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Updated: Jul 3, 2026

In Vitro Differentiation Model of Human Normal Memory B Cells to Long-lived Plasma Cells
Published on: January 20, 2019
Discriminating gene expression profiles of memory B cell subpopulations
Götz R A Ehrhardt1, Atsushi Hijikata, Hiroshi Kitamura
1Department of Pathology and Laboratory Medicine, Emory University School of Medicine, Atlanta, GA 30322, USA.
Insights
Researchers identified distinct human memory B cell subsets based on FCRL4 expression. These subsets show unique molecular profiles, suggesting specialized roles in mucosal immunity and potential links to cancer development.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Human memory B cells (B(Mem)) comprise distinct subpopulations.
- Fc receptor-like 4 (FCRL4) is an inhibitory receptor expressed on a subset of B(Mem) cells.
Purpose of the Study:
- To comparatively analyze the transcriptome and proteome of FCRL4(+) and FCRL4(-) B(Mem) cells.
- To elucidate the molecular differences and functional implications of these distinct B(Mem) cell subsets.
Main Methods:
- Comparative transcriptome and proteome analysis of FCRL4(+) and FCRL4(-) B(Mem) cells.
- Analysis of gene expression profiles, including transcription factors, cell-surface proteins, and signaling molecules.
- In vitro and in vivo studies to assess RUNX transcription factor involvement in B(Mem) cell subpopulation generation.
Main Results:
- FCRL4(+) and FCRL4(-) B(Mem) cells exhibit highly distinct gene expression profiles.
- RUNX1 transcripts were upregulated in FCRL4(-) cells, while RUNX2 transcripts were found in FCRL4(+) cells.
- FCRL4(+) B(Mem) cells were characterized by CD11c, RANKL, FAS, SOX5, RUNX2, DLL1, and AICDA expression, indicating a unique signature.
Conclusions:
- Distinct human memory B cell subpopulations defined by FCRL4 expression possess unique molecular signatures.
- These FCRL4(+) B(Mem) cells, found in epithelial niches, may play a role in mucosal defense.
- The FCRL4(+) B(Mem) cell subset could be a target for neoplastic transformation.
Abstract:
Morphologically and functionally distinct subpopulations of human memory B (B(Mem)) cells are identifiable by either their expression of CD27 or Fc receptor-like 4 (FCRL4), an immunoglobulin domain containing a receptor with strong inhibitory potential. We have conducted comparative transcriptome and proteome analyses of FCRL4(+) and FCRL4(-) B(Mem) cells and found that these two subsets have very distinctive expression profiles for genes encoding transcription factors, cell-surface proteins, intracellular signaling molecules, and modifiers of the cell-cycle status. Among the differentially expressed transcription factors, runt-related transcription factor 1 (RUNX1) transcript levels were up-regulated in FCRL4(-) cells, whereas RUNX2 transcripts were preferentially detected in FCRL4(+) cells. In vitro evidence for FCRL4 promoter responsiveness and in vivo promoter occupancy suggested that RUNX transcription factors are involved in the generation of these B(Mem) cell subpopulations. A distinctive signature profile was defined for the FCRL4(+) B(Mem) cells by their expression of CD11c, receptor activator for nuclear factor kappaB ligand, and FAS cell-surface proteins, in combination with increased levels of SOX5, RUNX2, DLL1, and AICDA expression. We conclude that this recently identified subpopulation of B(Mem) cells, which normally resides in epithelial tissue-based niches, may serve a unique role in mucosal defense and, conversely, as a target for neoplastic transformation events.
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