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Microbial Antigens Stimulate Metalloprotease-7 Secretion in Human B-Lymphocytes Using mTOR-Dependent and Independent
Mohamed F Ali1, Harika Dasari1, Virginia P Van Keulen1
1Thoracic Diseases Research Unit, Rochester, Minnesota, 55905, United States.
Abstract:
Metalloproteinases (MMPs) contribute to tissue remodeling and acute inflammation not only by degrading extracellular matrix proteins but also by controlling the influx of chemokines through the regulation and shedding of syndecans. B-lymphocytes, in addition to their well-known function as antibody producing cells, participate in the innate immune response by secreting inflammatory cytokines and chemokines. However, there is little information about the role of B-lymphocytes in the regulation of MMPs; consequently, herein we investigated whether activated human circulating B-lymphocytes contributed to the secretion of MMPs. We demonstrate that B-lymphocytes activated by un-methylated CpG motifs, found in bacterial DNA, and β-glucans, found in the cell wall of fungi, both induced MMP-7. Interestingly, while CpG-stimulated cells activated the mTOR pathway via TLR9 receptor to induced MMP-7, β-glucan-stimulated cells were mTOR-independent and used Dectin-1 receptor. B-lymphocytes did not seem to have a major role in the secretion of tissue inhibitors of metalloproteinases (TIMPs). However, secreted MMP-7 participated in the shedding of Syndecan-4 from the surface of B-lymphocytes. In conclusion, circulating human B-lymphocytes contribute to the regulation of the innate immune system by participating in the secretion of MMP-7 which in turn is important for the shedding of Syndecan-4 in response to infectious stimuli.
Insights
Activated human B-lymphocytes secrete matrix metalloproteinase-7 (MMP-7) in response to bacterial and fungal stimuli. This MMP-7 then sheds Syndecan-4, impacting innate immunity regulation.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Matrix metalloproteinases (MMPs) are key in tissue remodeling and inflammation.
- B-lymphocytes contribute to innate immunity by secreting cytokines and chemokines.
- The role of B-lymphocytes in regulating MMPs is largely unknown.
Purpose of the Study:
- To investigate if activated human circulating B-lymphocytes secrete MMPs.
- To identify the mechanisms and stimuli involved in B-lymphocyte-mediated MMP secretion.
Main Methods:
- Activation of human B-lymphocytes using CpG motifs (TLR9 pathway) and β-glucans (Dectin-1 pathway).
- Measurement of MMP-7 and tissue inhibitors of metalloproteinases (TIMPs) secretion.
- Analysis of the mTOR pathway and syndecan shedding.
Main Results:
- CpG motifs and β-glucans induced MMP-7 secretion from B-lymphocytes.
- CpG stimulation activated the mTOR pathway (TLR9-dependent), while β-glucan stimulation was mTOR-independent (Dectin-1-dependent).
- Secreted MMP-7 mediated the shedding of Syndecan-4 from B-lymphocyte surfaces; TIMP secretion was not significantly affected.
Conclusions:
- Circulating human B-lymphocytes are a source of MMP-7, contributing to innate immune regulation.
- MMP-7 secreted by B-lymphocytes plays a role in shedding Syndecan-4 in response to infectious stimuli.
- This highlights a novel mechanism for B-cell involvement in immune response modulation.
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