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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Nuclear microRNA-mediated transcriptional control determines adult microglial homeostasis and brain function
1Institute of Biomedical Research, Yunnan University, Kunming 650500, China.
Abstract:
Microglia are versatile regulators in brain development and disorders. Emerging evidence links microRNA (miRNA)-mediated regulation to microglial function; however, the exact underlying mechanism remains largely unknown. Here, we uncover the enrichment of miR-137, a neuropsychiatric-disorder-associated miRNA, in the microglial nucleus, and reveal its unexpected nuclear functions in maintaining the microglial global transcriptomic state, phagocytosis, and inflammatory response. Mechanistically, microglial Mir137 deletion increases chromatin accessibility, which contains binding motifs for the microglial master transcription factor Pu.1. Through biochemical and bioinformatics analyses, we propose that miR-137 modulates Pu.1-mediated gene expression by suppressing Pu.1 binding to chromatin. Importantly, we find that increased Pu.1 binding upregulates the target gene Jdp2 (Jun dimerization protein 2) and that knockdown of Jdp2 significantly suppresses the impaired phagocytosis and pro-inflammatory response in Mir137 knockout microglia. Collectively, our study provides evidence supporting the notion that nuclear miR-137 acts as a transcriptional modulator and that this microglia-specific function is essential for maintaining normal adult brain function.
Insights
Nuclear microRNA-137 (miRNA) regulates microglia function by modulating transcription factor Pu.1. This finding is crucial for maintaining adult brain function and understanding neuropsychiatric disorders.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Microglia are key regulators of brain development and disorders.
- MicroRNA (miRNA)-mediated regulation influences microglial function, but mechanisms are unclear.
Purpose of the Study:
- To investigate the nuclear functions of miR-137 in microglia.
- To elucidate the molecular mechanisms underlying miR-137's role in microglial function.
Main Methods:
- Microglial isolation and culture.
- RNA sequencing and chromatin accessibility assays.
- Biochemical assays and bioinformatics analyses.
Main Results:
- miR-137 is enriched in the microglial nucleus and regulates transcriptomic state, phagocytosis, and inflammation.
- Mir137 deletion increases chromatin accessibility and Pu.1 binding.
- miR-137 suppresses Pu.1 binding, affecting Jdp2 expression and microglial function.
Conclusions:
- Nuclear miR-137 acts as a transcriptional modulator in microglia.
- This function is essential for maintaining normal adult brain function.
- Dysregulation of miR-137 may contribute to neuropsychiatric disorders.

