Secreted IgM modulates the pool of IL-10 producing B Cells
Shannon E. McGettigan, Lazaro Emilio Aira, Gaurav Kumar, Nicole Baumgarth, Gudrun Fiona Debes
Abstract
Shannon E. McGettigan, Lazaro Emilio Aira, Gaurav Kumar, Nicole Baumgarth, Gudrun Fiona Debes
Abstract
Abstract Regulatory B cells (Bregs) are critical for maintaining immune tolerance, and alterations in Breg numbers has detrimental effects in inflammatory diseases, infection, and cancer. Bregs are found among most B cell subsets and act primarily by producing IL-10. Despite their importance, the signals that control Breg differentiation and maintenance are not well defined. Here, we demonstrate that mice incapable of secreting IgM (sIgM−/−) have drastically increased IL-10+ Bregs in lymphoid organs compared to wildtype (WT) mice. These IL-10+ Bregs are polyclonal and increased among all major B cell subsets. While newborn WT mice (<24 hr of age) harbor detectable serum IgM, IL-10+ B cell expansion occurs early after birth in both WT and sIgM−/− mice. However, IL-10+ Bregs contract only in WT but not in sIgM−/− mice, which is in parallel to rising levels of serum IgM in WT mice. SIgM−/− B cells that develop in the presence of circulating IgM express IL-10 similar to that of WT B cells within the same mouse indicating that the expansions in IL-10+ B cell populations are not due to B cell-intrinsic effects based on the inability to secrete IgM, but rather the presence of sIgM. Mice that lack B cell-expressed high-affinity IgM receptor (FcμR) mirror the IL-10 phenotype in their B-1 and marginal zone B cells, but not follicular B cells, suggesting that secreted IgM can act as a negative regulator of IL-10 expression in B cell subsets via binding to surface-expressed FcμR, and potentially other IgM binding receptors. Our data indicate that sIgM controls IL-10 competence in B cells via IgM binding receptors thereby revealing potential novel avenues for altering IL-10+ Breg induction in disease settings. Funding: T32AI134646, R01AR067751, R01AI127389, R01AI148652. Supported by grants from NIH (T32AI134646, R01AR067751, R01AI127389, R01AI148652)
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract Regulatory B cells (Bregs) are critical for maintaining immune tolerance, and alterations in Breg numbers has detrimental effects in inflammatory diseases, infection, and cancer. Bregs are found among most B cell subsets and act primarily by producing IL-10. Despite their importance, the signals that control Breg differentiation and maintenance are not well defined. Here, we demonstrate that mice incapable of secreting IgM (sIgM−/−) have drastically increased IL-10+ Bregs in lymphoid organs compared to wildtype (WT) mice. These IL-10+ Bregs are polyclonal and increased among all major B cell subsets. While newborn WT mice (<24 hr of age) harbor detectable serum IgM, IL-10+ B cell expansion occurs early after birth in both WT and sIgM−/− mice. However, IL-10+ Bregs contract only in WT but not in sIgM−/− mice, which is in parallel to rising levels of serum IgM in WT mice. SIgM−/− B cells that develop in the presence of circulating IgM express IL-10 similar to that of WT B cells within the same mouse indicating that the expansions in IL-10+ B cell populations are not due to B cell-intrinsic effects based on the inability to secrete IgM, but rather the presence of sIgM. Mice that lack B cell-expressed high-affinity IgM receptor (FcμR) mirror the IL-10 phenotype in their B-1 and marginal zone B cells, but not follicular B cells, suggesting that secreted IgM can act as a negative regulator of IL-10 expression in B cell subsets via binding to surface-expressed FcμR, and potentially other IgM binding receptors. Our data indicate that sIgM controls IL-10 competence in B cells via IgM binding receptors thereby revealing potential novel avenues for altering IL-10+ Breg induction in disease settings. Funding: T32AI134646, R01AR067751, R01AI127389, R01AI148652. Supported by grants from NIH (T32AI134646, R01AR067751, R01AI127389, R01AI148652)
Key concepts: Regulatory B cells, B cell, Biology, Immunology, Interleukin 10, Marginal zone, Naive B cell, Secretion