma
Adam C Seegmiller1, Huan-You Wang, Christa Hladik
1Department of Pathology, University of Texas Southwestern Medical Center at Dallas, USA.
Context:
Although the loss of B-lineage-specific gene expression is a distinctive feature of plasmablastic lymphoma, the underlying mechanism remains poorly understood. A candidate for this mechanism is Notch1 signaling, which interferes with the activity of B-cell-specific transcription factors E2A and early B-cell factor and positively regulates the mammalian target of rapamycin (mTOR) pathway.
Objective:
To explore the mechanism of loss of B-cell phenotype by correlating expression of B-cell markers with that of Notch1 and downstream targets of the mTOR pathway in plasmablastic lymphoma.
Design:
A combination of flow cytometric and immunohistochemical immunophenotyping techniques was used on 9 cases of plasmablastic lymphoma to correlate loss of B-cell markers with expression of Notch1 and downstream activation of the mTOR pathway. These results are compared with 5 cases of primary effusion lymphoma and 21 cases of plasma cell myeloma.
Results:
Plasmablastic lymphoma cases exhibit nearly complete loss of B-cell-associated markers and uniform expression of Notch1, with a predominantly nuclear staining pattern. There is a concurrent activation of the mTOR pathway, indicated by expression of mTOR targets eukaryotic initiation factor 4E-binding protein 1 and phosphorylated ribosomal protein S6 in most cases. Similar results are seen in cases of primary effusion lymphoma and plasma cell myeloma.
Conclusions:
These findings suggest that activation of Notch1 may be involved in suppression of B-cell-specific gene expression and global loss of the B-cell phenotype in plasmablastic lymphoma, similar to primary effusion lymphoma and plasma cell myeloma. Thus, there might be a role for the Notch1 and mTOR pathways in the pathogenesis and therapy of plasmablastic lymphoma.
Insights
Notch1 signaling may suppress B-cell gene expression in plasmablastic lymphoma, leading to loss of B-cell phenotype. The Notch1 and mammalian target of rapamycin (mTOR) pathways may play roles in its pathogenesis and treatment.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Plasmablastic lymphoma (PBL) is characterized by loss of B-cell gene expression, but the mechanism is unclear.
- Notch1 signaling is a potential mechanism, interfering with B-cell transcription factors and activating the mammalian target of rapamycin (mTOR) pathway.
Purpose of the Study:
- To investigate the mechanism of B-cell phenotype loss in PBL.
- To correlate B-cell marker expression with Notch1 and mTOR pathway activation.
Main Methods:
- Flow cytometry and immunohistochemistry were used on 9 PBL cases.
- Expression of B-cell markers, Notch1, and mTOR targets were analyzed.
- Results were compared to primary effusion lymphoma and plasma cell myeloma.
Main Results:
- PBL cases showed near-complete loss of B-cell markers and uniform Notch1 expression.
- The mTOR pathway was concurrently activated in most PBL cases.
- Similar patterns were observed in primary effusion lymphoma and plasma cell myeloma.
Conclusions:
- Notch1 activation may suppress B-cell gene expression and cause phenotype loss in PBL.
- Notch1 and mTOR pathways might be involved in PBL pathogenesis.
- These pathways could be therapeutic targets for PBL.
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