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Updated: Jul 13, 2025

Isolation, Processing and Analysis of Murine Gingival Cells
Published on: July 2, 2013
miRNAs from Inflamed Gingiva Link Gene Signaling to Increased MET Expression
L Zheng1, A Chopra1, J Weiner2
1Department of Periodontology, Oral Medicine and Oral Surgery, Institute for Dental and Craniofacial Sciences, Charité-University Medicine Berlin, corporate member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Berlin, Germany.
Abstract:
Several array-based microRNA (miRNA) expression studies independently showed increased expression of miRNAs hsa-miR-130a-3p, -142-3p, -144-3p, -144-5p, -223-3p, -17-5p, and -30e-5p in gingiva affected by periodontal inflammation. We aimed to determine direct target genes and signaling pathways regulated by these miRNAs to identify processes relevant to gingival inflammatory responses and tissue homeostasis. We transfected miRNA mimics (mirVana) for each of the 7 miRNAs separately into human primary gingival fibroblasts cultured from 3 different donors. Following RNA sequencing, differential gene expression and second-generation gene set enrichment analyses were performed. miRNA inhibition and upregulation was validated at the transcript and protein levels using quantitative reverse transcriptase polymerase chain reaction, Western blotting, and reporter gene assays. All 7 miRNAs significantly increased expression of the gene MET proto-oncogene, receptor tyrosine kinase (MET). Expression of known periodontitis risk genes CPEB1, ABCA1, and ATP6V1C1 was significantly repressed by hsa-miR-130a-3p, -144-3p, and -144-5p, respectively. The genes WASL, ENPP5, ARL6IP1, and IDH1 showed the most significant and strongest downregulation after hsa-miR-142-3p, -17-5p, -223-3p, and -30e-5p transfection, respectively. The most significantly regulated gene set of each miRNA related to cell cycle (hsa-miRNA-144-3p and -5p [Padj = 4 × 10-40 and Padj = 4 × 10-6], -miR-17-5p [Padj = 9.5 × 10-23], -miR-30e-5p [Padj = 8.2 × 10-18], -miR-130a-3p [Padj = 5 × 10-15]), integrin cell surface interaction (-miR-223-3p [Padj = 2.4 × 10-7]), and interferon signaling (-miR-142-3p [Padj = 5 × 10-11]). At the end of acute inflammation, gingival miRNAs bring together complex regulatory networks that lead to increased expression of the gene MET. This underscores the importance of mesenchymal cell migration and invasion during gingival tissue remodeling and proliferation in restoring periodontal tissue homeostasis after active inflammation. MET, a receptor of the mitogenic hepatocyte growth factor fibroblast secreted, is a core gene of this process.
Insights
Seven microRNAs (miRNAs) linked to periodontal inflammation were studied. These miRNAs regulate genes involved in cell cycle, cell adhesion, and interferon signaling, notably increasing MET proto-oncogene expression for tissue repair.
Area of Science:
- Molecular Biology
- Genomics
- Periodontology
Background:
- Periodontal inflammation is associated with altered microRNA (miRNA) expression in gingival tissues.
- Specific miRNAs, including hsa-miR-130a-3p, -142-3p, -144-3p, -144-5p, -223-3p, -17-5p, and -30e-5p, show increased levels during inflammation.
Purpose of the Study:
- To identify direct target genes and signaling pathways regulated by these upregulated miRNAs.
- To elucidate the role of these miRNAs in gingival inflammatory responses and tissue homeostasis.
Main Methods:
- Transfection of miRNA mimics into primary human gingival fibroblasts.
- RNA sequencing to analyze differential gene expression.
- Validation of miRNA targets using quantitative reverse transcriptase polymerase chain reaction, Western blotting, and reporter gene assays.
Main Results:
- All seven miRNAs significantly increased the expression of the MET proto-oncogene, receptor tyrosine kinase (MET).
- Specific miRNAs repressed known periodontitis risk genes (CPEB1, ABCA1, ATP6V1C1) and other genes (WASL, ENPP5, ARL6IP1, IDH1).
- Key regulated pathways included cell cycle, integrin cell surface interaction, and interferon signaling.
Conclusions:
- Gingival miRNAs orchestrate complex regulatory networks during inflammation, leading to increased MET expression.
- MET signaling is crucial for mesenchymal cell migration and invasion in gingival tissue remodeling and homeostasis restoration post-inflammation.
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