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Published on: May 5, 2017
B-cell subsets defined by the Fc epsilon R
T Waldschmidt1, K Snapp, T Foy
1Department of Pathology, University of Iowa College of Medicine, Iowa City 52242.
Insights
The low-affinity Fc epsilon receptor (Fc epsilon R) distinguishes murine B-cell subsets in the peritoneum and spleen. Fc epsilon R expression reveals distinct B-cell populations and functional differences, aiding in identifying abnormalities in autoimmune mice.
Area of Science:
- Immunology
- Cell Biology
Background:
- B-cell subsets possess distinct phenotypic and functional characteristics.
- Identifying and isolating specific B-cell populations is crucial for understanding immune responses and diseases.
Purpose of the Study:
- To investigate the utility of the low-affinity Fc epsilon receptor (Fc epsilon R) as a marker for delineating murine B-cell subsets.
- To compare the functional capacities of Fc epsilon R-expressing and non-expressing B cells.
Main Methods:
- Flow cytometry and histology were used to analyze B-cell populations in the peritoneal cavity and spleen.
- Functional assays assessed isotype switching and responses to polyclonal stimuli and mitogens.
Main Results:
- Fc epsilon R expression reliably distinguishes conventional (Fc epsilon R+) from Ly-1/sister (Fc epsilon R-) B cells in the peritoneum.
- In the spleen, Fc epsilon R- B cells identify marginal zones, and this subset is expanded in autoimmune mice.
- Both Fc epsilon R+ and Fc epsilon R- B cells can isotype switch to IgG; most can switch to IgE, except peritoneal Fc epsilon R- B cells.
- Fc epsilon R- B cells are more sensitive to LPS, while Fc epsilon R+ B cells respond better to anti-IgM stimulation.
Conclusions:
- The Fc epsilon R is a valuable marker for separating murine B cells with distinct phenotypic, histologic, and functional properties.
- Fc epsilon R expression can serve as a sensitive indicator of B-cell compartment abnormalities, particularly in autoimmune conditions.
- Functional differences exist between Fc epsilon R+ and Fc epsilon R- B cells, including isotype switching and mitogen responsiveness.
Abstract:
The data summarized herein demonstrate the utility of the low-affinity Fc epsilon R in delineating murine B-cell subsets. In the peritoneal cavity, the Fc epsilon R appears to be a reliable marker in distinguishing between conventional (Fc epsilon R+) and Ly-1/sister (Fc epsilon R-) B cells. In the spleens of normal animals, flow cytometric and histologic studies established that a distinct population of Fc epsilon R- B cells is also present and comprises the marginal zones. Thus in the spleen, the Fc epsilon R may be the first murine marker to allow for selective purification and analysis of marginal zone B cells. Although it is unlikely that splenic Fc epsilon R- B cells are directly related to peritoneal Fc epsilon R- Ly-1/sister B cells, further studies will be required to address this question. Analysis of autoimmune mice revealed that the splenic Fc epsilon R- subset is greatly expanded in these animals and indicates that the Fc epsilon R may be a sensitive indicator of abnormalities within the B-cell compartment. Additional studies compared the functional capacity of Fc epsilon R+ and Fc epsilon R- B cells and tested the ability of these populations to isotype-switch and respond to polyclonal stimuli. The results showed that Fc epsilon R+ and Fc epsilon R- B cells from both the peritoneum and spleen can switch to produce IgG, and all but the peritoneal Fc epsilon R- B cells can switch to the IgE class. This latter result is certainly interesting and demonstrates an important functional difference between peritoneal and splenic Fc epsilon R- B cells. Finally, experiments with B-cell mitogens showed further differences between the Fc epsilon R+ and Fc epsilon R- subsets. Whereas Fc epsilon R- B cells appeared to be more sensitive to LPS stimulation, Fc epsilon R+ B cells were clearly more responsive to an anti-IgM signal. Taken together, the results show that the Fc epsilon R is likely to be useful in separating B cells with different phenotypic, histologic, and functional characteristics.
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