AI Article Synopsis

  • MicroRNAs (miRNAs) play a key role in forming RNA-induced silencing complexes (RISCs) which regulate miRNA activity; however, their function in diseases like multiple sclerosis (MS) and its model, experimental autoimmune encephalomyelitis (EAE), remains unclear.
  • Recent findings show that the levels of RISC proteins, specifically Ago2 and FXR1, are significantly dysregulated in various cell types during EAE, impacting oligodendrocytes and brain-infiltrating T cells.
  • The altered RISC assembly leads to downregulation of miRNAs necessary for oligodendrocyte survival and myelin production, while promoting proinflammatory responses in T lymphocytes, suggesting a possible link

Article Abstract

MicroRNAs (miRNAs) associate with Argonaute (Ago), GW182, and FXR1 proteins to form RNA-induced silencing complexes (RISCs). RISCs represent a critical checkpoint in the regulation and bioavailability of miRNAs. Recent studies have revealed dysregulation of miRNAs in multiple sclerosis (MS) and its animal model, experimental autoimmune encephalomyelitis (EAE); however, the function of RISCs in EAE and MS is largely unknown. Here, we examined the expression of Ago, GW182, and FXR1 in CNS tissue, oligodendrocytes (OLs), brain-infiltrating T lymphocytes, and CD3(+)splenocytes (SCs) of EAE mic, and found that global RISC protein levels were significantly dysregulated. Specifically, Ago2 and FXR1 levels were decreased in OLs and brain-infiltrating T cells in EAE mice. Accordingly, assembly of Ago2/GW182/FXR1 complexes in EAE brain tissues was disrupted, as confirmed by immunoprecipitation experiments. In parallel with alterations in RISC complex content in OLs, we found downregulation of miRNAs essential for differentiation and survival of OLs and myelin synthesis. In brain-infiltrating T lymphocytes, aberrant RISC formation contributed to miRNA-dependent proinflammatory helper T-cell polarization. In CD3(+) SCs, we found increased expression of both Ago2 and FXR1 in EAE compared with nonimmunized mice. Therefore, our results demonstrate a gradient in expression of miRNA between primary activated T cells in the periphery and polarized CNS-infiltrating T cells. These results suggest that, in polarized autoreactive effector T cells, miRNA synthesis is inhibited in response to dysregulated RISC assembly, allowing these cells to maintain a highly specific proinflammatory program. Therefore, our findings may provide a mechanism that leads to miRNA dysregulation in EAE/MS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6705439PMC
http://dx.doi.org/10.1523/JNEUROSCI.4794-14.2015DOI Listing

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