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Detection of MicroRNAs in Microglia by Real-time PCR in Normal CNS and During Neuroinflammation
Published on: July 23, 2012
MicroRNA-142 regulates inflammation and T cell differentiation in an animal model of multiple sclerosis
Farideh Talebi1,2, Samira Ghorbani1, Wing Fuk Chan3
1Department of Immunology, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.
Background:
MicroRNAs have emerged as an important class of modulators of gene expression. These molecules influence protein synthesis through translational repression or degradation of mRNA transcripts. Herein, we investigated the potential role of miR-142a isoforms, miR-142a-3p and miR-142a-5p, in the context of autoimmune neuroinflammation.
Methods:
The expression levels of two mature isoforms of miR-142 were measured in the brains of patients with multiple sclerosis (MS) and the CNS tissues from mice with experimental autoimmune encephalomyelitis (EAE), an animal model of MS. Expression analyses were also performed in mitogen and antigen-stimulated splenocytes, as well as macrophages and astrocytes using real-time RT-PCR. The role of the mature miRNAs was then investigated in T cell differentiation by transfection of CD4+ T cells, followed by flow cytometric analysis of intracellular cytokines. Luciferase assays using vectors containing the 3'UTR of predicted targets were performed to confirm the interaction of miRNA sequences with transcripts. Expression of targets were then analyzed in activated splenocytes and MS/EAE tissues.
Results:
Expression of miR-142-5p was significantly increased in the frontal white matter from MS patients compared with white matter from non-MS controls. Likewise, expression levels of miR-142a-5p and miR-142a-3p showed significant upregulation in the spinal cords of EAE mice at days 15 and 25 post disease induction. Splenocytes stimulated with myelin oligodendrocyte glycoprotein (MOG) peptide or anti-CD3/anti-CD28 antibodies showed upregulation of miR-142a-5p and miR-142a-3p isoforms, whereas stimulated bone marrow-derived macrophages and primary astrocytes did not show any significant changes in miRNA expression levels. miR-142a-5p overexpression in activated lymphocytes shifted the pattern of T cell differentiation towards Th1 cells. Luciferase assays revealed SOCS1 and TGFBR1 as direct targets of miR-142a-5p and miR-142a-3p, respectively, and overexpression of miRNA mimic sequences suppressed the expression of these target transcripts in lymphocytes. SOCS1 levels were also diminished in MS white matter and EAE spinal cords.
Conclusions:
Our findings suggest that increased expression of miR-142 isoforms might be involved in the pathogenesis of autoimmune neuroinflammation by influencing T cell differentiation, and this effect could be mediated by interaction of miR-142 isoforms with SOCS1 and TGFBR-1 transcripts.
Insights
Increased miR-142 microRNA expression in the brain is linked to autoimmune neuroinflammation, potentially by affecting T cell differentiation and targeting specific genes like SOCS1.
Area of Science:
- Neuroimmunology
- Molecular Biology
- Gene Regulation
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression, impacting protein synthesis via mRNA modulation.
- This study focuses on miR-142a isoforms (miR-142a-3p and miR-142a-5p) and their role in autoimmune neuroinflammation.
Purpose of the Study:
- To investigate the expression and function of miR-142a isoforms in multiple sclerosis (MS) and experimental autoimmune encephalomyelitis (EAE).
- To determine the impact of miR-142a isoforms on T cell differentiation and identify their molecular targets in neuroinflammation.
Main Methods:
- Quantified miR-142a isoform expression in MS patient brain tissue and EAE mouse CNS using real-time RT-PCR.
- Analyzed miRNA expression in stimulated immune cells, macrophages, and astrocytes.
- Investigated miRNA function in T cell differentiation and confirmed target interactions using luciferase assays.
Main Results:
- miR-142-5p and miR-142a-3p showed significantly increased expression in MS frontal white matter and EAE spinal cords.
- Upregulation of miR-142a isoforms was observed in stimulated splenocytes but not in macrophages or astrocytes.
- miR-142a-5p overexpression promoted Th1 cell differentiation, and SOCS1 and TGFBR1 were identified as direct targets.
Conclusions:
- Elevated miR-142 isoform expression may contribute to autoimmune neuroinflammation pathogenesis.
- The effects are potentially mediated through modulation of T cell differentiation and interaction with SOCS1 and TGFBR-1 transcripts.
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