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Updated: May 1, 2026

In Vitro Differentiation Model of Human Normal Memory B Cells to Long-lived Plasma Cells
Published on: January 20, 2019
CD73 expression is dynamically regulated in the germinal center and bone marrow plasma cells are diminished in its
Laura J Conter1, Eunice Song2, Mark J Shlomchik3
1Department of Dermatology, Yale University School of Medicine, New Haven, Connecticut, United States of America.
Insights
CD73, an enzyme converting nucleosides to adenosine, is crucial for establishing long-lived plasma cells. Its absence impairs bone marrow plasma cell responses, highlighting a new role in humoral immunity.
Area of Science:
- Immunology
- Biochemistry
Background:
- CD73 (ecto-5'-nucleotidase) converts extracellular nucleosides to adenosine, influencing immune responses.
- CD73 expression is elevated on murine memory B cells (MBC), but its function in B cell memory is unclear.
Purpose of the Study:
- To investigate the role of CD73 in humoral immunity, specifically in B cell memory development and plasma cell generation.
Main Methods:
- Analysis of T-dependent B cell responses in CD73 knockout (CD73KO) and wild-type (WT) mice.
- Flow cytometry to assess germinal center (GC) B cells, T follicular helper cells, plasma cells (PC), and plasmablasts (PB).
- Tracking of B cell populations and plasma cell responses in bone marrow (BM).
Main Results:
- CD73 is progressively upregulated on GC B cells and T follicular helper cells, but absent in PCs and PBs.
- CD73KO mice showed normal early B cell responses but decreased BM PCs late in the primary response.
- CD73 expression on bone marrow-derived cells, but not exclusively B or T cells, was essential for optimal PC responses.
Conclusions:
- CD73-dependent adenosine signaling is important in mature germinal centers.
- CD73 is required for the establishment of the long-lived plasma cell compartment.
- Identifies a novel role for CD73 in regulating humoral immunity and plasma cell longevity.
Abstract:
CD73 catalyzes the conversion of extracellular nucleosides to adenosine, modulating inflammatory and T cell responses. Elevated expression of CD73 marks subpopulations of murine memory B cells (MBC), but its role in memory development or function is unknown. Here, we demonstrate that CD73 is progressively upregulated on germinal center (GC) B cells following immunization, is expressed at even higher levels among T follicular helper cells, but is absent among plasma cells (PC) and plasmablasts (PB). We analyzed the T-dependent B cell response in CD73 knockout mice (CD73KO). During the early response, CD73KO and wild type (WT) mice formed GCs, MBCs and splenic PBs and PCs similarly, and MBCs functioned similarly in the early secondary response. Late in the primary response, however, bone marrow (BM) PCs were markedly decreased in CD73KO animals. Tracking this phenotype, we found that CD73 expression was required on BM-derived cells for optimal BM PC responses. However, deletion of CD73 from either B or T lymphocytes alone did not recapitulate the phenotype. This suggests that CD73 expression is sufficient on either cell type, consistent with its function as an ectoenzyme. Together, these findings suggest that CD73-dependent adenosine signaling is prominent in the mature GC and required for establishment of the long-lived PC compartment, thus identifying a novel role for CD73 in humoral immunity.
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