IgM and IgG but not cytokine secretion is restricted to the CD27+ B lymphocyte subset
1Institute of Immunology, University of Vienna, Austria.
Insights
CD27 is a key marker distinguishing naive from primed human B lymphocytes. CD27- B cells can proliferate and secrete cytokines, while CD27+ B cells are responsible for immunoglobulin production.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- CD27 expression on human B lymphocytes was previously reported, with evidence suggesting late acquisition during differentiation.
- Understanding B cell differentiation stages is crucial for immune response studies.
Purpose of the Study:
- To functionally characterize B cell subsets based on CD27 and IgD expression.
- To investigate the role of CD27 in B cell activation, proliferation, and immunoglobulin secretion.
Main Methods:
- Isolation of B cell subsets using double immunofluorescence staining for CD27 and IgD.
- In vitro stimulation assays to assess immunoglobulin secretion and proliferation.
- Analysis of cytokine production (IL-6, TNF-alpha) and IL-2R alpha chain (CD25) expression.
Main Results:
- Three distinct B cell subsets were identified: CD27- IgD+ (non-secretory), CD27+IgD+ (IgM-secreting), and CD27+IgD- (IgG-producing).
- CD27- B cells, though not inducing Ig secretion upon stimulation, exhibit vigorous proliferation and CD25 expression.
- Both CD27- and CD27+ B cells produce IL-6 and TNF-alpha.
Conclusions:
- CD27 serves as a reliable surface marker differentiating naive (CD27-) from primed (CD27+) human B lymphocytes.
- Early B cell differentiation stages (CD27-) are characterized by proliferative capacity and cytokine secretion, preceding Ig production.
Abstract:
In a recent study we reported that CD27 is expressed on a subpopulation of human B lymphocytes and presented circumstantial phenotypic evidence that CD27 expression may be acquired late during B cell differentiation. Here we present functional data showing that, after in vitro stimulation, CD27+ but not CD27- B cells secrete large amounts of both IgM and IgG. Using double immunofluorescence staining of CD27 and IgD, three functionally different B cell subsets representing distinct stages of B cell differentiation can be isolated: 1) the CD27- IgD+ B cells, which do not secrete appreciable Ig; 2) the CD27+IgD+ B cells, which exclusively secrete IgM; and 3) the CD27+IgD- B cells, which comprise the IgG-producing cells. Furthermore, costimulation of CD27- B cells with low m.w. B cell growth factor, in the presence or in the absence of a CD40 mAb, does not induce these cells to become Ig-secreting cells. Although CD27- B cells hardly secrete Ig of any isotype in response to Staphylococcus aureus+IL-2, these cells proliferate vigorously and express the IL-2R alpha chain (CD25) under these stimulatory conditions. Furthermore, both CD27- and CD27+ B cells are capable of producing similar amounts of IL-6 and TNF-alpha. Taken together, these findings indicate that CD27 is a unique non-Ig surface marker discriminating naive from primed B lymphocytes. Furthermore, the capacity to proliferate and to secrete the B cell differentiation factors IL-6 and TNF-alpha already exists at an early B cell differentiation stage at which the cells lack CD27 expression and are not induced to produce Ig.
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