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Published on: October 25, 2018
Silencing miR-146a influences B cells and ameliorates experimental autoimmune myasthenia gravis
JunMei Zhang1, Ge Jia, Qun Liu
1Department of Neurosurgery, Xiangya Hospital, Central South University, Changsha, Hunan, China.
Abstract:
MicroRNAs have been shown to be important regulators of immune homeostasis as patients with aberrant microRNA expression appeared to be more susceptible to autoimmune diseases. We recently found that miR-146a was up-regulated in activated B cells in response to rat acetylcholine receptor (AChR) α-subunit 97-116 peptide, and this up-regulation was significantly attenuated by AntagomiR-146a. Our data also demonstrated that silencing miR-146a with its inhibitor AntagomiR-146a effectively ameliorated clinical myasthenic symptoms in mice with ongoing experimental autoimmune myasthenia gravis. Furthermore, multiple defects were observed after miR-146a was knocked down in B cells, including decreased anti-R97-116 antibody production and class switching, reduced numbers of plasma cells, memory B cells and B-1 cells, and weakened activation of B cells. Previously, miR-146a has been identified as a nuclear factor-κB-dependent gene and predicted to base pair with the tumour necrosis factor receptor-associated factor 6 (TRAF6) and interleukin-1 receptor-associated kinase 1 (IRAK1) genes to regulate the immune response. However, our study proved that miR-146a inhibition had no effect on the expression of TRAF6 and IRAK1 in B cells. This result suggests that the function of miR-146a in B cells does not involve these two target molecules. We conclude that silencing miR-146a exerts its therapeutic effects by influencing the B-cell functions that contribute to the autoimmune pathogenesis of myasthenia gravis.
Insights
Silencing microRNA-146a (miR-146a) in B cells ameliorates experimental autoimmune myasthenia gravis by impacting B cell function, not through TRAF6 or IRAK1 targets.
Area of Science:
- Immunology
- Molecular Biology
- Neuroimmunology
Background:
- Aberrant microRNA expression is linked to autoimmune diseases.
- MicroRNA-146a (miR-146a) is implicated in immune homeostasis.
- miR-146a is upregulated in activated B cells responding to acetylcholine receptor (AChR) peptide.
Purpose of the Study:
- To investigate the therapeutic potential of silencing miR-146a in experimental autoimmune myasthenia gravis (EAMG).
- To elucidate the mechanism of miR-146a's function in B cells during EAMG pathogenesis.
Main Methods:
- Administration of AntagomiR-146a (miR-146a inhibitor) to mice with ongoing EAMG.
- Assessment of clinical symptoms, antibody production, B cell populations, and activation.
- Analysis of TRAF6 and IRAK1 gene expression in B cells following miR-146a inhibition.
Main Results:
- AntagomiR-146a treatment significantly ameliorated clinical symptoms in EAMG mice.
- Silencing miR-146a in B cells led to decreased anti-AChR antibody production, reduced plasma cells, memory B cells, and B-1 cells, and weakened B cell activation.
- miR-146a inhibition did not affect TRAF6 or IRAK1 expression in B cells, suggesting these are not the relevant targets.
Conclusions:
- Silencing miR-146a demonstrates therapeutic efficacy in a mouse model of myasthenia gravis.
- The therapeutic effects of miR-146a silencing are mediated through modulation of B cell functions critical to autoimmune pathogenesis.
- miR-146a's function in EAMG does not appear to involve the previously predicted targets TRAF6 and IRAK1 in B cells.
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