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Paradoxical attenuation of neuroinflammatory response upon LPS challenge in miR-146b deficient mice
Keerthana Chithanathan1, Monika Jürgenson2, Mithu Guha2
1Department of Physiology, Institute of Biomedicine and Translational Medicine, Faculty of Medicine, University of Tartu, Tartu, Estonia.
Abstract:
The miR-146 family consists of two microRNAs (miRNAs), miR-146a and miR-146b (miR-146a/b), both of which are known to suppress immune responses in a variety of conditions. Here, we studied how constitutive deficiency of miR-146b (Mir146b-/-) affects lipopolysaccharide (LPS)-induced neuroinflammation in mice. Our experiments demonstrated that miR-146b deficiency results in the attenuation of LPS-induced neuroinflammation, as it was evidenced by the reduction of sickness behavior, a decrease in the inflammatory status of microglia, and the loss of morphological signs of microglial activation in the hippocampus. Gene expression analysis revealed that LPS-induced upregulation of hippocampal pro-inflammatory cytokines is attenuated in Mir146b-/- mice, compared to wild-type (WT) mice. In addition, reduced expression of the NF-κB nuclear protein p65, reduced miR-146 family target TLR4 expression and relatively stronger upregulation of miR-146a was found in Mir146b-/- mice as compared to WT mice upon LPS challenge. Compensatory upregulation of miR-146a can explain the attenuation of the LPS-induced neuroinflammation. This was supported by experiments conducted with miR-146a/b deficient mice (Mir146a/b-/-), which demonstrated that additional deletion of the miR-146a led to the restoration of LPS-induced sickness behavior and proinflammatory cytokines. Our experiments also showed that the observed upregulation of miR-146a in Mir146b-/- mice is due to the overexpression of a miR-146a transcription inducer, interferon regulatory factor 7 (Irf7). Altogether, our results show the existence of crosstalk between miR-146a and mir-146b in the regulation of LPS-induced neuroinflammation.
Insights
Constitutive deficiency of microRNA-146b (miR-146b) attenuates lipopolysaccharide-induced neuroinflammation in mice. This protective effect is mediated by compensatory upregulation of miR-146a, highlighting a crosstalk between these microRNAs in regulating immune responses.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- The miR-146 family, comprising miR-146a and miR-146b, plays a crucial role in suppressing immune responses.
- Neuroinflammation, triggered by stimuli like lipopolysaccharide (LPS), is implicated in various neurological conditions.
Purpose of the Study:
- To investigate the impact of constitutive miR-146b deficiency on LPS-induced neuroinflammation in a mouse model.
- To elucidate the underlying molecular mechanisms, including the role of miR-146a and associated signaling pathways.
Main Methods:
- Utilized knockout mouse models (Mir146b-/- and Mir146a/b-/-) to study neuroinflammation.
- Assessed behavioral changes, microglial activation, cytokine expression, and key protein levels (NF-κB p65, TLR4, Irf7) following LPS challenge.
Main Results:
- Mir146b-/- mice exhibited attenuated LPS-induced neuroinflammation, characterized by reduced sickness behavior and microglial activation.
- Pro-inflammatory cytokine levels were decreased in Mir146b-/- mice, accompanied by reduced NF-κB p65 and TLR4 expression.
- Compensatory upregulation of miR-146a in Mir146b-/- mice was observed, driven by increased Interferon Regulatory Factor 7 (Irf7).
- Deletion of miR-146a in double knockout mice (Mir146a/b-/-) restored LPS-induced neuroinflammation and sickness behavior.
Conclusions:
- Constitutive miR-146b deficiency confers protection against LPS-induced neuroinflammation.
- A compensatory mechanism involving miR-146a upregulation, induced by Irf7, contributes to the observed neuroprotective effects.
- These findings reveal a significant crosstalk between miR-146a and miR-146b in the regulation of neuroinflammation.
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